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粪便污泥的回收利用:不同调理剂共堆肥过程中粪便污泥的氮、碳和有机物转化。

Recycling of Faecal Sludge: Nitrogen, Carbon and Organic Matter Transformation during Co-Composting of Faecal Sludge with Different Bulking Agents.

机构信息

The Water Institute at UNC, Department of Environmental Sciences and Engineering, Gillings School of Global Public Health, University of North Carolina at Chapel Hill, 357 Rosenau Hall, 135 Dauer Drive, Chapel Hill, NC 27599, USA.

BioResource Systems Research Group, School of Civil Engineering, University of Leeds, Leeds LS2 9JT, UK.

出版信息

Int J Environ Res Public Health. 2022 Aug 25;19(17):10592. doi: 10.3390/ijerph191710592.

Abstract

This study investigated the effect of locally available bulking agents on the faecal sludge (FS) composting process and quality of the final FS compost. Dewatered FS was mixed with sawdust, coffee husk and brewery waste, and composted on a pilot scale. The evolution of physical and chemical characteristics of the composting materials was monitored weekly. Results indicate that bulking agents have a statistically significant effect ( < 0.0001) on the evolution of composting temperatures, pH, electrical conductivity, nitrogen forms, organic matter mineralisation, total organic carbon, maturity indices, quality of the final compost and composting periods during FS composting. Our results suggest reliable maturity indices for mature and stable FS compost. From the resource recovery perspective, this study suggests sawdust as a suitable bulking agent for co-composting with FS-as it significantly reduced the organic matter losses and nitrogen losses (to 2.2%), and improved the plant growth index, thus improving the agronomic values of the final compost as a soil conditioner. FS co-composting can be considered a sustainable and decentralised treatment option for FS and other organic wastes in the rural and peri-urban communities, especially, where there is a strong practice of reusing organic waste in agriculture.

摘要

本研究调查了本地可用的膨松剂对粪便污泥(FS)堆肥过程和最终 FS 堆肥质量的影响。脱水 FS 与木屑、咖啡壳和啤酒厂废物混合,并在中试规模上进行堆肥。每周监测堆肥材料物理化学特性的演变。结果表明,膨松剂对堆肥温度、pH 值、电导率、氮形态、有机物矿化、总有机碳、成熟度指数、最终堆肥质量和 FS 堆肥期间的堆肥期的演变有统计学上的显著影响(<0.0001)。我们的结果为成熟和稳定的 FS 堆肥提供了可靠的成熟度指数。从资源回收的角度来看,本研究建议使用木屑作为 FS 与 FS 共堆肥的合适膨松剂-因为它显著减少了有机物损失和氮损失(至 2.2%),并提高了植物生长指数,从而提高了最终堆肥作为土壤改良剂的农业价值。FS 共堆肥可被视为 FS 和农村及城市周边社区其他有机废物的可持续和分散处理选择,特别是在农业中强烈存在再利用有机废物的情况下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abda/9518209/bc123f698c48/ijerph-19-10592-g005.jpg

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