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基于吸附和催化湿式氧化的混合水处理工艺中污泥基碳质材料的应用。

Application of sludge-based carbonaceous materials in a hybrid water treatment process based on adsorption and catalytic wet air oxidation.

机构信息

Université de Toulouse, Laboratoire de Génie Chimique, UMR CNRS 5503, 4, allée Emile Monso, BP 84234, 31432 Toulouse Cedex 4, France.

出版信息

J Environ Manage. 2010 Dec;91(12):2432-9. doi: 10.1016/j.jenvman.2010.06.008. Epub 2010 Aug 1.

Abstract

This paper describes a preliminary evaluation of the performance of carbonaceous materials prepared from sewage sludges (SBCMs) in a hybrid water treatment process based on adsorption and catalytic wet air oxidation; phenol was used as the model pollutant. Three different sewage sludges were treated by either carbonisation or steam activation, and the physico-chemical properties of the resultant carbonaceous materials (e.g. hardness, BET surface area, ash and elemental content, surface chemistry) were evaluated and compared with a commercial reference activated carbon (PICA F22). The adsorption capacity for phenol of the SBCMs was greater than suggested by their BET surface area, but less than F22; a steam activated, dewatered raw sludge (SA_DRAW) had the greatest adsorption capacity of the SBCMs in the investigated range of concentrations (<0.05 mol L(-1)). In batch oxidation tests, the SBCMs demonstrated catalytic behaviour arising from their substrate adsorptivity and metal content. Recycling of SA_DRAW in successive oxidations led to significant structural attrition and a hardened SA_DRAW was evaluated, but found to be unsatisfactory during the oxidation step. In a combined adsorption-oxidation sequence, both the PICA carbon and a selected SBCM showed deterioration in phenol adsorption after oxidative regeneration, but a steady state performance was reached after 2 or 3 cycles.

摘要

本文初步评价了基于吸附和催化湿式氧化的混合水处理工艺中,由污水污泥(SBCM)制备的碳质材料的性能;以苯酚为模型污染物。采用碳化或蒸汽活化法处理三种不同的污水污泥,评估并比较了所得碳质材料的物理化学性质(如硬度、BET 比表面积、灰分和元素含量、表面化学)与商业参考活性炭(PICA F22)。SBCM 对苯酚的吸附容量大于其 BET 比表面积所建议的值,但小于 F22;在所研究的浓度范围内(<0.05 mol L(-1)),蒸汽活化、脱水原污泥(SA_DRAW)的吸附容量最大。在批量氧化试验中,SBCM 表现出源于其底物吸附性和金属含量的催化行为。在连续氧化中回收 SA_DRAW 导致结构严重磨损,对硬化的 SA_DRAW 进行了评估,但在氧化步骤中表现不佳。在吸附-氧化的组合序列中,PICA 碳和选定的 SBCM 在氧化再生后对苯酚吸附的性能均有所下降,但经过 2 或 3 个循环后达到稳定状态。

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