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2021 | OriginalPaper | Chapter

Biosorption of Ni(II) Using Seeds of Mirabilis Jalapa

Authors : V. Anitha, A. Balakumaran, V. V. Ramprakash, A. V. Vinothini, P. Muthukumaran, Aravind Jeyaseelan

Published in: Bioremediation and Green Technologies

Publisher: Springer International Publishing

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Abstract

The release of effluents from automobile industries contains various metal ions which has to be removed effectively. This can be done eco-friendly using biosorption. Ni (II) ions were adsorbed using seeds of Mirabilis jalapa. The seeds showed maximum adsorption activity without activation. Optimization studies were carried out to achieve maximum removal efficiency. The parameters included in the study were pH, contact time, metal ion concentration, RPM, adsorbent dosage concentration and temperature. The equilibrium data showed that the adsorption fits Harkins–Jura isotherm model. Kinetics studies revealed that the adsorption follows pseudo-first-order kinetics. Further, optimization studies were carried out using Box-Behnken design, and the obtained data reveals that the model is significant. Modification in the functional groups were studied using FTIR analysis, and the results were interpreted.

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Literature
go back to reference Aikpokpodion PE, Ipinmoroti RR, Omotoso SM (2010) Biosorption of Ni(II) from aqueous solutions using waste tea (Camella cinencis) materials. Am Eurasian J Toxicol Sci 2:72–82 Aikpokpodion PE, Ipinmoroti RR, Omotoso SM (2010) Biosorption of Ni(II) from aqueous solutions using waste tea (Camella cinencis) materials. Am Eurasian J Toxicol Sci 2:72–82
go back to reference Al-Rub FA, El-Naas MH, Benyahia F, Ashour I (2004) Biosorption of Nickel on blank alginate beads, free and immobilized algal cells. Process Biochem 39:1767–1773CrossRef Al-Rub FA, El-Naas MH, Benyahia F, Ashour I (2004) Biosorption of Nickel on blank alginate beads, free and immobilized algal cells. Process Biochem 39:1767–1773CrossRef
go back to reference Aravind J, Lenin C, Nancyflavia C et al (2015) Response surface methodology optimization of Nickel (II) removal using pigeon pea pod biosorbent. Int J Environ Sci Technol 12:105–114CrossRef Aravind J, Lenin C, Nancyflavia C et al (2015) Response surface methodology optimization of Nickel (II) removal using pigeon pea pod biosorbent. Int J Environ Sci Technol 12:105–114CrossRef
go back to reference Cayllahua JEB, Torem ML (2011) Biosorptive flotation of nickel and aluminum ions from aqueous solution. Desalination 279:195–200CrossRef Cayllahua JEB, Torem ML (2011) Biosorptive flotation of nickel and aluminum ions from aqueous solution. Desalination 279:195–200CrossRef
go back to reference Cempel M, Nikel G (2006) Nickel: a review of its sources and environmental toxicology. Pol J Environ Stud 15(3):375–382 Cempel M, Nikel G (2006) Nickel: a review of its sources and environmental toxicology. Pol J Environ Stud 15(3):375–382
go back to reference Fu F, Wang Q (2011) Removal of heavy metals from waste water: a review. J Environ Manage 92:407–418CrossRef Fu F, Wang Q (2011) Removal of heavy metals from waste water: a review. J Environ Manage 92:407–418CrossRef
go back to reference Fertu DIT, Gavrilescu M (2012) Application of natural zeolites as sorbent in the cleanup of aqueous streams. Environ Eng Manage J 11(4):867–878CrossRef Fertu DIT, Gavrilescu M (2012) Application of natural zeolites as sorbent in the cleanup of aqueous streams. Environ Eng Manage J 11(4):867–878CrossRef
go back to reference Flores-Garnica JG, Morales-Barrera L, Pineda-Camacho G, Cristiani-Urbina E (2013) Biosorption of Ni(II) from aqueous solutions by Litchi chinensis seeds. Bioresour Technol 136:635–643CrossRef Flores-Garnica JG, Morales-Barrera L, Pineda-Camacho G, Cristiani-Urbina E (2013) Biosorption of Ni(II) from aqueous solutions by Litchi chinensis seeds. Bioresour Technol 136:635–643CrossRef
go back to reference Gohulavani G, Andal NM (2013) Removal of Nickel from aqueous solution using Azaridachta indica seed shell powder as adsorbent. Res Rev J Chem 2(1):78–84 Gohulavani G, Andal NM (2013) Removal of Nickel from aqueous solution using Azaridachta indica seed shell powder as adsorbent. Res Rev J Chem 2(1):78–84
