Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment

Recently, there is a high interest in the synthesis of hydrochar from agricultural waste/residue and therefore, this approach does not only eliminate the abundant agricultural waste, but also converts the wastes into valuable product. Therefore, this paper highlights on the synthesis of hydrochar fr...

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Main Author: Raman, Logan Raj
Format: Monograph
Language:English
Published: Universiti Sains Malaysia 2022
Subjects:
Online Access:http://eprints.usm.my/55405/
http://eprints.usm.my/55405/1/Conversion%20Of%20Oil%20Palm%20Empty%20Fruit%20Brunch%20%28Opefb%29%20Into%20Hydrochar%20Via%20Hydrothermal%20Carbonization%20And%20Study%20On%20The%20Suitability%20For%20Soil%20Ammendment.pdf
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author Raman, Logan Raj
author_facet Raman, Logan Raj
author_sort Raman, Logan Raj
building USM Institutional Repository
collection Online Access
description Recently, there is a high interest in the synthesis of hydrochar from agricultural waste/residue and therefore, this approach does not only eliminate the abundant agricultural waste, but also converts the wastes into valuable product. Therefore, this paper highlights on the synthesis of hydrochar from oil palm empty fruit brunch (OPEFB), via hydrothermal carbonization (HTC) reaction. Hydrothermal carbonization is found to be an attractive process, due to its ability to transform wet biomass into hydrochar without pre-drying. Meanwhile, hydrochar, has received attention because of its ability to be applied for many applications such as precursors of adsorbent for in wastewater treatment, solid fuels and also for soil amendment. In this paper, the HTC reaction was conducted at various temperature (180 and 220 ◦C) and residence times (0.5 hr, 1hr, 2 hr) and along with this, the effect of temperature and reaction time on yield of hydrochar was also investigated. From the investigation, it is found that reaction time and temperature is directly proportional to the hydrochar yields as at highest temperature and reaction time the yield produced was 65.7%. When the temperature reduced, the yield was reduced to 48.22%, while as the reaction time reduce to 1 hr the yield was reduced to 54.51%. However, as the effect of both parameters evaluated, the finding reveals that process was most influenced by temperature compared to reaction time. Then this study, also includes the physicochemical properties study of hydrochar, which were analysed by using various analysis namely BET, SEM, FTIR and TGA -DTA. The analysis of BET and SEM, reveals that surface morphology was improved such that in BET study the surface area of hydrochar improved from 1.26
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format Monograph
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institution Universiti Sains Malaysia
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language English
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spelling usm-554052022-10-20T08:46:53Z http://eprints.usm.my/55405/ Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment Raman, Logan Raj T Technology TP155-156 Chemical engineering Recently, there is a high interest in the synthesis of hydrochar from agricultural waste/residue and therefore, this approach does not only eliminate the abundant agricultural waste, but also converts the wastes into valuable product. Therefore, this paper highlights on the synthesis of hydrochar from oil palm empty fruit brunch (OPEFB), via hydrothermal carbonization (HTC) reaction. Hydrothermal carbonization is found to be an attractive process, due to its ability to transform wet biomass into hydrochar without pre-drying. Meanwhile, hydrochar, has received attention because of its ability to be applied for many applications such as precursors of adsorbent for in wastewater treatment, solid fuels and also for soil amendment. In this paper, the HTC reaction was conducted at various temperature (180 and 220 ◦C) and residence times (0.5 hr, 1hr, 2 hr) and along with this, the effect of temperature and reaction time on yield of hydrochar was also investigated. From the investigation, it is found that reaction time and temperature is directly proportional to the hydrochar yields as at highest temperature and reaction time the yield produced was 65.7%. When the temperature reduced, the yield was reduced to 48.22%, while as the reaction time reduce to 1 hr the yield was reduced to 54.51%. However, as the effect of both parameters evaluated, the finding reveals that process was most influenced by temperature compared to reaction time. Then this study, also includes the physicochemical properties study of hydrochar, which were analysed by using various analysis namely BET, SEM, FTIR and TGA -DTA. The analysis of BET and SEM, reveals that surface morphology was improved such that in BET study the surface area of hydrochar improved from 1.26 Universiti Sains Malaysia 2022-07-01 Monograph NonPeerReviewed application/pdf en http://eprints.usm.my/55405/1/Conversion%20Of%20Oil%20Palm%20Empty%20Fruit%20Brunch%20%28Opefb%29%20Into%20Hydrochar%20Via%20Hydrothermal%20Carbonization%20And%20Study%20On%20The%20Suitability%20For%20Soil%20Ammendment.pdf Raman, Logan Raj (2022) Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment. Project Report. Universiti Sains Malaysia, Pusat Pengajian Kejuruteraan Kimia. (Submitted)
spellingShingle T Technology
TP155-156 Chemical engineering
Raman, Logan Raj
Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment
title Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment
title_full Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment
title_fullStr Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment
title_full_unstemmed Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment
title_short Conversion Of Oil Palm Empty Fruit Brunch (Opefb) Into Hydrochar Via Hydrothermal Carbonization And Study On The Suitability For Soil Ammendment
title_sort conversion of oil palm empty fruit brunch (opefb) into hydrochar via hydrothermal carbonization and study on the suitability for soil ammendment
topic T Technology
TP155-156 Chemical engineering
url http://eprints.usm.my/55405/
http://eprints.usm.my/55405/1/Conversion%20Of%20Oil%20Palm%20Empty%20Fruit%20Brunch%20%28Opefb%29%20Into%20Hydrochar%20Via%20Hydrothermal%20Carbonization%20And%20Study%20On%20The%20Suitability%20For%20Soil%20Ammendment.pdf