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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Cost analysis for the degradation of highly concentrated textile dye wastewater with chemical oxidation H2O2/UV and biological treatment
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Cost analysis for the degradation of highly concentrated textile dye wastewater with chemical oxidation H2O2/UV and biological treatment

机译:化学氧化H2O2 / UV和生物处理降解高浓度纺织染料废水的成本分析

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The efficiency and cost-effectiveness of H2O2/UV for the complete decolorization and mineralization of wastewater containing high concentrations of the textile dye Reactive Black 5 was examined. Oxidation until decolorization removed 200-300 mg g(-1) of the dissolved organic carbon (DOC). The specific energy consumption was dependent on the initial dye concentration: the higher concentration required a lower specific energy input on a weight basis (160 W h g(-1) RB5 for 2.1 g L-1 versus 354 W h g(-1) RBS for 0.5 g L-1). Biodegradable compounds were formed, so that DOC removal could be increased by 30% in a following biological stage. However, in order to attain 800 mg g(-1) overall mineralization, 500 mg g(-1) of the DOC had to be oxidized in the H2O2/UV stage. A cost analysis showed that although the capital costs are much less for a H2O2/UV stage compared to ozonation, the operating costs are almost double those of ozonation. Thus, while H2O2/UV can compete with ozonation when the treatment goal only requires decolorization, ozonation is more cost-effective in this case when mineralization is desired. (c) 2006 Society of Chemical Industry.
机译:考察了H2O2 / UV对含有高浓度纺织染料活性黑5的废水进行完全脱色和矿化的效率和成本效益。氧化直至脱色,除去了200-300 mg g(-1)的溶解有机碳(DOC)。比能量消耗取决于初始染料浓度:较高的浓度需要以重量为基准的较低的比能量输入(2.1 g L-1的160 W hg(-1)RB5与354 W hg(-1)的RBS 0.5克L-1)。形成了可生物降解的化合物,因此在随后的生物阶段可以将DOC去除率提高30%。但是,为了达到800 mg g(-1)的总矿化度,必须在H2O2 / UV阶段将500 mg g(-1)的DOC氧化。成本分析表明,尽管与臭氧化相比,H2O2 / UV阶段的资本成本要低得多,但运营成本几乎是臭氧化成本的两倍。因此,当处理目标仅需要脱色时,虽然H2O2 / UV可以与臭氧化竞争,但在这种情况下,当需要矿化时,臭氧化更具成本效益。 (c)2006年化学工业协会。

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