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首页> 外文期刊>Journal of Cleaner Production >Neutralizing global warming impacts of crop production using biochar from side flows and buffer zones: A case study of oat production in the boreal climate zone
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Neutralizing global warming impacts of crop production using biochar from side flows and buffer zones: A case study of oat production in the boreal climate zone

机译:使用BioChar从侧流和缓冲区中和作物生产的全球变暖影响:北方气候区燕麦生产的案例研究

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Rapid climate change mitigation requires carbon sequestration in addition to greenhouse gas emission reductions. Agriculture may have a high potential for carbon sequestration due to improved practices. However, it is not known how the global warming impacts of crop production could be mitigated especially within an agricultural system. The aim of this study is to evaluate possibilities to neutralize global warming impacts in crop production using biochar produced from side flows and buffer zone biomass. A life cycle assessment methodology is utilized in this research for oat production in the boreal climate zone. Global warming impact reductions are compared for three different side flow utilization options. Traditionally, side flows have been utilized in energy or fodder production, and these options are compared to biochar production at a system level. The potential to use buffer zone biomass for biochar production is also studied. Willow has been selected as a biomass source in buffer zones. Oat production leads to greenhouse gas emissions especially due to the use of fossil and mineral fertilizers in cultivation and heat energy, electricity and fuels in various process phases. The production of one metric ton of oat flakes from cradle to gate generates 700 kg of CO(2)eq emissions. Biochar and energy production from side flows enables a greater reduction in global warming impacts than the feed use of side flows. Buffer zones in willow biomass and biochar production may enable the full neutralization of the global warming potential of oat production within an agricultural system. Further research with actual measurements is required especially on biochar impacts on soil emissions such as N2O. This research shows that it could be possible to neutralize global warming impacts from crop production using available technologies and available biomass in agricultural systems. A framework is created for carbon neutral crop production using side flows and buffer zone biomass through biochar. (C) 2019 Elsevier Ltd. All rights reserved.
机译:除温室气体排放减少外,减缓性气候变化缓解需要碳封存。由于改进的实践,农业可能具有很高的碳封存潜力。但是,尚不讨论如何在农业系统内减轻作物生产的全球变暖影响。本研究的目的是评估使用由侧流和缓冲区生物质产生的生物炭地产生作物生产中的全球变暖影响的可能性。在北方气候区燕麦生产的研究中使用了生命周期评估方法。将全球变暖的冲击减少与三种不同的侧面流利用率选项进行比较。传统上,在能量或饲料生产中使用侧流,并将这些选择与系统级别的生物炭生产进行了比较。还研究了使用缓冲区生物质的潜力。柳树已被选为缓冲区中的生物质源。燕麦生产导致温室气体排放,特别是由于在培养和热能,电力和燃料中使用了化石和矿物肥料,各种过程阶段。从摇篮到栅极的一块燕麦片的生产产生700公斤的CO(2)欧元排放。 BioChar和侧面流量的能量产生使全球变暖冲击的减少更低,而不是侧流的使用。柳树生物量和生物炭生产中的缓冲区可以充分中和农业系统内燕麦生产的全球变暖潜力。需要采用实际测量的进一步研究,尤其是生物炭对土壤排放(如N2O)的影响。本研究表明,可以使用农业系统中的可用技术和可用生物量从作物生产中与农作物生产中和全球变暖影响。使用侧流量和缓冲区生物量通过BioChar使用碳中性作物生产来创建框架。 (c)2019 Elsevier Ltd.保留所有权利。

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