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首页> 外文期刊>Environmental engineering research >Reduction of eco-toxicity risk of heavy metals in the rotary drum composting of water hyacinth: Waste lime application and mechanisms
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Reduction of eco-toxicity risk of heavy metals in the rotary drum composting of water hyacinth: Waste lime application and mechanisms

机译:减少风信子转鼓堆肥中重金属的生态毒性风险:废石灰的应用和机理

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摘要

Experiments were conducted on the immobilization of eight heavy metals (HMs) (Zn, Cu, Mn, Fe, Ni, Pb, Cd, and Cr) during 20-day rotary drum composting of water hyacinth. The Tessier sequential extraction procedure was used to investigate the fractionation of HMs. The eco-toxicity risk of HMs was assessed by risk assessment code (RAC). In the results, the bioavailability factor (BAF) for different HMs presented in the following order: Mn > Zn = Fe > Cu > Cr > Cd = Pb > Ni. The total concentration of Pb was higher than that of Zn, Cu, Mn, Cd and Cr; however, its BAF was the lowest among these HMs. These results confirmed that the eco-toxicity of HMs depends on bioavailable fractions rather than on the total concentration. The greatest reduction in bioavailability and eco-toxicity risk of HMs occurred in lime 1% and 2% as compared to control and lime 3%. The eco-toxicity risk of Fe, Ni, Pb, Cd and Cr was reduced from low risk to zero risk by rotary drum composting. These studies demonstrated the high efficiency of the rotary drum for degrading compost materials and for reducing the bioavailability and eco-toxicity risk of HMs during the composting process.
机译:在水葫芦的20天转鼓堆肥过程中,对八种重金属(HMs)(锌,铜,锰,铁,镍,铅,镉和铬)的固定化进行了实验。 Tessier顺序提取程序用于研究HMs的分级分离。 HMs的生态毒性风险通过风险评估代码(RAC)进行评估。结果表明,不同HMs的生物利用度因子(BAF)依次为:Mn> Zn = Fe> Cu> Cr> Cd = Pb> Ni。铅的总浓度高于锌,铜,锰,镉和铬。但是,其BAF在这些HM中最低。这些结果证实,HMs的生态毒性取决于生物可利用的分数而不是总浓度。与对照组和石灰3%相比,石灰的1%和2%最大降低了HMs的生物利用度和生态毒性风险。通过转鼓堆肥将铁,镍,铅,镉和铬的生态毒性风险从低风险降低到零风险。这些研究表明,转鼓在堆肥过程中具有很高的降解降解堆肥的效率,并降低了HMs的生物利用度和生态毒性风险。

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