污泥热解的生命周期评估:生物炭作为碳螯合剂和养分回收剂对环境的影响

IF 1.2 Q4 ENGINEERING, ENVIRONMENTAL Detritus Pub Date : 2021-09-11 DOI:10.31025/2611-4135/2021.15111
Fabian Gievers, A. Loewen, M. Nelles
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引用次数: 7

摘要

污水污泥的热解是一种替代方法,通过使用产生的生物炭来回收所含的营养物质,如磷。然而,热解的生态效应并不容易评估。因此,进行了生命周期评估(LCA),以确定污泥热解的环境影响,并将其与常见的污泥焚烧方法进行比较。为了确定由此产生的生物炭的最可持续的应用,分析了四种不同的情况。建模的生命周期包括消化污泥的脱水、干燥和热解、副产品的利用途径以及生产的生物炭的各种应用和相关运输。使用ReCiPe中点法进行生命周期影响评估。就全球变暖潜力而言,最好的方案是在园艺中使用生物炭,其净排放量为2克二氧化碳当量/公斤污水污泥。与污水污泥单焚烧的基准工艺相比,这种生物炭利用方案可以节省78%的二氧化碳当量排放。此外,与基准相比,生物炭的材料使用没有发现富营养化或生态毒性等关键类别的生态热点。因此,利用适当的生物炭对消化后的污泥进行热解是一种既能封存碳又能关闭营养循环的环保选择。
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Life cycle assessment of sewage sludge pyrolysis: environmental impacts of biochar as carbon sequestrator and nutrient recycler
The pyrolysis of sewage sludge is an alternative method to recycle the contained nutrients, such as phosphorus, by material use of the resulting biochar. However, the ecological effects of pyrolysis are not easy to evaluate. Therefore, a life cycle assessment (LCA) was carried out to determine the environmental impact of sewage sludge pyrolysis and to compare it with the common method of sewage sludge incineration. In order to identify the most sustainable applications of the resulting biochar, four different scenarios were analyzed. The modeled life cycles include dewatering, drying and pyrolysis of digested sewage sludge and utilization paths of the by-products as well as various applications of the produced biochar and associated transports. The life cycle impact assessment was carried out using the ReCiPe midpoint method. The best scenario in terms of global warming potential (GWP) was the use of biochar in horticulture with net emissions of 2 g CO2 eq./kg sewage sludge. This scenario of biochar utilization can achieve savings of 78% of CO2 eq. emissions compared to the benchmark process of sewage sludge mono-incineration. In addition, no ecological hotspots in critical categories such as eutrophication or ecotoxicity were identified for the material use of biochar compared to the benchmark. Pyrolysis of digested sewage sludge with appropriate biochar utilization can therefore be an environmentally friendly option for both sequestering carbon and closing the nutrient cycle.
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来源期刊
Detritus
Detritus ENGINEERING, ENVIRONMENTAL-
CiteScore
3.30
自引率
23.50%
发文量
45
审稿时长
15 weeks
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