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首页> 外文期刊>Journal of Cleaner Production >Leaching of Cd, Cu, Ni and Zn in a sewage sludge-amended soil in presence of geo- and nano-materials
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Leaching of Cd, Cu, Ni and Zn in a sewage sludge-amended soil in presence of geo- and nano-materials

机译:在地理和纳米材料存在下污水修正土壤中的CD,Cu,Ni和Zn的浸出

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In this study, the leaching of heavy metals; cadmium (Cd), copper (Cu), nickel (Ni), and zinc (Zn); from soils amended with sewage sludge (SS) in the presence of nanoparticles (NPs) (ZnO and MgO) and zeolite was studied. After spiking of soil with heavy metals and mixing with SS and adsorbents, the samples were incubated for 7 days and the column leaching experiments (18 days) were done by two leaching solutions (CaCl2 and DTPA) in glass columns. Also, the leaching curves were simulated by the PHREEQC program. The lowest and highest amounts of Cd leached by CaCl2 were attributed to control soil and soil treated with Isfahan SS in the presence of MgO NPs, respectively, while the lowest amount of Cd leached by DTPA was obtained in soil treated with Rasht SS in the presence of ZnO NPs (7.1 mg kg(-1) equivalent to 21.0% of total Cd in this treatment). The lowest amount of Cu leached by CaCl2 was related to the soil treated with Isfahan SS in the presence of ZnO NPs (1.3 mg kg(-1)). Also, the lowest leaching of Ni (1.4 mg kg(-1)) and Zn (0.4 mg kg(-1)) by CaCl2 was related to soil treated with Isfahan SS and Rasht SS in the presence of MgO NPs, respectively. The results showed that the addition of SS decreased Cd and Cu leaching but did not affect Ni and Zn leaching and the presence of NPs and zeolite reduced the leaching of heavy metals. The use of NPs (ZnO and MgO) and zeolite is also recommended as heavy metal adsorbents in contaminated soils. The modeling results showed that the simultaneous use of ion exchange and complex surfaces in the model caused good simulation of laboratory results. Overall, the PHREEQC program demonstrated an acceptable ability to simulate heavy metal leaching in contaminated soils treated with SS in the presence of various adsorbents. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在这项研究中,浸出重金属;镉(Cd),铜(Cu),镍(Ni)和锌(Zn);在纳米颗粒(NPS)(ZnO和MgO)存在下,通过污水污泥(SS)修正的土壤和沸石进行了研究。在用重金属的浸渍土壤并与SS和吸附剂混合时,将样品温育7天,通过玻璃柱中的两种浸出溶液(CaCl 2和DTPA)进行柱浸出实验(18天)。此外,通过Phreeqc程序模拟了浸出曲线。 CaCl2浸出的最低和最多的Cd归因于分别在MgO NPS存在下对伊斯法罕SS进行的对照和土壤进行控制,而DTPA浸出的最低量CD在存在的情况下在存在ZnO NPS(7.1mg kg(-1)相当于该处理中CD总量的21.0%)。 CaCl2浸出的最低量的Cu与在ZnO NPS(1.3mg kg(-1))存在下用isfahansss处理的土壤有关。此外,CaCl2的Ni(1.4mg kg(-1))和Zn(0.4mg kg(-1))和Zn的最低浸出与在MgO NPS存在下分别在存在MgO NPS存在下用isfahans和皮疹Ss处理的土壤有关。结果表明,添加SS降低了CD和Cu浸出,但不影响Ni和Zn浸出,并且NPS和沸石的存在降低了重金属的浸出。使用NPS(ZnO和MgO)和沸石也被推荐为受污染的土壤中的重金属吸附剂。建模结果表明,模型中同时使用离子交换和复杂表面,良好的实验室结果模拟。总体而言,Phreeqc计划在存在各种吸附剂存在下,在各种吸附剂的存在下,展示了模拟污染土壤中的重金属浸出的能力。 (c)2021 elestvier有限公司保留所有权利。

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