首页> 外文期刊>Latvian Journal of Physics and Technical Sciences >Biorefinery Technologies for Biomass Conversion Into Chemicals and Fuels Towards Zero Emissions (Review) / Nulles Emisiju Princips Biomasas Konversijas Tehnolo?ijās Aizstājot Fosilos Resursus (Pārskata Raksts)
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Biorefinery Technologies for Biomass Conversion Into Chemicals and Fuels Towards Zero Emissions (Review) / Nulles Emisiju Princips Biomasas Konversijas Tehnolo?ijās Aizstājot Fosilos Resursus (Pārskata Raksts)

机译:将生物质转化为化学物质和燃料以实现零排放的生物精炼技术(综述)/替代化石资源的生物质转化技术中的零排放原理(综述文章)

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Exhausting of world resources, increasing pollution, and climate change are compelling the shift of the world economy from continuous growth to a kind of economy based on integration of technologies into zero emissions production systems. Transition from non-renewable fossil resources to renewable resources provided by solar radiation and the current processes in biosphere is seen in the bio-refinery approach - replacing crude oil refineries by biomass refineries. Biotechnology and nano-technologies are getting accepted as important players along with conventional biomass refinery technologies. Systems design is a significant element in the integration of bio-refinery technologies in clusters. A number of case-studies, steam explosion auto-hydrolysis (SEA) in particular, are reviewed to demonstrate conversion of biomass into value-added chemicals and fuels. Analysis of energy flows is made as part of modelling the SEA processes, the eMergy (energy memory) approach and sustainability indices being applied to assess environmental impacts.
机译:世界资源的枯竭,污染的加剧和气候变化正在迫使世界经济从持续增长向基于将技术整合到零排放生产系统中的一种经济转变。在生物精炼方法中可以看到从不可再生的化石资源向由太阳辐射和生物圈当前进程提供的可再生资源的过渡-用生物质精炼厂代替原油精炼厂。生物技术和纳米技术与传统的生物质提炼技术一起被接受为重要参与者。系统设计是集群中生物精炼技术集成的重要组成部分。审查了许多案例研究,尤其是蒸汽爆炸自动水解(SEA),以证明生物质转化为增值化学品和燃料。能源流分析是SEA流程建模的一部分,eMergy(能源存储)方法和可持续性指数被用于评估环境影响。

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