Skip to main content
Top
Published in:
Cover of the book

2021 | OriginalPaper | Chapter

Fundamentals of Waste Recycling for Nanomaterial Manufacturing

Authors : Gomaa A. M. Ali, Abdel Salam Hamdy Makhlouf

Published in: Waste Recycling Technologies for Nanomaterials Manufacturing

Publisher: Springer International Publishing

Activate our intelligent search to find suitable subject content or patents.

search-config
loading …

Abstract

Nowadays, nanomaterials are used in many areas and applications, including medicine, energy, and environment. The initial cost of the nanomaterials is high; thus, finding another cheap source is required. In addition, waste accumulation is a serious environmental problem. Therefore, recycling waste into valuable nanomaterials is highly required, where it has environmental and economic benefits.

Dont have a licence yet? Then find out more about our products and how to get one now:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literature
1.
go back to reference Králik M, Biffis A (2001) Catalysis by metal nanoparticles supported on functional organic polymers. J Mol Catal A: Chem 177(1):113–138CrossRef Králik M, Biffis A (2001) Catalysis by metal nanoparticles supported on functional organic polymers. J Mol Catal A: Chem 177(1):113–138CrossRef
2.
go back to reference Rogovin M, Neumann R (1999) Silicate xerogels containing cobalt as heterogeneous catalysts for the side-chain oxidation of alkyl aromatic compounds with tert-butyl hydroperoxide. J Mol Catal A: Chem 138(2–3):315–318CrossRef Rogovin M, Neumann R (1999) Silicate xerogels containing cobalt as heterogeneous catalysts for the side-chain oxidation of alkyl aromatic compounds with tert-butyl hydroperoxide. J Mol Catal A: Chem 138(2–3):315–318CrossRef
3.
go back to reference Kim KJ, Park YR (2003) Optical investigation of charge-transfer transitions in spinel Co3O4. Solid State Commun 127(1):25–28CrossRef Kim KJ, Park YR (2003) Optical investigation of charge-transfer transitions in spinel Co3O4. Solid State Commun 127(1):25–28CrossRef
4.
go back to reference Ali GAM, Fouad OA, Makhlouf SA (2013) Structural, optical and electrical properties of sol–gel prepared mesoporous Co3O4/SiO2 nanocomposites. J Alloy Compd 579:606–611CrossRef Ali GAM, Fouad OA, Makhlouf SA (2013) Structural, optical and electrical properties of sol–gel prepared mesoporous Co3O4/SiO2 nanocomposites. J Alloy Compd 579:606–611CrossRef
5.
go back to reference Isshiki M, Fukuda Y, Igaki K (1984) Temperature dependence of the electrical resistivity of pure cobalt at low temperatures. J Phys F: Met Phys 14(12):3007–3013CrossRef Isshiki M, Fukuda Y, Igaki K (1984) Temperature dependence of the electrical resistivity of pure cobalt at low temperatures. J Phys F: Met Phys 14(12):3007–3013CrossRef
6.
go back to reference Ali GAM, Fouad OA, Makhlouf SA, Yusoff MM, Chong KF (2016) Optical and electrochemical properties of Co3O4/SiO2 nanocomposite. Adv Mater Res 1133:447–451CrossRef Ali GAM, Fouad OA, Makhlouf SA, Yusoff MM, Chong KF (2016) Optical and electrochemical properties of Co3O4/SiO2 nanocomposite. Adv Mater Res 1133:447–451CrossRef
7.
go back to reference Ali GAM, Fouad Osama A, Makhlouf Salah A (2016) Electrical properties of cobalt oxide/silica nanocomposites obtained by sol–gel technique. Am J Eng Appl Sci 9(1):12–16CrossRef Ali GAM, Fouad Osama A, Makhlouf Salah A (2016) Electrical properties of cobalt oxide/silica nanocomposites obtained by sol–gel technique. Am J Eng Appl Sci 9(1):12–16CrossRef
8.
go back to reference Makhlouf SA (2004) Magnetic properties of Cr2O3 nanoparticles. J Magn Magn Mater 272–276:1530–1532CrossRef Makhlouf SA (2004) Magnetic properties of Cr2O3 nanoparticles. J Magn Magn Mater 272–276:1530–1532CrossRef
9.
go back to reference Sadegh H, Helmi H, Hamdy A, Masjedi A, Dastjerdi M, Shahryari-ghoshekandi R (2016) A developed simple, facile, economic and fast technique for preparation of high quality Fe3O4 magnetic nanoparticles. Chem Adv Mater 1(1):27–32 Sadegh H, Helmi H, Hamdy A, Masjedi A, Dastjerdi M, Shahryari-ghoshekandi R (2016) A developed simple, facile, economic and fast technique for preparation of high quality Fe3O4 magnetic nanoparticles. Chem Adv Mater 1(1):27–32
10.
go back to reference Fouad OA, Ali GAM, El-Erian MAI, Makhlouf SA (2012) Humidity sensing properties of cobalt oxide/silica nanocomposites prepared via sol–gel and related routes. Nano 7(5):1250038 Fouad OA, Ali GAM, El-Erian MAI, Makhlouf SA (2012) Humidity sensing properties of cobalt oxide/silica nanocomposites prepared via sol–gel and related routes. Nano 7(5):1250038
11.
go back to reference Makhlouf S (2003) Humidity sensing properties of NiO/Al2O3 nanocomposite materials. Solid State Ionics 164(1–2):97–106CrossRef Makhlouf S (2003) Humidity sensing properties of NiO/Al2O3 nanocomposite materials. Solid State Ionics 164(1–2):97–106CrossRef
12.
go back to reference Teo EYL, Ali GAM, Algarni H, Cheewasedtham W, Rujiralai T, Chong KF (2019) One-step production of pyrene-1-boronic acid functionalized graphene for dopamine detection. Mater Chem Phys 231:286–291CrossRef Teo EYL, Ali GAM, Algarni H, Cheewasedtham W, Rujiralai T, Chong KF (2019) One-step production of pyrene-1-boronic acid functionalized graphene for dopamine detection. Mater Chem Phys 231:286–291CrossRef
13.
go back to reference Aboelazm EAA, Ali GAM, Algarni H, Chong KF (2018) Flakes size-dependent optical and electrochemical properties of MoS2. Curr Nanosci 14(2):1–5 Aboelazm EAA, Ali GAM, Algarni H, Chong KF (2018) Flakes size-dependent optical and electrochemical properties of MoS2. Curr Nanosci 14(2):1–5
14.
go back to reference Ali GAM, Fouad OA, Makhlouf SA, Yusoff MM, Chong KF (2014) Co3O4/SiO2 nanocomposites for supercapacitor application. J Solid State Electrochem 18(9):2505–2512CrossRef Ali GAM, Fouad OA, Makhlouf SA, Yusoff MM, Chong KF (2014) Co3O4/SiO2 nanocomposites for supercapacitor application. J Solid State Electrochem 18(9):2505–2512CrossRef
15.
go back to reference Ali GAM, Lih Teo EY, Aboelazm EAA, Sadegh H, Memar AOH, Shahryari-Ghoshekandi R, Chong KF (2017) Capacitive performance of cysteamine functionalized carbon nanotubes. Mater Chem Phys 197:100–104CrossRef Ali GAM, Lih Teo EY, Aboelazm EAA, Sadegh H, Memar AOH, Shahryari-Ghoshekandi R, Chong KF (2017) Capacitive performance of cysteamine functionalized carbon nanotubes. Mater Chem Phys 197:100–104CrossRef
16.
