首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Is biochar or straw-bale construction a better carbon storage from a life cycle perspective?
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Is biochar or straw-bale construction a better carbon storage from a life cycle perspective?

机译:从生命周期的角度来看,生物炭或草捆建筑是不是更好的碳存储?

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Biochar has been presented as a key technology for avoiding dangerous climate change. Pyrolysis converts part of the biomass feedstock into a gaseous fraction, which can be used for energy production. The remaining fraction is char, which is highly stable and resistant to biodegradation. When char is added to soil it increases carbon storage, reduces emissions and improves soil quality. Agricultural residues such as straw, stover and hulls are seen as the most accessible raw material. These residues could also be used as insulation in passive energy housing. Straw bale construction is a relatively simple technology, which has been applied for decades. It can store the carbon of the straw material into walls structures and in the process provides energy efficient housing. The climate benefits from improved energy efficiency depend on local conditions and energy production forms. In this study life cycle assessment was used to compare the climate impacts of biochar production and straw bale construction. On a life cycle perspective, straw bale construction results in higher net carbon storage than biochar production (3.3tCO2eq vs. 0.91 CO2eq/t of straw). However the result was found to be highly dependent on the assumptions on the overall energy efficiency of the replaced building stock.
机译:生物炭已被证明是避免危险的气候变化的关键技术。热解将部分生物质原料转化为气态馏分,可用于能源生产。剩余的馏分是焦炭,其高度稳定并且抗生物降解。当将炭添加到土壤中时,它将增加碳存储量,减少排放并改善土壤质量。农业残留物,如稻草,秸秆和船体被认为是最容易获得的原材料。这些残留物也可以用作无源能源外壳的绝缘材料。稻草包施工是一种相对简单的技术,已应用了数十年。它可以将秸秆材料的碳存储到墙壁结构中,并在此过程中提供节能的外壳。能源效率提高所带来的气候效益取决于当地条件和能源生产形式。在这项研究中,生命周期评估被用来比较生物炭生产和草捆建造对气候的影响。从生命周期的角度来看,稻草包结构的净碳储存量高于生物炭的产量(3.3tCO2eq对0.91 CO2eq / t稻草)。但是,发现结果高度依赖于对被替换的建筑材料的整体能效的假设。

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