Heavy Metals and PAHs in Sewage Sludge from Twelve Wastewater Treatment Plants in Zhejiang Province

被引:0
作者
C. M. TIENTCHEN
机构
[1] CollegeofEnvironmentalandResourceSciences,ZhejiangUniversity
关键词
Sludge; Heavy Metal; Chemical Fractions; Polycyclic aromatic hydrocarbons; Contribution;
D O I
暂无
中图分类号
X703 [废水的处理与利用];
学科分类号
083002 ;
摘要
Objective To investigate the heavy metals (HMs) and polycyclic aromatic hydrocarbons (PAHs) in sludge of twelve wastewater treatment plants (WWTPs) in Zhejiang province of China, and to assess their potential for land application. Methods Sludge was collected from 12 WWTPs within the province. GC-MS and AAS were used to measure PAHs and HMs contents in sludge. Results Concentrations of HMs in most of the sludge samples were below the regulatory limits for the sludge to be used in agriculture in China with the exception of Zn in 2 sludge samples and Cd in 1 sample. All 16 PAHs, targeted by the USEPA agency, were found in the sludge from the twelve plants with a total concentration ranging from 33.73 mg kg-1 to 82.58 mg kg-1 (dry weight, d.w.). The levels of ∑9 PAHs varied from 13.87 mg kg-1 to 61.86 mg kg-1 (d.w.) in the sludge, far exceeding the limitation value recommended by the Europe Union. The concentration and composition of PAHs in sewage sludge varied and depended mainly on the quantity and type of industrial wastewater accepted by the WWTPs. A significant relationship between the proportion of industrial wastewater received by WWTPs and the total content of 16 PAHs in the sludge was observed. Conclusion PAHs have become one of the primary pollutants in sludge of Zhejiang WWTPs instead of HMs. It is, therefore, essential to reduce the contents of PAHs before the sludge can be used in agriculture through proper treatment.
引用
收藏
页码:345 / 352
页数:8
相关论文
共 33 条
[1]  
Land application of treated sewage sludge: quantifying pathogen risks from consumption of crops. Gale P. Journal of Applied Microbiology . 2005
[2]  
Warzecha L; Bodzek, M Determination of polycyclic aromatic compounds and heavy metals in sludges from biological sewage treatment plants. Bodzek D,Janoszka B,Dobosz C, et al. Journal of Chromatography A . 1997
[3]  
Optimization, validation and comparison of various extraction techniques for the trace determination of polycyclic aromatic hydrocarbons in sewage sludges by liquid chromatography coupled to diode-array and fluorescence detection. Miège C,Dugay J,Hennion M C. Journal of Chromatography A . 2003
[4]  
Contaminant risks from biosolids land application:Contemporary organic contaminant levels in digested sewage sludge from five treatment plants in Greater Vancouver. Bright D A,Healey N. British Columbia Environ Pollut . 2003
[5]  
Organic contaminants in sewage. Samse-Petersen L. www.naturvket.se/bokhandle . 2003
[6]  
Ecotoxicological effect assessment and risk characterisation of selected contaminants in sewage sludge. Jensen J. www.dmu.dk/NR/rdonlyres . 2003
[7]  
Integrated Risk Information System (IRIS). US Environmental Protection Agency,Office of Research and Development. www.epa.gov/iris/index.html . 2001
[8]  
Distribution and origins of polycyclic aromatic hydrocarbons (PAHs) in riverine, estuarine, and marine sediments in Thailand. Boonyatumanond R,Wattayakorn G,Togo A, et al. Marine Pollution Bulletin . 2006
[9]  
Working Document on Sludge. Council of the European Community. . 2000
[10]  
PCDD/F, PAH and heavy metals in the sewage sludge from six wastewater treatment plants in Beijing, China. Dai J Y,Xu M Q,Chen J P, et al. Chemosphere . 2007