go back to reference Ali GAM, Makhlouf SA, Yusoff MM, Chong KF (2015) Structural and electrochemical characteristics of graphene nanosheets as supercapacitor electrodes. Rev Adv Mater Sci 40(1):35–43 Ali GAM, Makhlouf SA, Yusoff MM, Chong KF (2015) Structural and electrochemical characteristics of graphene nanosheets as supercapacitor electrodes. Rev Adv Mater Sci 40(1):35–43
17.
go back to reference Makhlouf ASH, Tiginyanu I (2011) Nanocoatings and ultra-thin films: technologies and applications. Elsevier Makhlouf ASH, Tiginyanu I (2011) Nanocoatings and ultra-thin films: technologies and applications. Elsevier
18.
go back to reference Makhlouf ASH, Scharnweber D (2015) Handbook of nanoceramic and nanocomposite coatings and materials. Butterworth-Heinemann Makhlouf ASH, Scharnweber D (2015) Handbook of nanoceramic and nanocomposite coatings and materials. Butterworth-Heinemann
19.
go back to reference Makhlouf ASH, Abu-Thabit NY (2018) Stimuli responsive polymeric nanocarriers for drug delivery applications. Elsevier Makhlouf ASH, Abu-Thabit NY (2018) Stimuli responsive polymeric nanocarriers for drug delivery applications. Elsevier
20.
go back to reference Ghawanmeh AA, Ali GAM, Algarni H, Sarkar SM, Chong KF (2019) Graphene oxide-based hydrogels as a nanocarrier for anticancer drug delivery. Nano Res 12:973–990CrossRef Ghawanmeh AA, Ali GAM, Algarni H, Sarkar SM, Chong KF (2019) Graphene oxide-based hydrogels as a nanocarrier for anticancer drug delivery. Nano Res 12:973–990CrossRef
21.
go back to reference Makhlouf ASH, Abu-Thabit NY (2018) Stimuli responsive polymeric nanocarriers for drug delivery applications. In: Volume 1: Types and triggers. Woodhead Publishing Makhlouf ASH, Abu-Thabit NY (2018) Stimuli responsive polymeric nanocarriers for drug delivery applications. In: Volume 1: Types and triggers. Woodhead Publishing
22.
go back to reference Barhoum A, Bechelany M, Makhlouf ASH (2019) Handbook of Nanofibers. Springer International Publishing Barhoum A, Bechelany M, Makhlouf ASH (2019) Handbook of Nanofibers. Springer International Publishing
23.
go back to reference Nekouei F, Kargarzadeh H, Nekouei S, Keshtpour F, Makhlouf ASH (2016) Novel, facile, and fast technique for synthesis of AgCl nanorods loaded on activated carbon for removal of methylene blue dye. Process Saf Environ Prot 103:212–226CrossRef Nekouei F, Kargarzadeh H, Nekouei S, Keshtpour F, Makhlouf ASH (2016) Novel, facile, and fast technique for synthesis of AgCl nanorods loaded on activated carbon for removal of methylene blue dye. Process Saf Environ Prot 103:212–226CrossRef
24.
go back to reference Salam Hamdy A (2010) Corrosion protection performance via nano-coatings technologies. Recent Patents Mater Sci 3(3):258–267 Salam Hamdy A (2010) Corrosion protection performance via nano-coatings technologies. Recent Patents Mater Sci 3(3):258–267
25.
go back to reference Hamdy A (2010) The role of nanotechnology in designing high performance nano-ceramic coatings. Int Rev Chem Eng 2(2):256–262 Hamdy A (2010) The role of nanotechnology in designing high performance nano-ceramic coatings. Int Rev Chem Eng 2(2):256–262
26.
go back to reference Aliofkhazraei M, Makhlouf ASH (2016) Handbook of nanoelectrochemistry: electrochemical synthesis methods, properties, and characterization techniques. Springer Aliofkhazraei M, Makhlouf ASH (2016) Handbook of nanoelectrochemistry: electrochemical synthesis methods, properties, and characterization techniques. Springer
27.
go back to reference Makhlouf ASH, Barhoum A (2018) Fundamentals of nanoparticles: classifications, synthesis methods, properties and characterization. William Andrew Makhlouf ASH, Barhoum A (2018) Fundamentals of nanoparticles: classifications, synthesis methods, properties and characterization. William Andrew
28.
go back to reference Abdal-Hay A, Makhlouf ASH, Vanegas P (2015) A novel approach for facile synthesis of biocompatible PVA-coated PLA nanofibers as composite membrane scaffolds for enhanced osteoblast proliferation. In: Handbook of nanoceramic and nanocomposite coatings and materials. Elsevier, pp 87–113 Abdal-Hay A, Makhlouf ASH, Vanegas P (2015) A novel approach for facile synthesis of biocompatible PVA-coated PLA nanofibers as composite membrane scaffolds for enhanced osteoblast proliferation. In: Handbook of nanoceramic and nanocomposite coatings and materials. Elsevier, pp 87–113
29.
go back to reference Abdal-hay A, Khalil KA, Hamdy AS, Al-Jassir FF (2017) Fabrication of highly porous biodegradable biomimetic nanocomposite as advanced bone tissue scaffold. Arab J Chem 10(2):240–252CrossRef Abdal-hay A, Khalil KA, Hamdy AS, Al-Jassir FF (2017) Fabrication of highly porous biodegradable biomimetic nanocomposite as advanced bone tissue scaffold. Arab J Chem 10(2):240–252CrossRef
30.
go back to reference Hosseini M, Makhlouf ASH (2016) Industrial applications for intelligent polymers and coatings. Springer Hosseini M, Makhlouf ASH (2016) Industrial applications for intelligent polymers and coatings. Springer
31.
go back to reference Ali GAM, Yusoff MM, Algarni H, Chong KF (2018) One-step electrosynthesis of MnO2/rGO nanocomposite and its enhanced electrochemical performance. Ceram Int 44(7):7799–7807 Ali GAM, Yusoff MM, Algarni H, Chong KF (2018) One-step electrosynthesis of MnO2/rGO nanocomposite and its enhanced electrochemical performance. Ceram Int 44(7):7799–7807
32.
go back to reference Abdel Ghafar HH, Ali GAM, Fouad OA, Makhlouf SA (2015) Enhancement of adsorption efficiency of methylene blue on Co3O4/SiO2 nanocomposite. Desalin Water Treat 53(11):2980–2989CrossRef Abdel Ghafar HH, Ali GAM, Fouad OA, Makhlouf SA (2015) Enhancement of adsorption efficiency of methylene blue on Co3O4/SiO2 nanocomposite. Desalin Water Treat 53(11):2980–2989CrossRef
33.
go back to reference Gupta VK, Agarwal S, Sadegh H, Ali GAM, Bharti AK, Hamdy AS (2017) Facile route synthesis of novel graphene oxide-β-cyclodextrin nanocomposite and its application as adsorbent for removal of toxic bisphenol A from the aqueous phase. J Mol Liq 237:466–472CrossRef Gupta VK, Agarwal S, Sadegh H, Ali GAM, Bharti AK, Hamdy AS (2017) Facile route synthesis of novel graphene oxide-β-cyclodextrin nanocomposite and its application as adsorbent for removal of toxic bisphenol A from the aqueous phase. J Mol Liq 237:466–472CrossRef
34.
go back to reference Ali GAM, Thalji MR, Soh WC, Algarni H, Chong KF (2020) One-step electrochemical synthesis of MoS2/graphene composite for supercapacitor application. J Solid State Electrochem 24(1):25–34CrossRef Ali GAM, Thalji MR, Soh WC, Algarni H, Chong KF (2020) One-step electrochemical synthesis of MoS2/graphene composite for supercapacitor application. J Solid State Electrochem 24(1):25–34CrossRef
35.
