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2023 | OriginalPaper | Buchkapitel

Environment Friendly Production of Coconut Shell Charcoal Through Pyrolysis

verfasst von : Muhammad Najwan Azit, Rabi Kabir Ahmad, Shaharin Anwar Sulaiman

Erschienen in: Energy and Environment in the Tropics

Verlag: Springer Nature Singapore

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Abstract

Due to global energy concerns and sustainability issues, the use of coconut shell biomass for charcoal production has drawn interest in the society. However, assessing how to produce charcoal, as well as increasing yield and quality, remains a significant problem.

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Literatur
1.
Zurück zum Zitat Olabi AG, Abdelkareem MA (2022) Renewable energy and climate change. Renew Sustain Energy Rev 158:112111CrossRef Olabi AG, Abdelkareem MA (2022) Renewable energy and climate change. Renew Sustain Energy Rev 158:112111CrossRef
2.
Zurück zum Zitat Singh AK, Singh R, Sinha OP (2022) Characterization of charcoals produced from Acacia, Albizia and Leucaena for application in ironmaking. Fuel 320:123991CrossRef Singh AK, Singh R, Sinha OP (2022) Characterization of charcoals produced from Acacia, Albizia and Leucaena for application in ironmaking. Fuel 320:123991CrossRef
3.
Zurück zum Zitat Khuenkaeo N, Tippayawong N (2019) Production and characterization of bio-oil and biochar from ablative pyrolysis of lignocellulosic biomass residues. Chem Eng Commun Khuenkaeo N, Tippayawong N (2019) Production and characterization of bio-oil and biochar from ablative pyrolysis of lignocellulosic biomass residues. Chem Eng Commun
4.
Zurück zum Zitat Basu P (2010) Biomass gasification and pyrolysis: practical design and theory. Elsevier, The Boulevard, Langford Lane Kidlington, Oxford, OX5 1GB, UK: Elsevier Basu P (2010) Biomass gasification and pyrolysis: practical design and theory. Elsevier, The Boulevard, Langford Lane Kidlington, Oxford, OX5 1GB, UK: Elsevier
5.
Zurück zum Zitat Yaman S (2004) Pyrolysis of biomass to produce fuels and chemical feedstocks. Energy Conver Manag 45(5):651–671CrossRef Yaman S (2004) Pyrolysis of biomass to produce fuels and chemical feedstocks. Energy Conver Manag 45(5):651–671CrossRef
6.
Zurück zum Zitat How biomass is powering communities (2022) Reurasia How biomass is powering communities (2022) Reurasia
7.
Zurück zum Zitat Ahmad RK (2021) Experimental investigation on coconut shell biomass pyrolysis using a downdraft reactor for charcoal production in mechanical engineering. Universiti Teknologi PETRONAS, UTP Ahmad RK (2021) Experimental investigation on coconut shell biomass pyrolysis using a downdraft reactor for charcoal production in mechanical engineering. Universiti Teknologi PETRONAS, UTP
8.
Zurück zum Zitat Singh M et al (2010) Charcoal from agricultural waste: fuel from the fields. Practical Action 44(871954):1–10 Singh M et al (2010) Charcoal from agricultural waste: fuel from the fields. Practical Action 44(871954):1–10
9.
Zurück zum Zitat Asare F, Owusu FW, Gazo R (2022) Sustainable charcoal production drive in rural communities in Ghana. West Africa. Energy Sustain Dev 68:364–372CrossRef Asare F, Owusu FW, Gazo R (2022) Sustainable charcoal production drive in rural communities in Ghana. West Africa. Energy Sustain Dev 68:364–372CrossRef
10.
Zurück zum Zitat Ahmad RK et al (2020) The effects of temperature, residence time and particle size on a charcoal produced from coconut shell. In: IOP conference series: materials science and engineering. IOP Publishing Ahmad RK et al (2020) The effects of temperature, residence time and particle size on a charcoal produced from coconut shell. In: IOP conference series: materials science and engineering. IOP Publishing
