首页> 外文期刊>International Journal of Environmental Research and Public Health >Disposal Situation of Sewage Sludge from Municipal Wastewater Treatment Plants (WWTPs) and Assessment of the Ecological Risk of Heavy Metals for Its Land Use in Shanxi, China
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Disposal Situation of Sewage Sludge from Municipal Wastewater Treatment Plants (WWTPs) and Assessment of the Ecological Risk of Heavy Metals for Its Land Use in Shanxi, China

机译:山西省城市污水处理厂污水污泥处置现状及重金属生态风险评估

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Land use of sewage sludge is the primary disposal method in Shanxi, accounting for 42.66% of all. To determine the ecological risk of heavy metals in sewage sludge, contents of seven heavy metals in sewage sludge from 9 municipal waste water treatment plants (WWTPs) that had the highest application for land use were determined. The order of the measured concentrations was: Zn > Cr > Cu > Ni > Pb > As > Cd, and all heavy metals contents were within the threshold limit values of the Chinese Control Standards for Pollutants in Sludge from Agriculture Use (GB4284-84). Four indices were used to assess the pollution and the ecological risk of heavy metals. By the mean values of the geoaccumulation index (I geo ), heavy metals were ranked in the following order: Cd > Zn > Cu > As > Cr > Ni > Pb. The values showed that the pollution of Zn in station 3 and Cd in station 1, 2, 3, 4, 8 and 9 were heavily; Cu in station 8 and 9, Zn in station 1, 2, 4, 8 and 9 and Cd in station 5 and 7 were moderately to heavily, and the accumulation of other heavy metals were not significant. The single-factor pollution index (PI) suggested that none of the stations had heavy metals contamination, except for Cu in station 9, Zn in station 3 and 8, and Cd in station 1 and 9, which were at a moderate level. According to the results of the Nemerow’s synthetic pollution index (PN), sewage sludge from all stations was safe for land use with respect to heavy metals contamination, except for stations 3, 8 and 9, which were at the warning line. The monomial potential ecological risk coefficient (Eri) revealed that heavy metals ecological risks in most stations were low. However, station 9 had a moderate risk for Cu; station 6 had a moderate risk, stations 5 and 7 had high risk, other stations had very high risk for Cd. According to the results of the potential ecological risk index (RI), station 1, 8 and 9 had high risk; station 2, 3, 4, 5 and 7 had a moderate risk, and station 6 had a low risk. The preliminary results indicated that the potential risk of land exposure to heavy metals in sewage sludge was relatively low, with Zn and Cd as the main contributor to the ecological risk for the applying of sewage sludge on land. Additionally, stations 3, 8 and 9 require more attention regarding the land applications related to heavy metals pollution.
机译:污泥的土地利用是山西省的主要处置方式,占全部的42.66%。为了确定污水污泥中重金属的生态风险,确定了来自土地利用最多的9个市政污水处理厂(WWTP)的污水污泥中7种重金属的含量。测得的浓度顺序为:锌>铬>铜>镍>铅>砷>镉,所有重金属含量均在《中国农业污泥污染物控制标准》(GB4284-84)的阈值范围内。 。四个指标用于评估重金属的污染和生态风险。通过地质累积指数的平均值(I geo),重金属按以下顺序排序:Cd> Zn> Cu> As> Cr> Ni> Pb。数值表明,3号站的锌污染,1、2、3、4、8和9号站的Cd污染严重。站8和9中的Cu,站1、2、4、8和9中的Zn和站5和7中的Cd中度至重度,其他重金属的积累不显着。单因素污染指数(PI)表明,除了9号站中的Cu,3号站和8号站中的Zn,1号站和9号站中的Cd处于中等水平外,所有站均没有重金属污染。根据尼梅罗(Nemerow)综合污染指数(PN)的结果,除警告站3、8和9站外,所有站的污水污泥对于重金属污染而言都是安全的土地使用。单项潜在生态风险系数(Eri)表明,大多数站点的重金属生态风险较低。但是,第9站的铜风险中等。第6站的风险中等,第5站和第7站的风险很高,其他站点的Cd风险很高。根据潜在生态风险指数(RI)的结果,站点1、8和9具有高风险;站2、3、4、5和7的风险中等,而站6的风险低。初步结果表明,土地污泥中重金属暴露的潜在风险相对较低,其中锌和镉是造成土地污泥施用生态风险的主要因素。此外,在与重金属污染有关的土地应用方面,站点3、8和9需要更多关注。

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