go back to reference Fouad OA, Makhlouf SA, Ali GAM, El-Sayed AY (2011) Cobalt/silica nanocomposite via thermal calcination-reduction of gel precursors. Mater Chem Phys 128(1–2):70–76CrossRef Fouad OA, Makhlouf SA, Ali GAM, El-Sayed AY (2011) Cobalt/silica nanocomposite via thermal calcination-reduction of gel precursors. Mater Chem Phys 128(1–2):70–76CrossRef
36.
go back to reference Soliman H, Qian J, Tang S, Chen Y, Makhlouf ASH, Wan G (2020) Hydroxyquinoline/nano-graphene oxide composite coating of self-healing functionality on treated Mg alloys AZ31. Surf Coat Technol 385:125395 Soliman H, Qian J, Tang S, Chen Y, Makhlouf ASH, Wan G (2020) Hydroxyquinoline/nano-graphene oxide composite coating of self-healing functionality on treated Mg alloys AZ31. Surf Coat Technol 385:125395
37.
go back to reference Barhoum A, Van Assche G, Makhlouf ASH, Terryn H, Baert K, Delplancke M-P, El-Sheikh SM, Rahier H (2015) A green, simple chemical route for the synthesis of pure nanocalcite crystals. Cryst Growth Des 15(2):573–580CrossRef Barhoum A, Van Assche G, Makhlouf ASH, Terryn H, Baert K, Delplancke M-P, El-Sheikh SM, Rahier H (2015) A green, simple chemical route for the synthesis of pure nanocalcite crystals. Cryst Growth Des 15(2):573–580CrossRef
38.
go back to reference Heibati B, Ghoochani M, Albadarin AB, Mesdaghinia A, Makhlouf ASH, Asif M, Maity A, Tyagi I, Agarwal S, Gupta VK (2016) Removal of linear alkyl benzene sulfonate from aqueous solutions by functionalized multi-walled carbon nanotubes. J Mol Liq 213:339–344CrossRef Heibati B, Ghoochani M, Albadarin AB, Mesdaghinia A, Makhlouf ASH, Asif M, Maity A, Tyagi I, Agarwal S, Gupta VK (2016) Removal of linear alkyl benzene sulfonate from aqueous solutions by functionalized multi-walled carbon nanotubes. J Mol Liq 213:339–344CrossRef
39.
go back to reference Ali GAM, Sadegh H, Yusoff MM, Chong KF (2019) Highly stable symmetric supercapacitor from cysteamine functionalized multi-walled carbon nanotubes operating in a wide potential window. Mater Today: Proc 16:2273–2279 Ali GAM, Sadegh H, Yusoff MM, Chong KF (2019) Highly stable symmetric supercapacitor from cysteamine functionalized multi-walled carbon nanotubes operating in a wide potential window. Mater Today: Proc 16:2273–2279
40.
go back to reference Zhang C, Yan Y, Sheng Zhao Y, Yao J (2013) Synthesis and applications of organic nanorods, nanowires and nanotubes. Ann Rep Section “C” (Phys Chem) 109(0):211–239 Zhang C, Yan Y, Sheng Zhao Y, Yao J (2013) Synthesis and applications of organic nanorods, nanowires and nanotubes. Ann Rep Section “C” (Phys Chem) 109(0):211–239
41.
go back to reference Gleiter H (2000) Nanostructured materials: basic concepts and microstructure. Acta Mater 48(1):1–29CrossRef Gleiter H (2000) Nanostructured materials: basic concepts and microstructure. Acta Mater 48(1):1–29CrossRef
42.
go back to reference Pokropivny VV, Skorokhod VV (2007) Classification of nanostructures by dimensionality and concept of surface forms engineering in nanomaterial science. Mater Sci Eng, C 27(5–8):990–993CrossRef Pokropivny VV, Skorokhod VV (2007) Classification of nanostructures by dimensionality and concept of surface forms engineering in nanomaterial science. Mater Sci Eng, C 27(5–8):990–993CrossRef
43.
go back to reference Sharma SN, Kohli S, Rastogi AC (2005) Quantum confinement effects of CdTe nanocrystals sequestered in TiO2 matrix: effect of oxygen incorporation. Physica E 25(4):554–561CrossRef Sharma SN, Kohli S, Rastogi AC (2005) Quantum confinement effects of CdTe nanocrystals sequestered in TiO2 matrix: effect of oxygen incorporation. Physica E 25(4):554–561CrossRef
44.
go back to reference Zhang S, Berguiga L, Elezgaray J, Roland T, Faivre-Moskalenko C, Argoul F (2007) Surface plasmon resonance characterization of thermally evaporated thin gold films. Surf Sci 601(23):5445–5458CrossRef Zhang S, Berguiga L, Elezgaray J, Roland T, Faivre-Moskalenko C, Argoul F (2007) Surface plasmon resonance characterization of thermally evaporated thin gold films. Surf Sci 601(23):5445–5458CrossRef
45.
go back to reference Haeiwa T, Segawa K, Konishi K (2007) Magnetic properties of isolated Co nanoparticles in SiO2 capsule prepared with reversed micelle. J Magn Magn Mater 310(2):e809–e811CrossRef Haeiwa T, Segawa K, Konishi K (2007) Magnetic properties of isolated Co nanoparticles in SiO2 capsule prepared with reversed micelle. J Magn Magn Mater 310(2):e809–e811CrossRef
46.
go back to reference Khalil KMS, Makhlouf SA (2008) High surface area thermally stabilized porous iron oxide/silica nanocomposites via a formamide modified sol–gel process. Appl Surf Sci 254(13):3767–3773CrossRef Khalil KMS, Makhlouf SA (2008) High surface area thermally stabilized porous iron oxide/silica nanocomposites via a formamide modified sol–gel process. Appl Surf Sci 254(13):3767–3773CrossRef
47.
go back to reference Fu W, Yang H, Hari B, Liu S, Li M, Zou G (2006) Preparation and characteristics of core–shell structure cobalt/silica nanoparticles. Mater Chem Phys 100(2–3):246–250CrossRef Fu W, Yang H, Hari B, Liu S, Li M, Zou G (2006) Preparation and characteristics of core–shell structure cobalt/silica nanoparticles. Mater Chem Phys 100(2–3):246–250CrossRef
48.
go back to reference Yin XJ, Peng K, Hu AP, Zhou LP, Chen JH, Du YW (2009) Preparation and characterization of core–shell structured Co/SiO2 nanosphere. J Alloy Compd 479(1–2):372–375CrossRef Yin XJ, Peng K, Hu AP, Zhou LP, Chen JH, Du YW (2009) Preparation and characterization of core–shell structured Co/SiO2 nanosphere. J Alloy Compd 479(1–2):372–375CrossRef
49.
go back to reference Marina PE, Ali GAM, See LM, Teo EYL, Ng E-P, Chong KF (2016) In situ growth of redox-active iron-centered nanoparticles on graphene sheets for specific capacitance enhancement. Arab J Chem 12(8):3883–3889 Marina PE, Ali GAM, See LM, Teo EYL, Ng E-P, Chong KF (2016) In situ growth of redox-active iron-centered nanoparticles on graphene sheets for specific capacitance enhancement. Arab J Chem 12(8):3883–3889
50.
go back to reference Ali GAM, Wahba OAG, Hassan AM, Fouad OA, Chong KF (2015) Calcium-based nanosized mixed metal oxides for supercapacitor application. Ceram Int 41(6):8230–8234CrossRef Ali GAM, Wahba OAG, Hassan AM, Fouad OA, Chong KF (2015) Calcium-based nanosized mixed metal oxides for supercapacitor application. Ceram Int 41(6):8230–8234CrossRef
51.
