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Advances in biogas valorization and utilization systems: A comprehensive review

机译:沼气价值和利用系统的进步:全面审查

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The emission of greenhouse gases and global warming are the major environmental concerns that has affected the normal geochemical cycles and climate conditions on the earth. However, a controlled production, conversion and utilization of these gases for energy generation in day to day activities of human beings can solve the problem of climate change effectively. Biogas has been recognized as a source of renewable energy available to considerably accelerate the socio-economic development. It is a multifaceted fuel containing methane, carbon dioxide and water vapors with multiple utilization options. Biogas can be valorized either directly or indirectly for various applications like the production of valueadded chemicals or as a replacement of natural gas. This review article provides an in-depth analysis of various biogas valorization methods (physical, chemical and biological) for its efficient and eco-friendly utilization. The review intends to fill-up the knowledge gap through critically reviewing biogas cleaning and upgrading methods for biomethane and bio-CO2 production for various applications including power plants, transport and value-added chemicals. The review article also highlights the conversion of biogas into fine chemicals and products of commercial importance. Chemical, biological and hybrid systems of biogas utilization are described in detail. The opportunities and impediments associated with the valorization of biogas, biomethane and bio-CO2 have also been discussed. The paper highlights that most of the approaches to the implementation of biogas are in their infancy stage. It also identifies the bottlenecks, policies and future research and developments that are still needed in this relatively emerging field. (C) 2020 Elsevier Ltd. All rights reserved.
机译:温室气体和全球变暖的排放是影响地球上正常地球化学循环和气候条件的主要环境问题。然而,在日常生活中的当天活动中,这些气体的受控生产,转换和利用可以有效地解决气候变化问题。沼气已被认为是可再生能源的来源可用于大大加快社会经济发展。它是一种含有多种利用选择的甲烷,二氧化碳和水蒸汽的多方型燃料。沼气可以直接或间接地估值,以适用于各种应用,如较耐估计的化学品或替代天然气。本综述文章对各种沼气算法(物理,化学和生物)进行了深入的分析,以实现其有效和生态的利用。审查计划通过批判性审查生物甲烷和生物二氧化碳生产的沼气清洁和升级方法来填补知识差距,以适用于各种应用,包括发电厂,运输和增值化学品。审查文章还突出了沼气转化为商业重要性的精细化学品和产品。详细描述了沼气利用的化学,生物和杂化系统。还讨论了与沼气,生物甲烷和生物二氧化碳的算子相关的机会和障碍。本文突出了大部分实施沼气的方法都处于起步阶段。它还确定了这种相对新兴领域中仍然需要的瓶颈,政策和未来的研究和发展。 (c)2020 elestvier有限公司保留所有权利。

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