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Technologies for Biogas Upgrading to Biomethane: A Review

机译:沼气升级到生物甲烷的技术:审查

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摘要

The environmental impacts and high long-term costs of poor waste disposal have pushed the industry to realize the potential of turning this problem into an economic and sustainable initiative. Anaerobic digestion and the production of biogas can provide an efficient means of meeting several objectives concerning energy, environmental, and waste management policy. Biogas contains methane (60%) and carbon dioxide (40%) as its principal constituent. Excluding methane, other gasses contained in biogas are considered as contaminants. Removal of these impurities, especially carbon dioxide, will increase the biogas quality for further use. Integrating biological processes into the bio-refinery that effectively consume carbon dioxide will become increasingly important. Such process integration could significantly improve the sustainability of the overall bio-refinery process. The biogas upgrading by utilization of carbon dioxide rather than removal of it is a suitable strategy in this direction. The present work is a critical review that summarizes state-of-the-art technologies for biogas upgrading with particular attention to the emerging biological methanation processes. It also discusses the future perspectives for overcoming the challenges associated with upgradation. While biogas offers a good substitution for fossil fuels, it still not a perfect solution for global greenhouse gas emissions and further research still needs to be conducted.
机译:贫困废物处理的环境影响和长期成本推动了该行业实现了将此问题转化为经济和可持续倡议的潜力。 Anaerobic消化和沼气的生产可以提供符合能源,环境和废物管理政策的若干目标的有效手段。沼气含有甲烷(60%)和二氧化碳(40%)作为其主要成分。不包括甲烷,沼气中含有的其他气体被认为是污染物。除去这些杂质,尤其是二氧化碳,将增加沼气质量以供进一步使用。将生物过程整合到有效消耗二氧化碳的生物炼油中将变得越来越重要。这种流程一体化可以显着提高整体生物炼油厂过程的可持续性。通过利用二氧化碳而不是去除它的沼气升级是朝着这个方向的合适策略。目前的工作是一项批判性审查,总结了沼气升级的最先进技术,特别注意新兴的生物甲烷化过程。它还讨论了克服与升级相关的挑战的未来观点。虽然BioGAS为化石燃料提供了良好的替代品,但它仍然不是全球温室气体排放的完美解决方案,并且需要进行进一步的研究仍需进行。

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