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Adsorption of Organic Constituents from Reverse Osmosis Concentrate in Coal Chemical Industry by Coking Coal

机译:焦化煤吸附煤化工行业反渗透浓缩液中有机成分的研究

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To solve the unwieldy problem of coal chemical wastewater reverse osmosis concentrate (ROC), a novel treatment method in which coking coal was used to adsorb the organic from ROC and the adsorption mechanism involved was investigated. The results showed that the organic components in the ROC of coal chemical industry can be effectively absorbed by the coking coal and the total organic carbon, UV 254 and chromaticity of treated ROC reduced by 70.18%, 70.15% and 59.55%, respectively, at the coking coal dosage of 80 g/L. The isothermal adsorption data were fitted to the Langmuir model well. The kinetics were expressed well by the quasi-second-order kinetic model. The intragranular diffusion model and the BET (Acronym for three scientists: Brunauer–Emmett–Teller) test showed that the adsorption occurred mainly on the surface of the coking coal and its macropores and mesopores. When the pollutants further diffused to the mesopores and micropores, the adsorption rate decreased. The result of X-ray photoelectron spectroscopy and fourier transform infrared spectroscopy spectra showed that the coking coal mainly adsorbed the nitrogen and oxygen species and the halogenated hydrocarbon organic compounds in the ROC. The chlorinated hydrocarbons and heterocyclic organics in ROC are adsorbed on the surface of coking coal.
机译:为解决煤化工废水反渗透浓缩液(ROC)的繁琐问题,研究了一种利用焦煤吸附ROC中有机物的新型处理方法,并探讨了其吸附机理。结果表明,炼焦煤可以有效吸收煤化工ROC中的有机成分,处理后的ROC的总有机碳,UV 254和色度分别降低了70.18%,70.15%和59.55%。炼焦煤用量为80 g / L。将等温吸附数据拟合到Langmuir模型井。准二级动力学模型很好地表达了动力学。颗粒内扩散模型和BET(三位科学家的缩写:Brunauer–Emmett–Teller)测试表明,吸附主要发生在焦煤及其大孔和中孔的表面。当污染物进一步扩散到中孔和微孔时,吸附速率降低。 X射线光电子能谱和傅立叶变换红外光谱的结果表明,焦煤主要吸附ROC中的氮,氧和卤代烃有机物。 ROC中的氯代烃和杂环有机物吸附在焦煤表面。

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