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在垃圾焚烧中引入碳捕集与利用(CCU)对气候变化的影响。

Climate change impacts of introducing carbon capture and utilisation (CCU) in waste incineration.

机构信息

Department of Environmental Engineering, Technical University of Denmark, Bygningstorvet 115, DK-2800 Lyngby, Denmark.

Department of Environmental Engineering, Technical University of Denmark, Bygningstorvet 115, DK-2800 Lyngby, Denmark.

出版信息

Waste Manag. 2021 May 1;126:754-770. doi: 10.1016/j.wasman.2021.03.046. Epub 2021 Apr 19.

DOI:10.1016/j.wasman.2021.03.046
PMID:33887697
Abstract

Amending municipal solid waste incineration (MSWI) with carbon capture and utilisation (CCU) can simultaneously lower the climate change impacts of incineration and supply carbon for a range of uses. However, life cycle assessment (LCA) shows that technology choices and the benefits of CCU applied to MSWI depend on the energy system in which the MSWI operates throughout its lifetime, and on the markets for the CCU products. Carbon capture reduces up to 50% of the energy recovery of MSWI. We assessed different energy system scenarios, ranging from fossil- to non-fossil based. Direct utilisation of the captured CO is beneficial only on a local basis when substituting fossil-based CO (-700 kg CO-eq/tonne waste), with benefits similar to carbon capture and storage. Hydrogenation of CO with the purpose of producing feedstock chemicals or fuels such as methane, methanol, dimethyl ether (DME) and formic acid provides much higher benefits (-2000 kg CO-eq/tonne waste), but only in non-fossil-based energy systems, due to the dramatically high consumption of electricity (more than 6000 kWh/tonne waste). Use as feedstock chemicals provides more benefits than use as fuels, and CCU solutions focusing on methanol and DME are the most promising technologies. Although built on scarce and early-development data, the analysis highlights current crucial issues, at both the technological and system levels, for the future introduction of CCU in MSWI.

摘要

用碳捕获和利用(CCU)来修改城市固体废物焚烧(MSWI)可以同时降低焚烧的气候变化影响,并为一系列用途提供碳。然而,生命周期评估(LCA)表明,CCU 应用于 MSWI 的技术选择和效益取决于 MSWI 在其整个生命周期中运行的能源系统,以及 CCU 产品的市场。碳捕获减少了 MSWI 能源回收的高达 50%。我们评估了不同的能源系统情景,范围从基于化石燃料到非化石燃料。捕获的 CO 的直接利用仅在替代基于化石燃料的 CO 时(-700kg CO-eq/吨废物)在本地有利(-700kg CO-eq/吨废物),与碳捕获和储存的效益相似。为了生产原料化学品或燃料,如甲烷、甲醇、二甲醚(DME)和甲酸,将 CO 氢化提供了更高的效益(-2000kg CO-eq/吨废物),但仅在非化石燃料的能源系统中,由于电的消耗极高(超过 6000kWh/吨废物)。作为原料化学品的使用提供了比作为燃料更多的好处,并且专注于甲醇和 DME 的 CCU 解决方案是最有前途的技术。尽管该分析基于稀缺和早期开发的数据,但突出了当前在技术和系统层面上,未来在 MSWI 中引入 CCU 的关键问题。

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