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Waste-to-energy technology integrated with carbon capture -Challenges and opportunities

机译:废物转化能源技术与碳捕集相结合-挑战与机遇

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摘要

Carbon dioxide emission is a serious environmental issue that humankind must face soon. One of the promising technologies for reducing global CO_2 emissions is oxy-fuel combustion (OFC) technology, which belongs to the carbon capture methods. OFC involves the use of oxygen and recirculated flue gas as an oxidizer in the combustion process. Application of oxy-fuel combustion in waste incineration can result in negative CO_2 emission since some part of the carbon in municipal solid waste is biogenic. Such technology is often described as BECCS or Bio-CCS and it has attracted the attention of scientists recently. In addition to easier CO_2 capture, oxy-fuel combustion of municipal solid waste offers other advantages, such as reduced flue gas volume, increased combustion temperature and the possibility of retrofit existing incineration plants. In the present paper, studies of oxy-fuel combustion of waste materials, in particular, municipal solid waste and sewage sludge are presented and summarized. The study shows the opportunities and challenges that have to be addressed to fully exploit the potential of the oxy-fired incineration plant.
机译:二氧化碳排放是人类必须尽快面对的一个严重的环境问题。减少全球CO_2排放的有前途的技术之一是氧燃料燃烧(OFC)技术,它属于碳捕获方法。 OFC涉及在燃烧过程中使用氧气和再循环烟道气作为氧化剂。在城市垃圾中,氧燃料燃烧在废物焚烧中的应用会导致负CO_2排放,因为城市固体废物中的部分碳是生物来源的。这种技术通常被称为BECCS或Bio-CCS,并且最近引起了科学家的注意。除了更容易捕获CO_2外,城市固体废物的含氧燃料燃烧还提供了其他优势,例如减少了烟气量,提高了燃烧温度以及改造了现有焚化厂的可能性。本文介绍并总结了含氧燃料燃烧废物的研究,特别是城市固体废物和污水污泥的研究。研究表明,充分利用氧气焚烧厂的潜力必须应对的机遇和挑战。

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