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Environmental Assessment of Biomass Conversion Technologies: Are Slow Pyrolysis Processes Suitable for Mitigating Global Warming?

机译:生物质转化技术的环境评估:慢速热解工艺是否适合缓解全球变暖?

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The greenhouse effect and sufficient global food supply are two of the most urgent problems of mankind.Biochar produced by pyrolysis processes can fix carbon long-term and might increase yields when applied to agricultural soils.To assess environmental impacts associated with processes and products along their life cycle,the ISO 14040 has been established.Based on this approach,the mitigation of global warming by applying slow pyrolysis processes has been assessed.Pyrolysis converts biomass under absence of oxygen into three different fractions-solids,liquids and a gaseous phase.Various utilization paths are possible for the products; they can for instance substitute other (fossil) fuels in energy generation units,or the solid product can serve as soil enhancer.Within a project funded by the European Union's INTERREG-programme,four different cases of using products from slow pyrolysis have been compared regarding their global warming mitigation potential.The life cycle assessment carried out has shown that co-firing of the produced char in power plants can be a suitable way to make the energy sector less carbon intensive.But in the long term and in order to even reduce the concentration of carbon dioxide in the atmosphere,the application of Biochar in the agricultural sector is a most promising alternative.However,there is still a lot of research needed to better understand the effects of Biochar in different types of soil with respect to e.g.nutrient and water management and,thus,its impacts on plant growth,fertilizer and irrigation demand.
机译:温室效应和充足的全球粮食供应是人类最紧迫的两个问题。通过热解过程产生的生物炭可以长期固定碳,并在应用于农业土壤时可能会增加产量。生命周期,建立了ISO14040。基于这种方法,已评估了通过应用缓慢的热解过程减轻全球变暖的能力。热解将生物体在无氧条件下转化为固体,液体和气相三种不同的馏分。产品的利用途径是可能的;例如,它们可以替代能源生产单元中的其他(化石)燃料,或者固体产品可以用作土壤改良剂。在欧盟INTERREG计划资助的一个项目中,比较了四种使用缓慢热解产物的不同情况生命周期评估表明,将发电厂所生产的焦炭共烧是降低能源部门碳密集程度的一种合适方法,但从长远来看,甚至可以减少大气中二氧化碳的浓度,生物炭在农业领域的应用是最有前途的选择。但是,仍然需要进行大量研究,以更好地了解生物炭在不同类型土壤中对养分的影响和水管理,从而影响植物的生长,肥料和灌溉需求。

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