11.
Zurück zum Zitat Laird DA (2008) The charcoal vision: a Win–Win–Win Scenario for simultaneously producing bioenergy, permanently sequestering carbon, while improving Soil and Water quality. Agron J 100(1):178–181CrossRef Laird DA (2008) The charcoal vision: a Win–Win–Win Scenario for simultaneously producing bioenergy, permanently sequestering carbon, while improving Soil and Water quality. Agron J 100(1):178–181CrossRef
13.
Zurück zum Zitat Rout TK (2013) Pyrolysis of coconut shell. In: Chemical engineering. 2013, National Institute of Technology, Rourkela: Biju Patnaik Central Library Rout TK (2013) Pyrolysis of coconut shell. In: Chemical engineering. 2013, National Institute of Technology, Rourkela: Biju Patnaik Central Library
14.
Zurück zum Zitat Noor UNMM (2012) Optimize the production of charcoal from local bio-material. UMP Noor UNMM (2012) Optimize the production of charcoal from local bio-material. UMP
15.
Zurück zum Zitat Rodrigues T, Braghini Jr A (2019) Technological prospecting in the production of charcoal: a patent study. Renewa Sustain Energy Rev 111:170–183 Rodrigues T, Braghini Jr A (2019) Technological prospecting in the production of charcoal: a patent study. Renewa Sustain Energy Rev 111:170–183
17.
Zurück zum Zitat The World Leaders In Coconut Production (2022) The World Leaders In Coconut Production (2022)
18.
Zurück zum Zitat Dardak RA, Yon RM (2021) Strengthening the coconut industry in Malaysia. FFTC agricultural policy platform (FFTC-AP) Dardak RA, Yon RM (2021) Strengthening the coconut industry in Malaysia. FFTC agricultural policy platform (FFTC-AP)
19.
Zurück zum Zitat Sekhon SS, Kaur P, Park J-S (2021) From coconut shell biomass to oxygen reduction reaction catalyst: tuning porosity and nitrogen doping. Renew Sustain Energy Rev 147:111173CrossRef Sekhon SS, Kaur P, Park J-S (2021) From coconut shell biomass to oxygen reduction reaction catalyst: tuning porosity and nitrogen doping. Renew Sustain Energy Rev 147:111173CrossRef
20.
Zurück zum Zitat Zafar S (2019) Energy potential of coconut biomass 2019 Bio Energy consult Zafar S (2019) Energy potential of coconut biomass 2019 Bio Energy consult
21.
Zurück zum Zitat Ahmad RK, Sulaiman SA (2021) Carbonization of coconut shell biomass in a downdraft reactor: effect of temperature on the charcoal properties. Sains Malaysiana 50(12):3705–3717CrossRef Ahmad RK, Sulaiman SA (2021) Carbonization of coconut shell biomass in a downdraft reactor: effect of temperature on the charcoal properties. Sains Malaysiana 50(12):3705–3717CrossRef
23.
Zurück zum Zitat Chidumayo EN, Gumbo DJ (2013) The environmental impacts of charcoal production in tropical ecosystems of the world: a synthesis. Energy Sustain Dev 17(2):86–94CrossRef Chidumayo EN, Gumbo DJ (2013) The environmental impacts of charcoal production in tropical ecosystems of the world: a synthesis. Energy Sustain Dev 17(2):86–94CrossRef
24.
Zurück zum Zitat Kumar V, Nanda M (2016) Biomass Pyrolysis-Current status and future directions. Energy Sour Part A: Recovery Utilization Environ Effects 38(19):2914–2921CrossRef Kumar V, Nanda M (2016) Biomass Pyrolysis-Current status and future directions. Energy Sour Part A: Recovery Utilization Environ Effects 38(19):2914–2921CrossRef
25.
Zurück zum Zitat Marshall AJS (2013) Commercial application of pyrolysis technology in agriculture. Canadian agricultural adaptation council (CAAP) Marshall AJS (2013) Commercial application of pyrolysis technology in agriculture. Canadian agricultural adaptation council (CAAP)
26.