go back to reference Deng Z, Tian Y, Yin X, Rui Q, Liu H, Luo Y (2008) Physical vapor deposited zinc oxide nanoparticles for direct electron transfer of superoxide dismutase. Electrochem Commun 10(5):818–820CrossRef Deng Z, Tian Y, Yin X, Rui Q, Liu H, Luo Y (2008) Physical vapor deposited zinc oxide nanoparticles for direct electron transfer of superoxide dismutase. Electrochem Commun 10(5):818–820CrossRef
52.
go back to reference Li K-T, Lin P-H, Lin S-W (2006) Preparation of Ti/SiO2 catalysts by chemical vapor deposition method for olefin epoxidation with cumene hydroperoxide. Appl Catal A 301(1):59–65CrossRef Li K-T, Lin P-H, Lin S-W (2006) Preparation of Ti/SiO2 catalysts by chemical vapor deposition method for olefin epoxidation with cumene hydroperoxide. Appl Catal A 301(1):59–65CrossRef
53.
go back to reference Majima T, Yamamoto H, Kulinich S, Terashima K (2000) High-rate deposition of LiNb1-xTaxO3 films by thermal plasma spray CVD. J Cryst Growth 220(3):336–340CrossRef Majima T, Yamamoto H, Kulinich S, Terashima K (2000) High-rate deposition of LiNb1-xTaxO3 films by thermal plasma spray CVD. J Cryst Growth 220(3):336–340CrossRef
54.
go back to reference Baptista A, Silva F, Porteiro J, Míguez J, Pinto G (2018) Sputtering physical vapour deposition (PVD) coatings: a critical review on process improvement and market trend demands. Coatings 8(11):402CrossRef Baptista A, Silva F, Porteiro J, Míguez J, Pinto G (2018) Sputtering physical vapour deposition (PVD) coatings: a critical review on process improvement and market trend demands. Coatings 8(11):402CrossRef
55.
go back to reference Makhlouf ASH, Barhoum A (2018) Emerging applications of nanoparticles and architectural nanostructures: current prospects and future trends. William Andrew Makhlouf ASH, Barhoum A (2018) Emerging applications of nanoparticles and architectural nanostructures: current prospects and future trends. William Andrew
56.
go back to reference Goto T (2004) High-speed deposition of zirconia films by laser-induced plasma CVD. Solid State Ionics 172(1–4):225–229CrossRef Goto T (2004) High-speed deposition of zirconia films by laser-induced plasma CVD. Solid State Ionics 172(1–4):225–229CrossRef
57.
go back to reference Benelmekki M, Erbe A (2019) Nanostructured thin films–background, preparation and relation to the technological revolution of the 21st century. In: Benelmekki M, Erbe A (eds) Frontiers of nanoscience. Elsevier, pp 1–34 Benelmekki M, Erbe A (2019) Nanostructured thin films–background, preparation and relation to the technological revolution of the 21st century. In: Benelmekki M, Erbe A (eds) Frontiers of nanoscience. Elsevier, pp 1–34
58.
go back to reference Wang Z-M, Yang G, Biswas P, Bresser W, Boolchand P (2001) Processing of iron-doped titania powders in flame aerosol reactors. Powder Technol 114(1–3):197–204CrossRef Wang Z-M, Yang G, Biswas P, Bresser W, Boolchand P (2001) Processing of iron-doped titania powders in flame aerosol reactors. Powder Technol 114(1–3):197–204CrossRef
59.
go back to reference Lambert S, Tran KY, Arrachart G, Noville F, Henrist C, Bied C, Moreau JJ, Man MWC, Heinrichs B (2008) Tailor-made morphologies for Pd/SiO2 catalysts through sol–gel process with various silylated ligands. Microporous Mesoporous Mater 115(3):609–617CrossRef Lambert S, Tran KY, Arrachart G, Noville F, Henrist C, Bied C, Moreau JJ, Man MWC, Heinrichs B (2008) Tailor-made morphologies for Pd/SiO2 catalysts through sol–gel process with various silylated ligands. Microporous Mesoporous Mater 115(3):609–617CrossRef
61.
go back to reference Musat V, Fortunato E, do Rego AB, Monteiro R (2008) Sol–gel cobalt oxide–silica nanocomposite thin films for gas sensing applications. Thin Solid Films 516(7):1499–1502CrossRef Musat V, Fortunato E, do Rego AB, Monteiro R (2008) Sol–gel cobalt oxide–silica nanocomposite thin films for gas sensing applications. Thin Solid Films 516(7):1499–1502CrossRef
62.
go back to reference Wagh P, Ingale S (2002) Comparison of some physico-chemical properties of hydrophilic and hydrophobic silica aerogels. Ceram Int 28(1):43–50CrossRef Wagh P, Ingale S (2002) Comparison of some physico-chemical properties of hydrophilic and hydrophobic silica aerogels. Ceram Int 28(1):43–50CrossRef
63.
go back to reference Esposito S (2019) “Traditional” sol–gel chemistry as a powerful tool for the preparation of supported metal and metal oxide catalysts. Materials 12(4):668CrossRef Esposito S (2019) “Traditional” sol–gel chemistry as a powerful tool for the preparation of supported metal and metal oxide catalysts. Materials 12(4):668CrossRef
64.
go back to reference Popa M, Preda S, Fruth V, Sedlácková K, Balázsi C, Crespo D, Calderón-Moreno JM (2009) BiFeO3 films on steel substrate by the citrate method. Thin Solid Films 517(8):2581–2585CrossRef Popa M, Preda S, Fruth V, Sedlácková K, Balázsi C, Crespo D, Calderón-Moreno JM (2009) BiFeO3 films on steel substrate by the citrate method. Thin Solid Films 517(8):2581–2585CrossRef
65.
go back to reference Niranjan R, Hwang Y, Kim D-K, Jhung S, Chang J-S, Mulla I (2005) Nanostructured tin oxide: synthesis and gas-sensing properties. Mater Chem Phys 92(2–3):384–388CrossRef Niranjan R, Hwang Y, Kim D-K, Jhung S, Chang J-S, Mulla I (2005) Nanostructured tin oxide: synthesis and gas-sensing properties. Mater Chem Phys 92(2–3):384–388CrossRef
66.
go back to reference Patil M, Deshpande V, Ravi V (2006) Synthesis of nanocrystalline Sn0.2Zr0.8TiO4 by the citrate gel method. Ceram Int 32(3):345–347 Patil M, Deshpande V, Ravi V (2006) Synthesis of nanocrystalline Sn0.2Zr0.8TiO4 by the citrate gel method. Ceram Int 32(3):345–347
67.
go back to reference Zarei M, Borhani Zarandi M, Alizadeh M (2019) Preparation of CuO/CeO2 composites by the Pechini method and investigation of their structural and electrical properties. Ceram Int 45(2, Part A):1991–1997 Zarei M, Borhani Zarandi M, Alizadeh M (2019) Preparation of CuO/CeO2 composites by the Pechini method and investigation of their structural and electrical properties. Ceram Int 45(2, Part A):1991–1997
68.
go back to reference Roy P, Srivastava SK (2007) Low-temperature synthesis of CuS nanorods by simple wet chemical method. Mater Lett 61(8–9):1693–1697CrossRef Roy P, Srivastava SK (2007) Low-temperature synthesis of CuS nanorods by simple wet chemical method. Mater Lett 61(8–9):1693–1697CrossRef
69.
