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Life-cycle assessment of biochar production systems in tropical rural areas: Comparing flame curtain kilns to other production methods

机译:热带农村地区生物炭生产系统的生命周期评估:将火焰幕帘窑与其他生产方法进行比较

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摘要

A life-cycle assessment (LCA) using end point methods was performed for the generation and sequestration of one kg biochar by various pyrolysis methods suitable for rural tropical conditions. Flame curtain kilns, a novel, simple and cost-effective technology of biochar generation, were compared to earth mound non-improved kilns, retort kilns with off-gases combustion, pyrolytic cook-stoves allowing the use of the gas flame for cooking purposes, and iv) gasifiers with electricity production. The impact categories of climate change, particulate matter emissions, land use effects, minerals and fossil fuels were combined to provide the overall impact of biochar generation. In the LCA ranking, earth mound kilns were shown to have negative potential environmental impacts because of their gas and aerosol emissions. Flame curtain kilns had slightly lower potential impact than retort kilns and much lower impact than earth-mound kilns because of the avoidance of start-up wood and low material use and gas emissions. Making biochar from flame curtain kilns was observed to be environmentally neutral in a life-cycle perspective, as the production emissions were compensated for by carbon sequestration. Pyrolytic cook-stoves and gasifiers showed the most positive potential environmental impact in the LCA due to avoided firewood consumption and emissions from electricity generation, respectively. The generation and sequestration of biochar per se by flame curtain kilns was not found to result in direct environmental benefits. Co-benefits in the form of rural applicability, cost-efficiency and agricultural effects due to soil improvement are needed to warrant biochar implementation by this method.
机译:使用端点方法进行了生命周期评估(LCA),以通过适合农村热带条件的各种热解方法生成和隔离一公斤生物炭。火焰幕式窑是一种新颖,简单且具有成本效益的生物炭生成技术,已与未经改良的土墩窑,带有尾气燃烧的干馏窑,允许将气体火焰用于烹饪目的的热解炉相比较, iv)发电的气化炉。将气候变化,颗粒物排放,土地利用影响,矿物和化石燃料的影响类别结合在一起,以提供生物炭产生的整体影响。在LCA排名中,土堆窑由于其气体和气溶胶排放而被证明具有负面的潜在环境影响。火焰幕窑的潜在影响要比蒸馏窑低一些,而其影响要比土窑低得多,这是因为避免了起步木材,减少了材料消耗和气体排放。从生命周期的角度看,用火焰幕式窑生产生物炭在环境方面是中性的,因为通过碳固存可以补偿生产排放。由于分别避免了木柴消耗和发电排放,热解炉和气化炉在LCA中显示出最积极的潜在环境影响。未发现通过火焰幕窑产生和隔离生物炭本身可直接带来环境效益。需要农村适用性,成本效益和土壤改良带来的农业效益等共同效益,以确保通过这种方法实施生物炭。

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