Weighted Comprehensive Risk Assessment and Pollution Analysis of Long-Term Printing and Dyeing Sludge Landfills in an Industrialized Chinese City

IF 7.6 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Pollution Pub Date : 2025-01-09 DOI:10.1016/j.envpol.2025.125665
Qian Xiang, Dongdong Fan, Liming Zhu, Tongsheng Zhang, Danni Shen, Hui Wang, Bin Dong
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Abstract

Sludge landfilling is widely used in China, accounting for approximately 65% of total sludge disposal, due to its simplicity and cost-effectiveness. However, with increasing land scarcity and stricter environmental regulations, the Chinese government has emphasized reducing sludge landfilling. Despite these efforts, sludge historically disposed of in landfills continues to pose risks, including heavy metal leaching and contamination of groundwater and soil. Comprehensive risk assessments for multi-contaminant industrial sludge in long-term landfills remain limited. This study conducted a risk survey and pollution assessment at a long-term sludge landfill in a typical industrial city in China. The sludge at the site was found to be mildly alkaline (pH 7.30-8.29) and had a low calorific value (1.37E+03-1.61E+03 kcal/kg), with significant dewatering challenges (1.23×1015 s2/g). The overall pollution load was relatively low, with a regional Pollution Load Index (PLI) of 0.65. However, due to extreme pollutants, the Nemerow Pollution Index (NPI) reached 9.49, indicating severe pollution. The single-factor index assessment indicates high pollution levels for Zn, Sb, BaP, and total petroleum hydrocarbons (TPHs). Ecological risk is primarily associated with Hg, Sb, BaP, InP, and TPHs. However, the weighted comprehensive risk assessment method proposed in the study identifies Zn, Pb, Sb, and TPHs as priority pollutants, with the main pollution hotspots being SZ4, SZ5, and SZ9. Some pollutants, such as Ni, antibiotics, polychlorinated biphenyls, and certain polycyclic aromatic hydrocarbons, were not detected in the sludge. Through principal component analysis and positive matrix factorization analysis, multiple sources of pollution at the landfill were identified, including the dyeing industry, electronics manufacturing, traffic emissions, fuel combustion, and urban runoff. This analysis highlights heavy metal pollution (Cr, Hg, Pb) and organic pollutants (PAHs, TPHs, DBA) resulting from industrial and urban activities. The results offer key insights to guide future sludge treatment and disposal at this landfill.

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某工业化城市印染污泥长期填埋的加权综合风险评价及污染分析
污泥填埋在中国被广泛使用,由于其简单和成本效益,约占污泥处置总量的65%。然而,随着土地日益稀缺和环境法规的严格,中国政府强调减少污泥填埋。尽管做出了这些努力,但历史上在垃圾填埋场处理的污泥继续构成风险,包括重金属浸出和地下水和土壤污染。长期填埋多污染物工业污泥的综合风险评估仍然有限。本研究对中国某典型工业城市的长期污泥填埋场进行了风险调查和污染评价。该场地的污泥呈轻度碱性(pH值7.30-8.29),热值较低(1.37E+03-1.61 e +03 kcal/kg),脱水难度较大(1.23×1015 s2/g)。总体污染负荷较低,区域污染负荷指数(PLI)为0.65。然而,由于污染物极端,Nemerow污染指数(NPI)达到9.49,表明污染严重。单因素指标评价表明Zn、Sb、BaP和总石油烃(TPHs)污染水平较高。生态风险主要与Hg、Sb、BaP、InP和tph有关。而本研究提出的加权综合风险评价方法将Zn、Pb、Sb和TPHs确定为优先污染物,主要污染热点为SZ4、SZ5和SZ9。污泥中未检出镍、抗生素、多氯联苯和某些多环芳烃等污染物。通过主成分分析和正矩阵分解分析,确定了垃圾填埋场的多种污染源,包括印染工业、电子制造、交通排放、燃料燃烧和城市径流。该分析强调了工业和城市活动造成的重金属污染(Cr, Hg, Pb)和有机污染物(PAHs, TPHs, DBA)。研究结果为指导该填埋场未来的污泥处理和处置提供了关键的见解。
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来源期刊
Environmental Pollution
Environmental Pollution 环境科学-环境科学
CiteScore
16.00
自引率
6.70%
发文量
2082
审稿时长
2.9 months
期刊介绍: Environmental Pollution is an international peer-reviewed journal that publishes high-quality research papers and review articles covering all aspects of environmental pollution and its impacts on ecosystems and human health. Subject areas include, but are not limited to: • Sources and occurrences of pollutants that are clearly defined and measured in environmental compartments, food and food-related items, and human bodies; • Interlinks between contaminant exposure and biological, ecological, and human health effects, including those of climate change; • Contaminants of emerging concerns (including but not limited to antibiotic resistant microorganisms or genes, microplastics/nanoplastics, electronic wastes, light, and noise) and/or their biological, ecological, or human health effects; • Laboratory and field studies on the remediation/mitigation of environmental pollution via new techniques and with clear links to biological, ecological, or human health effects; • Modeling of pollution processes, patterns, or trends that is of clear environmental and/or human health interest; • New techniques that measure and examine environmental occurrences, transport, behavior, and effects of pollutants within the environment or the laboratory, provided that they can be clearly used to address problems within regional or global environmental compartments.
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