生物炭
木材气体发生器
打赌理论
生物量(生态学)
气流
稻壳
碳纤维
燃烧热
生物能源
化学
木炭
材料科学
废物管理
热解
生物燃料
复合材料
农学
燃烧
催化作用
工程类
有机化学
复合数
煤
生物
机械工程
生物化学
作者
A.M. James,Wenqiao Yuan,Michael D. Boyette,Donghai Wang,Ajay Kumar
出处
期刊:Transactions of the ASABE
[American Society of Agricultural and Biological Engineers]
日期:2016-06-14
卷期号:59 (3): 749-756
被引量:15
标识
DOI:10.13031/trans.59.11631
摘要
Abstract. The objective of this study was to characterize biochar produced from rice hulls and wood chips in a top-lit updraft gasifier. Biochar from four airflows (8, 12, 16, or 20 L min-1) and two insulation conditions (not insulated or insulated with 88.9 mm of fiberglass on the external wall of the gasifier) were evaluated. Measurement of elemental composition, higher heating value (HHV), and BET surface area and proximate analyses of the biochar were carried out. It was found that the airflow rate and reactor insulation significantly influenced the chemical composition of the biochar depending on the biomass type. For instance, the carbon content of biochar from rice hulls decreased from 40.9% to 27.2% and the HHV decreased from 14.8 to 10.2 MJ kg-1 as the airflow increased from 8 to 20 L min-1 when the reactor was insulated. In contrast, the carbon content of biochar from wood chips increased from 82% to 86% and the HHV stayed stable at 32.0 to 33.2 MJ kg-1 at the same conditions. Despite these variations, the BET surface area of biochar from both biomass types increased with increased airflow and additional insulation. For example, rice hull biochar had a maximum BET surface area of 183Â m2 g-1 at 20 L min-1 airflow with insulation. The BET surface of biochar from wood chips peaked at 405 m2 g-1 at the same conditions.
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