Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature Pyrolysis

The effects of biochar as soil ameliorants depend on their characteristics that are influenced by the variation in biomass origin and pyrolysis process. In this context, the objective of this study was to determine the chemical and physical characteristics of seven biochar derived from different bio...

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Main Authors: Liska Mutiara Septiana, Gunawan Djajakirana, Darmawan Darmawan
Format: Article
Language:English
Published: Sebelas Maret University 2018-07-01
Series:Sains Tanah: Journal of Soil Science and Agroclimatology
Subjects:
Online Access:https://jurnal.uns.ac.id/tanah/article/view/21618
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spelling doaj-cefc7c56281346369067a4b16dc429792020-11-25T02:34:42ZengSebelas Maret UniversitySains Tanah: Journal of Soil Science and Agroclimatology1412-36062356-14242018-07-01151152810.15608/stjssa.v15i1.2161816406Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature PyrolysisLiska Mutiara Septiana0Gunawan Djajakirana1Darmawan Darmawan2Department of Soil Science and Land Resources, Faculty of Agriculture, Bogor Agricultural University, Bogor, IndonesiaDepartment of Soil Science and Land Resources, Faculty of Agriculture, Bogor Agricultural University, BogorDepartment of Soil Science and Land Resources, Faculty of Agriculture, Bogor Agricultural University, BogorThe effects of biochar as soil ameliorants depend on their characteristics that are influenced by the variation in biomass origin and pyrolysis process. In this context, the objective of this study was to determine the chemical and physical characteristics of seven biochar derived from different biomass wastes - rice husk, corn cob, empty oil palm fruit bunch, bagasse, and sawdust of albazia (Albizzia falcataria), maesopsis (Maesopsis eminii), and mahogany (Swietenia macrophylla) at two low-pyrolysis temperatures (250 and 350 oC). The results showed that the percentage of biochar yield decreased at higher temperature level. However, the increased thermal decomposition of plant biomass wastes (at 350 oC) resulted in higher pH, as well as ash, C, N content of the biochar; but it did not significantly affect nutrient availability. Biochar from wood waste had more C and Ca content. Biochar from rice husk produced the highest ash content, while biochar from empty oil palm fruit bunch yielded the highest pH value, and possessed more nutrients than all the others.  Increasing pyrolysis temperature from 250 to 350 oC resulted in greater biochar surface area and total pore volume but produced smaller average pore radius.https://jurnal.uns.ac.id/tanah/article/view/21618ameliorantpyrolysis processthermal decomposition
collection DOAJ
language English
format Article
sources DOAJ
author Liska Mutiara Septiana
Gunawan Djajakirana
Darmawan Darmawan
spellingShingle Liska Mutiara Septiana
Gunawan Djajakirana
Darmawan Darmawan
Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature Pyrolysis
Sains Tanah: Journal of Soil Science and Agroclimatology
ameliorant
pyrolysis process
thermal decomposition
author_facet Liska Mutiara Septiana
Gunawan Djajakirana
Darmawan Darmawan
author_sort Liska Mutiara Septiana
title Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature Pyrolysis
title_short Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature Pyrolysis
title_full Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature Pyrolysis
title_fullStr Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature Pyrolysis
title_full_unstemmed Characteristics of Biochars from Plant Biomass Wastes at Low-Temperature Pyrolysis
title_sort characteristics of biochars from plant biomass wastes at low-temperature pyrolysis
publisher Sebelas Maret University
series Sains Tanah: Journal of Soil Science and Agroclimatology
issn 1412-3606
2356-1424
publishDate 2018-07-01
description The effects of biochar as soil ameliorants depend on their characteristics that are influenced by the variation in biomass origin and pyrolysis process. In this context, the objective of this study was to determine the chemical and physical characteristics of seven biochar derived from different biomass wastes - rice husk, corn cob, empty oil palm fruit bunch, bagasse, and sawdust of albazia (Albizzia falcataria), maesopsis (Maesopsis eminii), and mahogany (Swietenia macrophylla) at two low-pyrolysis temperatures (250 and 350 oC). The results showed that the percentage of biochar yield decreased at higher temperature level. However, the increased thermal decomposition of plant biomass wastes (at 350 oC) resulted in higher pH, as well as ash, C, N content of the biochar; but it did not significantly affect nutrient availability. Biochar from wood waste had more C and Ca content. Biochar from rice husk produced the highest ash content, while biochar from empty oil palm fruit bunch yielded the highest pH value, and possessed more nutrients than all the others.  Increasing pyrolysis temperature from 250 to 350 oC resulted in greater biochar surface area and total pore volume but produced smaller average pore radius.
topic ameliorant
pyrolysis process
thermal decomposition
url https://jurnal.uns.ac.id/tanah/article/view/21618
work_keys_str_mv AT liskamutiaraseptiana characteristicsofbiocharsfromplantbiomasswastesatlowtemperaturepyrolysis
AT gunawandjajakirana characteristicsofbiocharsfromplantbiomasswastesatlowtemperaturepyrolysis
AT darmawandarmawan characteristicsofbiocharsfromplantbiomasswastesatlowtemperaturepyrolysis
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