go back to reference Darezereshki E (2010) Synthesis of maghemite (γ-Fe2O3) nanoparticles by wet chemical method at room temperature. Mater Lett 64(13):1471–1472CrossRef Darezereshki E (2010) Synthesis of maghemite (γ-Fe2O3) nanoparticles by wet chemical method at room temperature. Mater Lett 64(13):1471–1472CrossRef
70.
go back to reference Jana S, Das S, Das N, Chattopadhyay K (2010) CuO nanostructures on copper foil by a simple wet chemical route at room temperature. Mater Res Bull 45(6):693–698CrossRef Jana S, Das S, Das N, Chattopadhyay K (2010) CuO nanostructures on copper foil by a simple wet chemical route at room temperature. Mater Res Bull 45(6):693–698CrossRef
71.
go back to reference Yu Z-G, Yang B-C (2008) Morphological investigation on cobalt oxide powder prepared by wet chemical method. Mater Lett 62(2):211–214CrossRef Yu Z-G, Yang B-C (2008) Morphological investigation on cobalt oxide powder prepared by wet chemical method. Mater Lett 62(2):211–214CrossRef
72.
go back to reference Shimpi NG, Jain S, Karmakar N, Shah A, Kothari DC, Mishra S (2016) Synthesis of ZnO nanopencils using wet chemical method and its investigation as LPG sensor. Appl Surf Sci 390:17–24CrossRef Shimpi NG, Jain S, Karmakar N, Shah A, Kothari DC, Mishra S (2016) Synthesis of ZnO nanopencils using wet chemical method and its investigation as LPG sensor. Appl Surf Sci 390:17–24CrossRef
73.
go back to reference Lee J-S, Lee C-S, Oh S-T, Kim J-G (2001) Phase evolution of Fe2O3 nanoparticle during high energy ball milling. Scripta Mater 44(8–9):2023–2026CrossRef Lee J-S, Lee C-S, Oh S-T, Kim J-G (2001) Phase evolution of Fe2O3 nanoparticle during high energy ball milling. Scripta Mater 44(8–9):2023–2026CrossRef
74.
go back to reference Li J, Ni X, Wang G (2007) Microstructure and magnetic properties of Co/Al2O3 nanocomposite powders. J Alloy Compd 440(1–2):349–356CrossRef Li J, Ni X, Wang G (2007) Microstructure and magnetic properties of Co/Al2O3 nanocomposite powders. J Alloy Compd 440(1–2):349–356CrossRef
75.
go back to reference Ambika S, Devasena M, Nambi IM (2016) Synthesis, characterization and performance of high energy ball milled meso-scale zero valent iron in Fenton reaction. J Environ Manage 181:847–855CrossRef Ambika S, Devasena M, Nambi IM (2016) Synthesis, characterization and performance of high energy ball milled meso-scale zero valent iron in Fenton reaction. J Environ Manage 181:847–855CrossRef
76.
go back to reference Morsy SM, Shaban SA, Ibrahim AM, Selim MM (2009) Characterization of cobalt oxide nanocatalysts prepared by microemulsion with different surfactants, reduction by hydrazine and mechanochemical method. J Alloy Compd 486(1–2):83–87CrossRef Morsy SM, Shaban SA, Ibrahim AM, Selim MM (2009) Characterization of cobalt oxide nanocatalysts prepared by microemulsion with different surfactants, reduction by hydrazine and mechanochemical method. J Alloy Compd 486(1–2):83–87CrossRef
77.
go back to reference Makhlouf SA, Kassem MA, Abdel-Rahim MA (2009) Particle size-dependent electrical properties of nanocrystalline NiO. J Mater Sci 44(13):3438–3444CrossRef Makhlouf SA, Kassem MA, Abdel-Rahim MA (2009) Particle size-dependent electrical properties of nanocrystalline NiO. J Mater Sci 44(13):3438–3444CrossRef
78.
go back to reference Ethiraj AS, Uttam P, Varunkumar K, Chong KF, Ali GAM (2019) Photocatalytic performance of a novel semiconductor nanocatalyst: Copper doped nickel oxide for phenol degradation. Mater Chem Phys 242:122520 Ethiraj AS, Uttam P, Varunkumar K, Chong KF, Ali GAM (2019) Photocatalytic performance of a novel semiconductor nanocatalyst: Copper doped nickel oxide for phenol degradation. Mater Chem Phys 242:122520
79.
go back to reference Tjong S, Chen H (2004) Nanocrystalline materials and coatings. Mater Sci Eng: R: Rep 45(1–2):1–88CrossRef Tjong S, Chen H (2004) Nanocrystalline materials and coatings. Mater Sci Eng: R: Rep 45(1–2):1–88CrossRef
80.
go back to reference Salavati-Niasari M, Khansari A, Davar F (2009) Synthesis and characterization of cobalt oxide nanoparticles by thermal treatment process. Inorg Chim Acta 362(14):4937–4942CrossRef Salavati-Niasari M, Khansari A, Davar F (2009) Synthesis and characterization of cobalt oxide nanoparticles by thermal treatment process. Inorg Chim Acta 362(14):4937–4942CrossRef
81.
go back to reference Haroun AAA, Rabie AGM, Ali GAM, Abdelrahim MYM (2019) Improving the mechanical and thermal properties of chlorinated poly (vinyl chloride) by incorporating modified CaCO3 nanoparticles as a filler. Turk J Chem 43(3):750–759CrossRef Haroun AAA, Rabie AGM, Ali GAM, Abdelrahim MYM (2019) Improving the mechanical and thermal properties of chlorinated poly (vinyl chloride) by incorporating modified CaCO3 nanoparticles as a filler. Turk J Chem 43(3):750–759CrossRef
82.
go back to reference Al-Turaif HA (2010) Effect of nano TiO2 particle size on mechanical properties of cured epoxy resin. Prog Org Coat 69(3):241–246CrossRef Al-Turaif HA (2010) Effect of nano TiO2 particle size on mechanical properties of cured epoxy resin. Prog Org Coat 69(3):241–246CrossRef
83.
go back to reference Lai S, Guo J, Petrova V, Ramanath G, Allen L (1996) Size-dependent melting properties of small tin particles: nanocalorimetric measurements. Phys Rev Lett 77(1):99CrossRef Lai S, Guo J, Petrova V, Ramanath G, Allen L (1996) Size-dependent melting properties of small tin particles: nanocalorimetric measurements. Phys Rev Lett 77(1):99CrossRef
84.
go back to reference Ali GAM, Yusoff MM, Shaaban ER, Chong KF (2017) High performance MnO2 nanoflower supercapacitor electrode by electrochemical recycling of spent batteries. Ceram Int 43:8440–8448CrossRef Ali GAM, Yusoff MM, Shaaban ER, Chong KF (2017) High performance MnO2 nanoflower supercapacitor electrode by electrochemical recycling of spent batteries. Ceram Int 43:8440–8448CrossRef
85.
go back to reference Aboelazm EAA, Ali GAM, Chong KF (2018) Cobalt oxide supercapacitor electrode recovered from spent lithium-ion battery. Chem Adv Mater 3:67–74 Aboelazm EAA, Ali GAM, Chong KF (2018) Cobalt oxide supercapacitor electrode recovered from spent lithium-ion battery. Chem Adv Mater 3:67–74
86.
go back to reference Ali GAM, Divyashree A, Supriya S, Chong KF, Ethiraj AS, Reddy MV, Algarni H, Hegde G (2017) Carbon nanospheres derived from Lablab purpureus for high performance supercapacitor electrodes: a green approach. Dalton Trans 46(40):14034–14044CrossRef Ali GAM, Divyashree A, Supriya S, Chong KF, Ethiraj AS, Reddy MV, Algarni H, Hegde G (2017) Carbon nanospheres derived from Lablab purpureus for high performance supercapacitor electrodes: a green approach. Dalton Trans 46(40):14034–14044CrossRef
87.
