首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Degradation of Organic Substances and Reactive Dye in an Immobilized-Cell Sequencing Batch Reactor Operation on Simulated Textile Wastewater
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Degradation of Organic Substances and Reactive Dye in an Immobilized-Cell Sequencing Batch Reactor Operation on Simulated Textile Wastewater

机译:固定细胞测序间歇反应器中模拟纺织品废水中有机物和活性染料的降解

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Textile wastewater generally consists of high organic substances and is strongly colored. Reactive dye has been used extensively in the textile industries. It is water soluble and difficult to remove by chemical coagulation. Removal of organic substances simultaneously with dye can be achieved by a biological process. This study aims to investigate the treatability of the organic substances and reactive dye in immobilized-cell sequencing batch reactors (SBR). Three different supporting medias namely activated carbon, steel slag and plastic were used. The performance of each reactor was compared with a conventional sequencing batch reactor. The simulated textile wastewater containing the reactive azo dye Procion Red H-E7B of a concentration of 40 mg/L and COD 300 mg/L, was fed into the reactors. The supporting media in the SBR system, it will enhance the capability of COD and dye operating of the SBRs consisted of 5 periods; Fill 1.5h, React (anoxic:oxic) 20 (14:6) h, Settle 1.5h, Draw 0.5h and Idle 0.5 h. The results revealed that by adding removal. During a steady state of operation, the COD and dye concentrations of each period were investigated. In addition, the prolonged anoxic period brought about better decolorization efficiency.
机译:纺织废水通常由高有机物组成,并且颜色强烈。活性染料已在纺织工业中广泛使用。它是水溶性的,很难通过化学凝结法去除。可以通过生物过程实现与染料同时去除有机物质。这项研究旨在研究固定化细胞测序间歇反应器(SBR)中有机物质和活性染料的可处理性。使用了三种不同的支撑介质,即活性炭,钢渣和塑料。将每个反应器的性能与常规测序间歇反应器进行比较。将包含浓度为40 mg / L的活性偶氮染料Procion Red H-E7B和300 mg / L的COD的模拟纺织废水加入到反应器中。 SBR系统中的辅助介质,将提高SBR的5个周期组成的COD和染料操作的能力;填充1.5h,反应(缺氧:有氧)20(14:6)h,沉降1.5h,吸气0.5h,怠速0.5h。结果显示,通过添加删除。在稳定运行状态下,研究了每个时期的COD和染料浓度。另外,延长的缺氧时间带来更好的脱色效率。

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