Ascertaining of Optimum Pyrolysis Conditions in Producing Refuse Tea Biochar as a Soil Amendment

H.A.H.I. Amarasinghe , S.K. Gunathilake , A.K. Karunarathna
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引用次数: 20

Abstract

Refused tea is a waste product of tea processing. Manufacturing of biochar from organic waste is an emerging technology where biochar can be used as a soil amendment for environmental remediation and carbon sequestration. As such the aim of this study was to determine the optimum pyrolysis conditions in producing refuse tea biochar for the said uses. Three refused tea samples were collected randomly from the bulk from tea processing factory in Gampola area of Sri Lanka and basic physical and proximate analysis were done. Initially, refused tea was packed tightly in the pyrolytic reactor which was designed to pyrolysis refused tea and pyrolysis was carried out by using five combinations of temperature (300, 350, 400, 450, 500 oC) and four retention times (15 min, 30 min, 45 min and 1 hour). The physical and chemical characteristics of biochar were analysed in line with the biochar quality standards proposed by International Biochar Initiatives (IBI). Results showed that the yield of biochar varied with the residence time for a given temperature treatment. The chemical, physical and morphological properties of biochar are largely influenced by the residence time for a given temperature treatment. Temperatures between 450oC and 500oC, and residence time between 45 and 60 minutes showed the highest biochar mass recovery. This research revealed that refuse tea can be effectively converted to biochar between 450 to 500 oC temperatures subjected to a residence time of 45 to 60 minutes. It also showed that higher volatilization rates at optimum temperature and residence time combination can be positively used for up scaling the pyrolysis reactor.

废茶生物炭土壤改良剂最佳热解条件的确定
废茶是茶叶加工的废物。从有机废物中制造生物炭是一项新兴技术,生物炭可以用作土壤改良剂,用于环境修复和碳封存。因此,本研究的目的是确定生产废茶生物炭的最佳热解条件。从斯里兰卡Gampola地区的茶叶加工厂随机抽取了3个被拒绝的茶叶样品,并进行了基本的物理和近似分析。在设计用于裂解废茶的热解反应器中,先将废茶紧密包裹,并采用5种温度组合(300、350、400、450、500℃)和4种保留时间(15、30、45、1小时)进行热解。根据国际生物炭倡议(IBI)提出的生物炭质量标准,分析了生物炭的物理和化学特性。结果表明,在一定温度下,生物炭的产率随停留时间的变化而变化。生物炭的化学、物理和形态特性在很大程度上受特定温度处理的停留时间的影响。温度为450 ~ 500℃,停留时间为45 ~ 60 min,生物炭质量回收率最高。研究表明,在450 ~ 500℃的温度下,经过45 ~ 60分钟的停留时间,废茶可以有效地转化为生物炭。研究还表明,在最佳温度和停留时间组合下,较高的挥发速率可以积极地用于扩大热解反应器的规模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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