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Vermicomposting as an advanced biological treatment for industrial waste from the leather industry

机译:Vermicomposting作为皮革工业废料的高级生物处理方法

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The leather industry (tanneries) generates high amounts of toxic wastes, including solid and liquid effluents that are rich in organic matter and mineral content. Vermicomposting was studied as an alternative method of treating the wastes from tanneries. Vermicompost was produced from the following tannery residues: tanned chips of wet-blue leather, sludge from a liquid residue treatment station, and a mixture of both. Five hundred earthworms (Eisenia fetida) were added to each barrel. During the following 135 days the following parameters were evaluated: pH, total organic carbon (TOC), organic matter (OM), cation exchange capacity (CEC), C:N ratio, and chromium content as Cr (Ⅲ) and Cr (Ⅵ). The results for pH, TOC and OM contents showed decreases in their values during the composting process, whereas values for CEC and total nitrogen rose, indicating that the vermicompost reached maturity. For chromium, at 135 days, all values of Cr (Ⅵ) were below the detectable level. Therefore, the Cr (Ⅵ) content had probably been biologically transformed into Cr (Ⅲ), confirming the use of this technique as an advanced biological treatment. The study reinforces the idea that vermicomposting could be introduced as an effective technology for the treatment of industrial tannery waste and the production of agricultural inputs.
机译:皮革工业(制革厂)产生大量有毒废物,包括富含有机物和矿物质的固体和液体废水。研究了com堆肥作为处理制革厂废物的替代方法。 Vermicompost由以下制革厂残留物制得:鞣制的湿蓝色皮革碎片,来自液体残留物处理站的污泥以及两者的混合物。每桶加入500 earth(Eisenia fetida)。在接下来的135天中,对以下参数进行了评估:pH,总有机碳(TOC),有机物(OM),阳离子交换容量(CEC),C:N比以及铬含量,即Cr(Ⅲ)和Cr(Ⅵ) )。 pH,TOC和OM含量的结果表明,堆肥过程中它们的值下降,而CEC和总氮的值上升,这表明com堆已经成熟。对于铬,在135天时,所有Cr(Ⅵ)值均低于可检测水平。因此,Cr(Ⅵ)的含量可能已被生物转化为Cr(Ⅲ),从而证实了该技术作为先进的生物处理方法的应用。该研究强化了这样一种观念,即可以将ver堆肥作为一种有效的技术用于处理工业制革厂废物和生产农业投入品。

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