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首页> 外文期刊>Journal of Chemistry >The Organic Pollutant Characteristics of Lurgi Coal Gasification Wastewater before and after Ozonation
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The Organic Pollutant Characteristics of Lurgi Coal Gasification Wastewater before and after Ozonation

机译:臭氧化前后鲁奇煤气化废水中的有机污染物特征

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The effluent of distilled and extracted Lurgi coal gasification wastewater has been found to have low biodegradability and high toxicity, which inhibits further biodegradation. However, ozonation enhances the biodegradability and reduces the toxicity of this effluent, enabling further biological treatment and increased removal of organic materials. In this study, the dissolved organic matters in Lurgi coal gasification wastewater were isolated into six classes by resin adsorbents, after which TOC, UV254, UV-Vis, and 3D EEM were employed to quantitatively and qualitatively analyze organic materials in each part of the fractionated samples. The HoA and HiN fraction accounted for large amounts of the Lurgi coal gasification wastewater, and their TOC values were about 380.21 mg·L−1 and 646.84 mg·L−1, respectively. After ozonation, the TOC removal rates of HoA and HiN reached 42.85% and 67.13%, respectively. The UV254 of HoA was basically stable before and after ozonation, while that of HiN increased continuously because a portion of the humic macromolecular organic materials in HoA was oxidized to HiN. Additionally, UV-Vis analysis revealed that the larger molecular organics of HoA were oxidized during ozonation, resulting in high biodegradability. Finally, the 3D EEM spectra indicated that the macromolecular organics were oxidized to smaller molecules with the degradation of soluble microbial by-products.
机译:已经发现蒸馏和提取的鲁奇煤气化废水的废水具有低生物降解性和高毒性,从而抑制了进一步的生物降解。然而,臭氧化提高了生物降解能力并降低了这种废水的毒性,从而可以进行进一步的生物处理并增加有机物的去除率。在这项研究中,通过树脂吸附剂将鲁奇煤气化废水中的溶解有机物分为六类,然后使用TOC,UV254,UV-Vis和3D EEM定量和定性分析分馏各部分中的有机物。样品。 HoA和HiN分数占Lurgi煤气化废水的大部分,其TOC值分别约为380.21 mg·L-1和646.84 mg·L-1。臭氧处理后,HoA和HiN的TOC去除率分别达到42.85%和67.13%。臭氧化前后,HoA的UV254基本稳定,而HiN的UV254则持续增加,因为HoA中的一部分腐殖质大分子有机物质被氧化为HiN。此外,UV-Vis分析表明,HoA的较大分子有机物在臭氧化过程中被氧化,从而具有很高的生物降解性。最后,3D EEM谱图表明,随着可溶性微生物副产物的降解,大分子有机物被氧化成较小的分子。

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