Zurück zum Zitat Ahmad RK et al (2020) Effects of process conditions on calorific value and yield of charcoal produced from pyrolysis of coconut shells. Advances in Manufacturing Engineering. Springer, Singapore, pp 253–262CrossRef Ahmad RK et al (2020) Effects of process conditions on calorific value and yield of charcoal produced from pyrolysis of coconut shells. Advances in Manufacturing Engineering. Springer, Singapore, pp 253–262CrossRef
27.
Zurück zum Zitat ASTM-D4809–18, Standard test method for heat of combustion of liquid hydrocarbon fuels by bomb calorimeter. ASTM Int, 1–10 ASTM-D4809–18, Standard test method for heat of combustion of liquid hydrocarbon fuels by bomb calorimeter. ASTM Int, 1–10
28.
Zurück zum Zitat Somerville M, Deev A (2020) The effect of heating rate, particle size and gas flow on the yield of charcoal during the pyrolysis of radiata pine wood. Renew Energy 151:419–425CrossRef Somerville M, Deev A (2020) The effect of heating rate, particle size and gas flow on the yield of charcoal during the pyrolysis of radiata pine wood. Renew Energy 151:419–425CrossRef
29.
Zurück zum Zitat Somerville M, Jahanshahi S (2015) The effect of temperature and compression during pyrolysis on the density of charcoal made from Australian eucalypt wood. Renew Energy 80:471–478CrossRef Somerville M, Jahanshahi S (2015) The effect of temperature and compression during pyrolysis on the density of charcoal made from Australian eucalypt wood. Renew Energy 80:471–478CrossRef
30.
Zurück zum Zitat Williams PT, Besler S (1996) The influence of temperature and heating rate on the slow pyrolysis of biomass. Renew Energy 7(3):233–250CrossRef Williams PT, Besler S (1996) The influence of temperature and heating rate on the slow pyrolysis of biomass. Renew Energy 7(3):233–250CrossRef
31.
Zurück zum Zitat Chandrasekaran A et al (2021) Carbonization using an Improved Natural Draft Retort Reactor in India: comparison between the performance of two woody biomasses. Prosopis juliflora and Casuarina equisetifolia. Fuel 285:119095 Chandrasekaran A et al (2021) Carbonization using an Improved Natural Draft Retort Reactor in India: comparison between the performance of two woody biomasses. Prosopis juliflora and Casuarina equisetifolia. Fuel 285:119095
32.
Zurück zum Zitat Bartocci P et al (2018) Hydrogen-rich gas production through steam gasification of charcoal pellet. Appl Therm Eng 132:817–823CrossRef Bartocci P et al (2018) Hydrogen-rich gas production through steam gasification of charcoal pellet. Appl Therm Eng 132:817–823CrossRef
33.
Zurück zum Zitat Wilk M et al (2016) Carbonisation of wood residue into charcoal during low temperature process. Renew Energy 85:507–513CrossRef Wilk M et al (2016) Carbonisation of wood residue into charcoal during low temperature process. Renew Energy 85:507–513CrossRef
34.
Zurück zum Zitat Chandrasekaran A et al (2019) Natural draft-improved carbonization retort system for Biocarbon production from Prosopis juliflora biomass. Energy Fuels 33(11):11113–11124CrossRef Chandrasekaran A et al (2019) Natural draft-improved carbonization retort system for Biocarbon production from Prosopis juliflora biomass. Energy Fuels 33(11):11113–11124CrossRef
35.
Zurück zum Zitat Inkoua S et al (2022) Pyrolysis of furfural residues: Property and applications of the biochar. J Environ Manage 316:115324CrossRef Inkoua S et al (2022) Pyrolysis of furfural residues: Property and applications of the biochar. J Environ Manage 316:115324CrossRef
Metadaten
Titel
Environment Friendly Production of Coconut Shell Charcoal Through Pyrolysis
verfasst von
Muhammad Najwan Azit
Rabi Kabir Ahmad
Shaharin Anwar Sulaiman
Copyright-Jahr
2023
Verlag
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-6688-0_15