生物炭
温室气体
环境科学
农业
肥料
碳足迹
粪便管理
生物量(生态学)
生命周期评估
生物能源
农林复合经营
生物燃料
农学
废物管理
热解
生产(经济)
工程类
生态学
生物
宏观经济学
经济
作者
Claudia Kammann,James A. Ippolito,Nikolas Hagemann,Nils Borchard,María Luz Cayuela,J. M. Estavillo,Teresa Fuertes‐Mendizábal,Simon Jeffery,Jürgen Kern,J. M. Novak,Daniel P. Rasse,Sanna Saarnio,Hans‐Peter Schmidt,Kurt A. Spokas,N. Wrage
标识
DOI:10.3846/16486897.2017.1319375
摘要
Agriculture and land use change has significantly increased atmospheric emissions of the non-CO2 green-house gases (GHG) nitrous oxide (N2O) and methane (CH4). Since human nutritional and bioenergy needs continue to increase, at a shrinking global land area for production, novel land management strategies are required that reduce the GHG footprint per unit of yield. Here we review the potential of biochar to reduce N2O and CH4 emissions from agricultural practices including potential mechanisms behind observed effects. Furthermore, we investigate alternative uses of biochar in agricultural land management that may significantly reduce the GHG-emissions-per-unit-of-product footprint, such as (i) pyrolysis of manures as hygienic alternative to direct soil application, (ii) using biochar as fertilizer carrier matrix for underfoot fertilization, biochar use (iii) as composting additive or (iv) as feed additive in animal husbandry or for manure treatment. We conclude that the largest future research needs lay in conducting life-cycle GHG assessments when using biochar as an on-farm management tool for nutrient-rich biomass waste streams.
科研通智能强力驱动
Strongly Powered by AbleSci AI