go back to reference Ali GAM (2020) Recycled MnO2 nanoflowers and graphene nanosheets for low-cost and high performance asymmetric supercapacitor. J Electron Mater 49(9):5411–5421 Ali GAM (2020) Recycled MnO2 nanoflowers and graphene nanosheets for low-cost and high performance asymmetric supercapacitor. J Electron Mater 49(9):5411–5421
88.
go back to reference Ali GAM, Habeeb OA, Algarni H, Chong KF (2018) CaO impregnated highly porous honeycomb activated carbon from agriculture waste: symmetrical supercapacitor study. J Mater Sci 54:683–692CrossRef Ali GAM, Habeeb OA, Algarni H, Chong KF (2018) CaO impregnated highly porous honeycomb activated carbon from agriculture waste: symmetrical supercapacitor study. J Mater Sci 54:683–692CrossRef
89.
go back to reference Aboelazm EAA, Ali GAM, Algarni H, Yin H, Zhong YL, Chong KF (2018) Magnetic Electrodeposition of the hierarchical cobalt oxide nanostructure from spent lithium-ion batteries: its application as a supercapacitor electrode. J Phys Chem C 122(23):12200–12206CrossRef Aboelazm EAA, Ali GAM, Algarni H, Yin H, Zhong YL, Chong KF (2018) Magnetic Electrodeposition of the hierarchical cobalt oxide nanostructure from spent lithium-ion batteries: its application as a supercapacitor electrode. J Phys Chem C 122(23):12200–12206CrossRef
90.
go back to reference Ali GAM, Tan LL, Jose R, Yusoff MM, Chong KF (2014) Electrochemical performance studies of MnO2 nanoflowers recovered from spent battery. Mater Res Bull 60:5–9CrossRef Ali GAM, Tan LL, Jose R, Yusoff MM, Chong KF (2014) Electrochemical performance studies of MnO2 nanoflowers recovered from spent battery. Mater Res Bull 60:5–9CrossRef
91.
go back to reference Ali GAM, Yusoff MM, Chong KF (2016) Graphene electrochemical production and its energy storage properties. ARPN J Eng Appl Sci 11(16):9712–9717 Ali GAM, Yusoff MM, Chong KF (2016) Graphene electrochemical production and its energy storage properties. ARPN J Eng Appl Sci 11(16):9712–9717
92.
go back to reference Ali GAM, Abdul Manaf SA, Kumar A, Chong KF, Hegde G (2014) High performance supercapacitor using catalysis free porous carbon nanoparticles. J Phys D Appl Phys 47(49):495307–495313CrossRef Ali GAM, Abdul Manaf SA, Kumar A, Chong KF, Hegde G (2014) High performance supercapacitor using catalysis free porous carbon nanoparticles. J Phys D Appl Phys 47(49):495307–495313CrossRef
93.
go back to reference Solehudin M, Sirimahachai U, Ali GAM, Chong KF, Wongnawa S (2020) One-pot synthesis of isotype heterojunction g-C3N4-MU photocatalyst for effective tetracycline hydrochloride antibiotic and reactive orange 16 dye removal. Adv Powder Technol 31(5):1891–1902 Solehudin M, Sirimahachai U, Ali GAM, Chong KF, Wongnawa S (2020) One-pot synthesis of isotype heterojunction g-C3N4-MU photocatalyst for effective tetracycline hydrochloride antibiotic and reactive orange 16 dye removal. Adv Powder Technol 31(5):1891–1902
94.
go back to reference Kamrani M, Seifpanahi-Shabani K, Seyed-Hakimi A, Al G, Agarwa S, Gupta V (2019) Degradation of cyanide from gold processing effluent by H2O2, NaClO and Ca(ClO)2 combined with sequential catalytic process. Bul Chem Commun 51(3):384–393 Kamrani M, Seifpanahi-Shabani K, Seyed-Hakimi A, Al G, Agarwa S, Gupta V (2019) Degradation of cyanide from gold processing effluent by H2O2, NaClO and Ca(ClO)2 combined with sequential catalytic process. Bul Chem Commun 51(3):384–393
95.
go back to reference Sharifi A, Montazerghaem L, Naeimi A, Abhari AR, Vafaee M, Ali GAM, Sadegh H (2019) Investigation of photocatalytic behavior of modified ZnS: Mn/MWCNTs nanocomposite for organic pollutants effective photodegradation. J Environ Manage 247:624–632CrossRef Sharifi A, Montazerghaem L, Naeimi A, Abhari AR, Vafaee M, Ali GAM, Sadegh H (2019) Investigation of photocatalytic behavior of modified ZnS: Mn/MWCNTs nanocomposite for organic pollutants effective photodegradation. J Environ Manage 247:624–632CrossRef
96.
go back to reference Giahi M, Pathania D, Agarwal S, Ali GAM, Chong KF, Gupta VK (2019) Preparation of Mg-doped TiO2 nanoparticles for photocatalytic degradation of some organic pollutants. Stud Univ Babes-Bolyai, Chem 64(1):7–18 Giahi M, Pathania D, Agarwal S, Ali GAM, Chong KF, Gupta VK (2019) Preparation of Mg-doped TiO2 nanoparticles for photocatalytic degradation of some organic pollutants. Stud Univ Babes-Bolyai, Chem 64(1):7–18
97.
go back to reference Abdal-hay A, Hamdy Makhlouf ASH, Khalil KA (2015) Novel, facile, single-step technique of polymer/TiO2 nanofiber composites membrane for photodegradation of methylene blue. ACS Appl Mater Interfaces 7(24):13329–13341 Abdal-hay A, Hamdy Makhlouf ASH, Khalil KA (2015) Novel, facile, single-step technique of polymer/TiO2 nanofiber composites membrane for photodegradation of methylene blue. ACS Appl Mater Interfaces 7(24):13329–13341
98.
go back to reference Hamidreza S, Gomaa AMA (2019) Potential applications of nanomaterials in wastewater treatment: nanoadsorbents performance. In: Athar H, Sirajuddin A (eds) Advanced treatment techniques for industrial wastewater. IGI Global, Hershey, PA, USA, pp 51–61 Hamidreza S, Gomaa AMA (2019) Potential applications of nanomaterials in wastewater treatment: nanoadsorbents performance. In: Athar H, Sirajuddin A (eds) Advanced treatment techniques for industrial wastewater. IGI Global, Hershey, PA, USA, pp 51–61
99.
go back to reference Maazinejad B, Mohammadnia O, Ali GAM, Makhlouf ASH, Nadagouda MN, Sillanpää M, Asiri AM, Agarwal S, Gupta VK, Sadegh H (2020) Taguchi L9 (34) orthogonal array study based on methylene blue removal by single-walled carbon nanotubes-amine: adsorption optimization using the experimental design method, kinetics, equilibrium and thermodynamics. J Mol Liq 298:112001CrossRef Maazinejad B, Mohammadnia O, Ali GAM, Makhlouf ASH, Nadagouda MN, Sillanpää M, Asiri AM, Agarwal S, Gupta VK, Sadegh H (2020) Taguchi L9 (34) orthogonal array study based on methylene blue removal by single-walled carbon nanotubes-amine: adsorption optimization using the experimental design method, kinetics, equilibrium and thermodynamics. J Mol Liq 298:112001CrossRef
100.
