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Pretreatment of coal gasification wastewater by adsorption using activated carbons and activated coke

机译:活性炭和活性焦吸附预处理煤气化废水。

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Powdered (below 125 mu m) activated carbons made by wood (WAC) and coal (CAC) and activated coke (AC), whose BET surface areas were 551, 335 and 484 m(2)/g, respectively, were studied to adsorb organic pollutants from coal gasification wastewater (CGWW). This study initially focused on the equilibrium sorption isotherms of adsorbents for the removal of chemical oxygen demand (COD) from CGWW. Molecular weight (MW) distribution and fluorescence excitation emission matrix (FEEM) were used to determine the difference of CGWW quality. Water qualities of CGWW before and after adsorption by adsorbents were also investigated. The isotherm results showed that Langmuir model fit the adsorption isotherms of activated carbons, while Freundlich model was better for that of AC. CAC and AC had a higher adsorption capacity under lower and higher COD concentration, respectively. It was also found from MW distribution and FEEM results that AC had a prior adsorption to high MW aromatic, refractory compounds in CGWW, which is good for the following biological treatment and suitable for pretreatment. This was because that the mesopores percentage of AC was 63%, which was higher than WAC and CAC. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了由木材(WAC)和煤炭(CAC)和活性炭(AC)制成的粉末状活性炭(低于125μm),其BET表面积分别为551、335和484 m(2)/ g。煤气化废水(CGWW)中的有机污染物。这项研究最初集中于从CGWW去除化学需氧量(COD)的吸附剂的平衡吸附等温线。分子量(MW)分布和荧光激发发射矩阵(FEEM)用于确定CGWW质量的差异。还研究了吸附剂吸附前后CGWW的水质。等温线结果表明,Langmuir模型适合活性炭的吸附等温线,而Freundlich模型对活性炭的吸附等温线更好。在较低和较高COD浓度下,CAC和AC分别具有较高的吸附容量。从MW分布和FEEM结果还发现,AC对CGWW中的高MW芳族耐火化合物具有先吸附性,这对于随后的生物处理是有利的,并且适合于预处理。这是因为AC的中孔百分比为63%,高于WAC和CAC。 (C)2015 Elsevier B.V.保留所有权利。

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