Insights into multisource sludge distributed in the Yangtze River basin, China: Characteristics, correlation, treatment and disposal

环境科学 有机质 污水处理 污染物 废水 长江 环境工程 废物管理 中国 生态学 地理 生物 工程类 考古
作者
Yiqun Guo,Hui Gong,Wenjing Shi,Ning Fang,Yaqin Tan,Weiqi Zhou,Juan Huang,Lingling Dai,Xiaohu Dai,Yali Guo
出处
期刊:Journal of Environmental Sciences-china [Elsevier]
卷期号:126: 321-332 被引量:4
标识
DOI:10.1016/j.jes.2022.04.038
摘要

Sludge is the by-product of wastewater treatment process. Multisource sludge can be defined as sludge from different sources. Based on the sludge properties of five typical cities in the Yangtze River basin, including Jiujiang, Wuhu, Lu'an, Zhenjiang and Wuhan, this study investigated and summarized the characteristic variations and distribution differences of multiple indicators and substances from municipal sludge, dredged sludge, and river and lake sediments. The results demonstrated pH of multisource sludge was relatively stable in the neutral range. Organic matter and water content among municipal sludge were high and varied considerably between different wastewater treatment plants. Dredged sludge had an obviously higher sand content and wider particle distribution, which could be considered for graded utilization depending on its size. The nutrients composition of river and lake sediments was usually stable and special, with lower nitrogen and phosphorus content but higher potassium levels. The sources of heavy metals and persistent organic pollutants in multisource sludge were correlated, generally much higher among municipal sludge than dredged sludge and river and lake sediments, which were the most important limitation for final land utilization. Despite various properties of multisource sludge, the final fate and destination have some overall similarities, which need to be supplemented and improved by standards and laws. The study provided a preliminary analysis of suitable technical routes for municipal sludge, dredged sludge, river and lake sediments based on their different characteristics respectively, which was of great significance for multisource sludge co-treatment and disposal in the future of China.
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