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柔性废物生物质闷烧处理技术的碳分布和多准则决策分析。

Carbon distribution and multi-criteria decision analysis of flexible waste biomass smouldering processing technologies.

机构信息

Research Centre for Fire Safety Engineering, The Hong Kong Polytechnic University, Hong Kong; School of Civil and Environmental Engineering, University of Technology Sydney, Sydney, Australia.

Research Centre for Fire Safety Engineering, The Hong Kong Polytechnic University, Hong Kong; Department of Mechanical Engineering, University of California, Berkeley, CA, USA.

出版信息

Waste Manag. 2023 Jul 15;167:183-193. doi: 10.1016/j.wasman.2023.05.038. Epub 2023 Jun 1.

Abstract

Waste biomass treatment is a globally urgent matter which highly relates to environmental quality and human health. Here, a flexible suite of smouldering-based waste biomass processing technologies is developed and four processing strategies: (a) full smouldering, (b) partial smouldering, (c) full smouldering with a flame, and (d) partial smouldering with a flame, are proposed. The gaseous, liquid, and solid products of each strategy are quantified under various airflow rates. Then, a multi-criteria analysis in terms of environmental impact, carbon sequestration, waste removal efficiency, and by-product value is performed. The results show that full smouldering achieves the highest removal efficiency but generates significant greenhouse and toxic gases. Partial smouldering effectively generates stable biochar, sequesters over 30% carbon, and therefore reduces the greenhouse gases to the atmosphere. By applying a self-sustained flame, the toxic gases are significantly reduced to clean smouldering emissions. Finally, the process of partial smouldering with a flame is recommended to process the waste biomass that can sequester more carbon as biochar, minimize carbon emissions and mitigate the pollution. And the process of full smouldering with a flame is preferred to maximally reduce the waste volume with minimum environmental impact. This work enriches strategies for carbon sequestration and environmentally friendly waste biomass processing technologies.

摘要

废物生物质处理是一个全球性的紧迫问题,它与环境质量和人类健康息息相关。在这里,我们开发了一套灵活的基于闷烧的废物生物质处理技术,并提出了四种处理策略:(a) 完全闷烧,(b) 部分闷烧,(c) 闷烧加火焰,和(d) 部分闷烧加火焰。在不同的气流速率下,量化了每种策略的气体、液体和固体产物。然后,根据环境影响、碳固存、废物去除效率和副产物价值进行了多标准分析。结果表明,完全闷烧可达到最高的去除效率,但会产生大量的温室气体和有毒气体。部分闷烧可有效地生成稳定的生物炭,固碳超过 30%,从而减少温室气体向大气中的排放。通过应用自维持火焰,可以显著减少有毒气体,实现清洁闷烧排放。最后,推荐采用部分闷烧加火焰的工艺来处理废物生物质,可以将更多的碳作为生物炭封存,最小化碳排放,并减轻污染。而采用完全闷烧加火焰的工艺则更适合于以最小的环境影响最大限度地减少废物量。这项工作丰富了碳封存和环保废物生物质处理技术的策略。

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