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超越循环生物经济概念中的传统废水处理厂 - 一项可持续性评估研究。

Going beyond conventional wastewater treatment plants within circular bioeconomy concept - a sustainability assessment study.

机构信息

Department of Mechanical Engineering of Agricultural Machinery, Faculty of Agricultural Engineering and Technology, College of Agriculture and Natural Resources, University of Tehran, Tehran, Iran.

Department of Chemical and Biochemical Engineering, Technical University of Denmark, Kgs Lyngby DK-2800, Denmark.

出版信息

Water Sci Technol. 2022 Mar;85(6):1878-1903. doi: 10.2166/wst.2022.096.

Abstract

Wastewater treatment plants (WWTP) have extensive energy processes that undermine their economic and environmental performance. In this context, the integration of wastewater treatment with other biochemical processes such as co-digestion of sludge with organic wastes, and production of value-added products at their downstream processes will shift conventional WWTPs into biorefinery platforms with better sustainability performance. The sustainability of such a biorefinery platform has been investigated herein using an economic and life cycle assessment approach. This WWTP-based biorefinery treats wastewater from Copenhagen municipality, co-digests the source-sorted organic fraction of municipal solid waste and sludge, and upgrades biogas into biomethane using a hydrogen-assisted upgrading method. Apart from bioenergy, this biorefinery also produces microbial protein (MP) using recovered nutrients from WWTP's reject water. The net environmental savings achieved in two damage categories, i.e., -1.07 × 10 species.yr/FU in ecosystem quality and -1.68 × 10 USD/FU in resource scarcity damage categories along with high potential windows for the further environmental profile improvements make this biorefinery platform so encouraging. Despite being promising in terms of environmental performance, the high capital expenditure and low gross profit have undermined the economic performance of the proposed biorefinery. Technological improvements, process optimization, and encouraging incentives/subsidies are still needed to make this platform economically feasible.

摘要

污水处理厂(WWTP)拥有广泛的能源处理过程,这会破坏其经济和环境性能。在这种情况下,将污水处理与其他生化过程(如污泥与有机废物的共消化,以及在其下游过程中生产增值产品)相结合,将传统的 WWTP 转变为具有更好可持续性的生物炼制平台。本研究使用经济和生命周期评估方法来研究这种生物炼制平台的可持续性。这个基于 WWTP 的生物炼制厂处理哥本哈根市的废水,共消化城市固体废物的分类有机部分和污泥,并使用氢气辅助升级方法将沼气升级为生物甲烷。除了生物能源,这个生物炼制厂还使用 WWTP 废水回收的营养物质生产微生物蛋白(MP)。在两个损害类别中实现了净环境节省,即生态系统质量类别中的-1.07×10 物种。yr/FU 和资源稀缺性损害类别中的-1.68×10 美元/FU,以及进一步改善环境状况的高潜力窗口,使这个生物炼制平台非常有前景。尽管在环境性能方面很有前景,但高资本支出和低毛利润破坏了拟议生物炼制厂的经济性能。仍然需要技术改进、工艺优化和鼓励性的激励/补贴,以使这个平台在经济上可行。

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