go back to reference Sadegh H, Ali GAM, Makhlouf ASH, Chong KF, Alharbi NS, Agarwal S, Gupta VK (2018) MWCNTs-Fe3O4 nanocomposite for Hg(II) high adsorption efficiency. J Mol Liq 258:345–353CrossRef Sadegh H, Ali GAM, Makhlouf ASH, Chong KF, Alharbi NS, Agarwal S, Gupta VK (2018) MWCNTs-Fe3O4 nanocomposite for Hg(II) high adsorption efficiency. J Mol Liq 258:345–353CrossRef
101.
go back to reference Sadegh H, Ali GAM, Gupta VK, Makhlouf ASH, Shahryari-ghoshekandi R, Nadagouda MN, Sillanpää M, Megiel E (2017) The role of nanomaterials as effective adsorbents and their applications in wastewater treatment. J Nanostruct Chem 7(1):1–14 Sadegh H, Ali GAM, Gupta VK, Makhlouf ASH, Shahryari-ghoshekandi R, Nadagouda MN, Sillanpää M, Megiel E (2017) The role of nanomaterials as effective adsorbents and their applications in wastewater treatment. J Nanostruct Chem 7(1):1–14
102.
go back to reference Sadegh H, Ali GAM, Nia HJ, Mahmoodi Z (2019) Nanomaterial surface modifications for enhancement of the pollutant adsorption from wastewater. In: Nanotechnology Applications in Environmental Engineering, IGI Global, Hershey, PA, USA, pp 143–170 Sadegh H, Ali GAM, Nia HJ, Mahmoodi Z (2019) Nanomaterial surface modifications for enhancement of the pollutant adsorption from wastewater. In: Nanotechnology Applications in Environmental Engineering, IGI Global, Hershey, PA, USA, pp 143–170
103.
go back to reference Seyed Arabi SM, Lalehloo RS, Olyai MRTB, Ali GAM, Sadegh H (2019) Removal of congo red azo dye from aqueous solution by ZnO nanoparticles loaded on multiwall carbon nanotubes. Physica E 106:150–155CrossRef Seyed Arabi SM, Lalehloo RS, Olyai MRTB, Ali GAM, Sadegh H (2019) Removal of congo red azo dye from aqueous solution by ZnO nanoparticles loaded on multiwall carbon nanotubes. Physica E 106:150–155CrossRef
104.
go back to reference Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Low-cost and eco-friendly activated carbon from modified palm kernel shell for hydrogen sulfide removal from wastewater: adsorption and kinetic studies. Desalin Water Treat 84:205–214CrossRef Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Low-cost and eco-friendly activated carbon from modified palm kernel shell for hydrogen sulfide removal from wastewater: adsorption and kinetic studies. Desalin Water Treat 84:205–214CrossRef
105.
go back to reference Habeeb OA, Ramesh K, Ali GAM, Yunus RM, Olalere OA (2017) Kinetic, isotherm and equilibrium study of adsorption of hydrogen sulfide from wastewater using modified eggshells. IIUM Eng J 18(1):13–25CrossRef Habeeb OA, Ramesh K, Ali GAM, Yunus RM, Olalere OA (2017) Kinetic, isotherm and equilibrium study of adsorption of hydrogen sulfide from wastewater using modified eggshells. IIUM Eng J 18(1):13–25CrossRef
106.
go back to reference Abed HO, Kanthasamy R, Ali GAM, Sethupathi S, Yunus RBM (2017) Hydrogen sulfide emission sources, regulations, and removal techniques: a review. Rev Chem Eng 34(6):837–854 Abed HO, Kanthasamy R, Ali GAM, Sethupathi S, Yunus RBM (2017) Hydrogen sulfide emission sources, regulations, and removal techniques: a review. Rev Chem Eng 34(6):837–854
107.
go back to reference Nekouei F, Kargarzadeh H, Nekouei S, Keshtpour F, Makhlouf ASH (2017) Efficient method for determination of methylene blue dye in water samples based on a combined dispersive solid phase and cloud point extraction using Cu(OH)2 nanoflakes: central composite design optimization. Anal Bioanal Chem 409(4):1079–1092CrossRef Nekouei F, Kargarzadeh H, Nekouei S, Keshtpour F, Makhlouf ASH (2017) Efficient method for determination of methylene blue dye in water samples based on a combined dispersive solid phase and cloud point extraction using Cu(OH)2 nanoflakes: central composite design optimization. Anal Bioanal Chem 409(4):1079–1092CrossRef
108.
go back to reference Gupta VK, Moradi O, Tyagi I, Agarwal S, Sadegh H, Shahryari-Ghoshekandi R, Makhlouf ASH, Goodarzi M, Garshasbi A (2016) Study on the removal of heavy metal ions from industry waste by carbon nanotubes: effect of the surface modification: a review. Crit Rev Environ Sci Technol 46(2):93–118CrossRef Gupta VK, Moradi O, Tyagi I, Agarwal S, Sadegh H, Shahryari-Ghoshekandi R, Makhlouf ASH, Goodarzi M, Garshasbi A (2016) Study on the removal of heavy metal ions from industry waste by carbon nanotubes: effect of the surface modification: a review. Crit Rev Environ Sci Technol 46(2):93–118CrossRef
109.
go back to reference Sadegh H, Ali GAM, Agarwal S, Gupta VK (2019) Surface Modification of MWCNTs with carboxylic-to-amine and their superb adsorption performance. Int J Environ Res 13(3):523–531CrossRef Sadegh H, Ali GAM, Agarwal S, Gupta VK (2019) Surface Modification of MWCNTs with carboxylic-to-amine and their superb adsorption performance. Int J Environ Res 13(3):523–531CrossRef
110.
go back to reference Agarwal S, Sadegh H, Majid Monajjemi, Makhlouf ASH, Ali GAM, Memar AOH, Shahryari-ghoshekandi R, Tyagi I, Gupta VK (2016) Efficient removal of toxic bromothymol blue and methylene blue from wastewater by polyvinyl alcohol. J Mol Liq 218:191–197CrossRef Agarwal S, Sadegh H, Majid Monajjemi, Makhlouf ASH, Ali GAM, Memar AOH, Shahryari-ghoshekandi R, Tyagi I, Gupta VK (2016) Efficient removal of toxic bromothymol blue and methylene blue from wastewater by polyvinyl alcohol. J Mol Liq 218:191–197CrossRef
111.
go back to reference Sadegh H, Ali GAM, Abbasi Z, Nadagoud MN (2017) Adsorption of ammonium ions onto multi-walled carbon nanotubes. Stud Univ Babes-Bolyai, Chem 62(2):233–245 Sadegh H, Ali GAM, Abbasi Z, Nadagoud MN (2017) Adsorption of ammonium ions onto multi-walled carbon nanotubes. Stud Univ Babes-Bolyai, Chem 62(2):233–245
112.
go back to reference Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Application of response surface methodology for optimization of palm kernel shell activated carbon preparation factors for removal of H2S from industrial wastewater. Jurnal Teknologi 79(7):1–10 Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Application of response surface methodology for optimization of palm kernel shell activated carbon preparation factors for removal of H2S from industrial wastewater. Jurnal Teknologi 79(7):1–10
113.
go back to reference Martucci A, Buso D, Guglielmi M, Zbroniec L, Koshizaki N, Post M (2004) Optical gas sensing properties of silica film doped with cobalt oxide nanocrystals. J Sol–Gel Sci Technol 32(1–3):243–246CrossRef Martucci A, Buso D, Guglielmi M, Zbroniec L, Koshizaki N, Post M (2004) Optical gas sensing properties of silica film doped with cobalt oxide nanocrystals. J Sol–Gel Sci Technol 32(1–3):243–246CrossRef
114.