go back to reference Kalavathy HM, Regupathi I, Pillai MG, Miranda LR (2009) Modelling, analysis and optimization of adsorption parameters for H3PO4 activated rubber wood sawdust using response surface methodology (RSM). Colloids Surf B 70(1):35–45CrossRef Kalavathy HM, Regupathi I, Pillai MG, Miranda LR (2009) Modelling, analysis and optimization of adsorption parameters for H3PO4 activated rubber wood sawdust using response surface methodology (RSM). Colloids Surf B 70(1):35–45CrossRef
go back to reference Kalavathy HM, Rose ML (2010) Moringa oleifera—a solid phase extractant for the removal of Copper, Nickel and Zinc from aqueous solutions. Chem Eng J 158:188–199 Kalavathy HM, Rose ML (2010) Moringa oleifera—a solid phase extractant for the removal of Copper, Nickel and Zinc from aqueous solutions. Chem Eng J 158:188–199
go back to reference Malkoc E, Nuhoglu Y (2005) Investigations of Nickel(II) removal from aqueous solutions using tea factory waste. J Haz Mat 127:120–128CrossRef Malkoc E, Nuhoglu Y (2005) Investigations of Nickel(II) removal from aqueous solutions using tea factory waste. J Haz Mat 127:120–128CrossRef
go back to reference Murugesan S, Rajiv S, Thanapalan M (2009) Optimization of process variables for a biosorption of nickel (II) using response surface method. Korean J Chem Eng 26(2):364–370CrossRef Murugesan S, Rajiv S, Thanapalan M (2009) Optimization of process variables for a biosorption of nickel (II) using response surface method. Korean J Chem Eng 26(2):364–370CrossRef
go back to reference Nuhgolu Y, Malkoc E (2009) Thermodynamic and kinetic studies for environmentally friendly Ni(II) biosorption using pomace of olive oil factory. Bioresour Technol 100:2375–2380CrossRef Nuhgolu Y, Malkoc E (2009) Thermodynamic and kinetic studies for environmentally friendly Ni(II) biosorption using pomace of olive oil factory. Bioresour Technol 100:2375–2380CrossRef
go back to reference Parmer M, Thakur LS (2013) Heavy Metal Cu, Ni and Zn: toxicity, health hazard and their removal techniques by low cost adsorbents: a short overview. Int J Plant Anim Environ Sci 3:143–157 Parmer M, Thakur LS (2013) Heavy Metal Cu, Ni and Zn: toxicity, health hazard and their removal techniques by low cost adsorbents: a short overview. Int J Plant Anim Environ Sci 3:143–157
go back to reference Shakirullah M, Ahmad I, Shah S (2006) Sorption studies of nickel ions onto sawdust of Dalbergia sissoo. J Chin Chem Soc 53(5):1045–1052CrossRef Shakirullah M, Ahmad I, Shah S (2006) Sorption studies of nickel ions onto sawdust of Dalbergia sissoo. J Chin Chem Soc 53(5):1045–1052CrossRef
go back to reference Shrestha RM, Varga M, Varga I, Yadav AP, Pokharel BP, Pradhananga RR (2014) Removal of Ni(II) from aqueous solutions by adsorption onto activated carbon prepared from Lapsi (Choerospondias axillaris) seed stone. J Inst Eng 9(1):166–174CrossRef Shrestha RM, Varga M, Varga I, Yadav AP, Pokharel BP, Pradhananga RR (2014) Removal of Ni(II) from aqueous solutions by adsorption onto activated carbon prepared from Lapsi (Choerospondias axillaris) seed stone. J Inst Eng 9(1):166–174CrossRef
go back to reference Thamilarasu P, Sivakumar P, Karunakaran K (2011) Removal of Ni(II) from aqueous solutions by adsorption onto Cajanus cajan L Milsp seed shell activated carbon. Indian J Chem Technol 18:414–420 Thamilarasu P, Sivakumar P, Karunakaran K (2011) Removal of Ni(II) from aqueous solutions by adsorption onto Cajanus cajan L Milsp seed shell activated carbon. Indian J Chem Technol 18:414–420
go back to reference Vijayaragavan K, Lee WM, Yun YS (2008) Evaluvation of fermentation waste (Corneybacterium glutamicum) as a biosorbent for treatment of Ni bearing solutions. Biochem Eng J 41:228–233CrossRef Vijayaragavan K, Lee WM, Yun YS (2008) Evaluvation of fermentation waste (Corneybacterium glutamicum) as a biosorbent for treatment of Ni bearing solutions. Biochem Eng J 41:228–233CrossRef
go back to reference Yu Z, Zhou Q (2009) Growth responses and cadmium accumulation of Mirabilis jalapa under interaction between cadmium and phosphorus. J Haz Mat 167(1–3):38–43CrossRef Yu Z, Zhou Q (2009) Growth responses and cadmium accumulation of Mirabilis jalapa under interaction between cadmium and phosphorus. J Haz Mat 167(1–3):38–43CrossRef
Metadata
Title
Biosorption of Ni(II) Using Seeds of Mirabilis Jalapa
Authors
V. Anitha
A. Balakumaran
V. V. Ramprakash
A. V. Vinothini
P. Muthukumaran
Aravind Jeyaseelan
Copyright Year
2021
DOI
https://doi.org/10.1007/978-3-030-64122-1_5

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