Carbon footprint of rice production under biochar amendment – a case study in a Chinese rice cropping system

生物炭 修正案 土壤碳 环境科学 温室气体 斜线和字符 农学 肥料 作物残渣 水田 固碳 土壤水分 热解 二氧化碳 化学 农业 土壤科学 生态学 生物 政治学 法学 有机化学
作者
Qi Liu,Benjuan Liu,Per Ambus,Yanhui Zhang,Veronika Hansen,Zhibin Lin,Dachun Shen,Gang Liu,Qicheng Bei,Jianguo Zhu,Xiaojie Wang,Jing Ma,Xingwu Lin,Yongchang Yu,Chunwu Zhu,Zubin Xie
出处
期刊:Gcb Bioenergy [Wiley]
卷期号:8 (1): 148-159 被引量:78
标识
DOI:10.1111/gcbb.12248
摘要

Abstract As a controversial strategy to mitigate global warming, biochar application into soil highlights the need for life cycle assessment before large‐scale practice. This study focused on the effect of biochar on carbon footprint of rice production. A field experiment was performed with three treatments: no residue amendment (Control), 6 t ha −1 yr −1 corn straw ( CS ) amendment, and 2.4 t ha −1 yr −1 corn straw‐derived biochar amendment ( CBC ). Carbon footprint was calculated by considering carbon source processes (pyrolysis energy cost, fertilizer and pesticide input, farmwork, and soil greenhouse gas emissions) and carbon sink processes (soil carbon increment and energy offset from pyrolytic gas). On average over three consecutive rice‐growing cycles from year 2011 to 2013, the CS treatment had a much higher carbon intensity of rice (0.68 kg CO 2 ‐C equivalent ( CO 2 ‐C e ) kg −1 grain) than that of Control (0.24 kg CO 2 ‐C e kg −1 grain), resulting from large soil CH 4 emissions. Biochar amendment significantly increased soil carbon pool and showed no significant effect on soil total N 2 O and CH 4 emissions relative to Control; however, due to a variation in net electric energy input of biochar production based on different pyrolysis settings, carbon intensity of rice under CBC treatment ranged from 0.04 to 0.44 kg CO 2 ‐C e kg −1 grain. The results indicated that biochar strategy had the potential to significantly reduce the carbon footprint of crop production, but the energy‐efficient pyrolysis technique does matter.
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