生物炭
玉米秸秆
热解
碳纤维
干草
化学
原材料
燃烧热
修正案
材料科学
农学
有机化学
发酵
作物
生物
法学
复合材料
政治学
燃烧
复合数
作者
Muhammad Khalid Rafiq,Robert Thomas Bachmann,Muhammad Tariq Rafiq,Zhanhuan Shang,Stephen Joseph,Ruijun Long
出处
期刊:PLOS ONE
[Public Library of Science]
日期:2016-06-21
卷期号:11 (6): e0156894-e0156894
被引量:369
标识
DOI:10.1371/journal.pone.0156894
摘要
This study examined the influence of pyrolysis temperature on biochar characteristics and evaluated its suitability for carbon capture and energy production. Biochar was produced from corn stover using slow pyrolysis at 300, 400 and 500°C and 2 hrs holding time. The experimental biochars were characterized by elemental analysis, BET, FTIR, TGA/DTA, NMR (C-13). Higher heating value (HHV) of feedstock and biochars was measured using bomb calorimeter. Results show that carbon content of corn stover biochar increased from 45.5% to 64.5%, with increasing pyrolysis temperatures. A decrease in H:C and O:C ratios as well as volatile matter, coupled with increase in the concentration of aromatic carbon in the biochar as determined by FTIR and NMR (C-13) demonstrates a higher biochar carbon stability at 500°C. It was estimated that corn stover pyrolysed at 500°C could provide of 10.12 MJ/kg thermal energy. Pyrolysis is therefore a potential technology with its carbon-negative, energy positive and soil amendment benefits thus creating win- win scenario.
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