go back to reference Kaushika N, Reddy K, Kaushik K (2016) Sustainable energy and the environment: a clean technology approach. Springer Kaushika N, Reddy K, Kaushik K (2016) Sustainable energy and the environment: a clean technology approach. Springer
115.
go back to reference Ali GAM (2020) Supercapacitors by recycling technologies: economic and environmental aspects. ARID Int J Sci Technol 3(5):74–83 Ali GAM (2020) Supercapacitors by recycling technologies: economic and environmental aspects. ARID Int J Sci Technol 3(5):74–83
116.
go back to reference Hegde G, Abdul Manaf SA, Kumar A, Ali GAM, Chong KF, Ngaini Z, Sharma KV (2015) Biowaste sago bark based catalyst free carbon nanospheres: waste to wealth approach. ACS Sustain Chem Eng 5(9):2247–2253CrossRef Hegde G, Abdul Manaf SA, Kumar A, Ali GAM, Chong KF, Ngaini Z, Sharma KV (2015) Biowaste sago bark based catalyst free carbon nanospheres: waste to wealth approach. ACS Sustain Chem Eng 5(9):2247–2253CrossRef
117.
go back to reference Ali GAM, Supriya S, Chong KF, Shaaban ER, Algarni H, Maiyalagan T, Hegde G (2019) Superior supercapacitance behavior of oxygen self-doped carbon nanospheres: a conversion of Allium cepa peel to energy storage system. Biomass Convers Biorefinery Ali GAM, Supriya S, Chong KF, Shaaban ER, Algarni H, Maiyalagan T, Hegde G (2019) Superior supercapacitance behavior of oxygen self-doped carbon nanospheres: a conversion of Allium cepa peel to energy storage system. Biomass Convers Biorefinery
118.
go back to reference Ali GAM, Manaf SAA, Divyashree A, Chong KF, Hedge G (2016) Superior supercapacitive performance in porous nanocarbons. J Energy Chem 25(4):734–739CrossRef Ali GAM, Manaf SAA, Divyashree A, Chong KF, Hedge G (2016) Superior supercapacitive performance in porous nanocarbons. J Energy Chem 25(4):734–739CrossRef
119.
go back to reference Rafatullah M, Ahmad T, Ghazali A, Sulaiman O, Danish M, Hashim R (2013) Oil palm biomass as a precursor of activated carbons: a review. Crit Rev Environ Sci Technol 43(11):1117–1161CrossRef Rafatullah M, Ahmad T, Ghazali A, Sulaiman O, Danish M, Hashim R (2013) Oil palm biomass as a precursor of activated carbons: a review. Crit Rev Environ Sci Technol 43(11):1117–1161CrossRef
120.
go back to reference Chavalparit O, Rulkens W, Mol A, Khaodhair S (2006) Options for environmental sustainability of the crude palm oil industry in Thailand through enhancement of industrial ecosystems. Environ Dev Sustain 8(2):271–287CrossRef Chavalparit O, Rulkens W, Mol A, Khaodhair S (2006) Options for environmental sustainability of the crude palm oil industry in Thailand through enhancement of industrial ecosystems. Environ Dev Sustain 8(2):271–287CrossRef
121.
go back to reference Polprasert C, Liyanage L (1996) Hazardous waste generation and processing. Resour Conserv Recycl 16(1–4):213–226CrossRef Polprasert C, Liyanage L (1996) Hazardous waste generation and processing. Resour Conserv Recycl 16(1–4):213–226CrossRef
122.
go back to reference Ali GAM, Yusoff MM, Feng CK (2015) Electrochemical properties of electrodeposited MnO2 nanoparticles. Adv Mater Res 1113:550–553CrossRef Ali GAM, Yusoff MM, Feng CK (2015) Electrochemical properties of electrodeposited MnO2 nanoparticles. Adv Mater Res 1113:550–553CrossRef
123.
go back to reference Sormunen P, Kärki T (2019) Recycled construction and demolition waste as a possible source of materials for composite manufacturing. J Build Eng 24:100742CrossRef Sormunen P, Kärki T (2019) Recycled construction and demolition waste as a possible source of materials for composite manufacturing. J Build Eng 24:100742CrossRef
124.
go back to reference Pala M, Marathe PS, Hu X, Ronsse F, Prins W, Kersten SRA, Lange J-P, Westerhof RJM (2020) Recycling of product gas does not affect fast pyrolysis oil yield and composition. J Anal Appl Pyrol 148:104794CrossRef Pala M, Marathe PS, Hu X, Ronsse F, Prins W, Kersten SRA, Lange J-P, Westerhof RJM (2020) Recycling of product gas does not affect fast pyrolysis oil yield and composition. J Anal Appl Pyrol 148:104794CrossRef
125.
go back to reference Habeeb OA, Ramesh K, Ali GAM, and Yunus RM (2017) Experimental design technique on removal of hydrogen sulfide using CaO-eggshells dispersed onto palm kernel shell activated carbon: Experiment, optimization, equilibrium and kinetic studies. J Wuhan Univ Technol Mater Sci Ed 32(2):305–320 Habeeb OA, Ramesh K, Ali GAM, and Yunus RM (2017) Experimental design technique on removal of hydrogen sulfide using CaO-eggshells dispersed onto palm kernel shell activated carbon: Experiment, optimization, equilibrium and kinetic studies. J Wuhan Univ Technol Mater Sci Ed 32(2):305–320
126.
go back to reference Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Isothermal modelling based experimental study of dissolved hydrogen sulfide adsorption from waste water using eggshell based activated carbon. Malays J Anal Sci 21(2):334–345CrossRef Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Isothermal modelling based experimental study of dissolved hydrogen sulfide adsorption from waste water using eggshell based activated carbon. Malays J Anal Sci 21(2):334–345CrossRef
127.
go back to reference Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Optimization of activated carbon synthesis using response surface methodology to enhance H2S removal from refinery wastewater. J Chem Eng Ind Biotechnol 1(1):1–17 Habeeb OA, Ramesh K, Ali GAM, Yunus RM (2017) Optimization of activated carbon synthesis using response surface methodology to enhance H2S removal from refinery wastewater. J Chem Eng Ind Biotechnol 1(1):1–17
128.
go back to reference Habeeb OA, Ramesh K, Ali GAM, Yunus RM, Thanusha TK, Olalere OA (2016) Modeling and optimization for H2S adsorption from wastewater using coconut shell based activated carbon. Aust J Basic Appl Sci 10(17):136–147 Habeeb OA, Ramesh K, Ali GAM, Yunus RM, Thanusha TK, Olalere OA (2016) Modeling and optimization for H2S adsorption from wastewater using coconut shell based activated carbon. Aust J Basic Appl Sci 10(17):136–147
129.
go back to reference Kaminsky W (1985) Thermal recycling of polymers. J Anal Appl Pyrol 8:439–448CrossRef Kaminsky W (1985) Thermal recycling of polymers. J Anal Appl Pyrol 8:439–448CrossRef
130.
go back to reference Santos VEO, Celante VG, Lelis MFF, Freitas MBJG (2012) Chemical and electrochemical recycling of the nickel, cobalt, zinc and manganese from the positives electrodes of spent Ni–MH batteries from mobile phones. J Power Sources 218:435–444CrossRef Santos VEO, Celante VG, Lelis MFF, Freitas MBJG (2012) Chemical and electrochemical recycling of the nickel, cobalt, zinc and manganese from the positives electrodes of spent Ni–MH batteries from mobile phones. J Power Sources 218:435–444CrossRef
Metadata
Title
Fundamentals of Waste Recycling for Nanomaterial Manufacturing
Authors
Gomaa A. M. Ali
Abdel Salam Hamdy Makhlouf
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-68031-2_1

Premium Partners