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首页> 外文期刊>Microporous and mesoporous materials: The offical journal of the International Zeolite Association >Upgrading of sewage sludge by demineralization and physical activation with CO2: Application for methylene blue and phenol removal
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Upgrading of sewage sludge by demineralization and physical activation with CO2: Application for methylene blue and phenol removal

机译:用二氧化碳渗透和物理活化升级污水污泥:亚甲基蓝与苯酚去除的应用

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Carbon-based adsorbents were prepared by the physical activation of sewage sludge with CO2 through an integrated method (without a precarbonization stage). The activation was conducted at different temperatures (600-1000 degrees C), and the effect of the acid washing, performed either before or after the physical activation, was investigated. From the standpoint of textural properties, the optimum activation temperature is between 800 and 900 degrees C; higher temperatures cause an important reduction in porosity. The acid post-washing significantly increases the porosity in the whole pore size range due to the removal of the inorganic fraction and pore unblocking. Both the activation temperature and the acid treatment strongly affect the surface chemistry. The uptake of methylene blue correlates significantly with textural properties (such as BET surface area), but also with surface chemistry (carbonyl groups). The combination of a moderate activation temperature (600 degrees C) and acid post-washing results in a cost-effective material with a suitable methylene blue removal ability. On the contrary, the adsorption of phenol, favoured by materials with a high degree of microporosity, is maximized by acid pretreatment prior to activation at 900 degrees C. (C) 2017 Elsevier Inc. All rights reserved.
机译:通过综合方法(没有留下级化阶段,通过CO 2的污水污泥的物理活化来制备碳基吸附剂。研究在不同温度(600-1000℃)处进行活化,并研究了在物理活化之前或之后进行的酸洗涤的效果。从纹理性质的角度来看,最佳活化温度为800至900摄氏度;较高的温度导致孔隙率的重要降低。由于去除无机馏分和孔未阻止,酸性洗涤后洗涤显着增加了整个孔径范围内的孔隙率。激活温度和酸处理都强烈影响表面化学。亚甲基蓝的吸收显着与纹理性质(如BET表面积)相关,但也具有表面化学(羰基)。适度的激活温度(600℃)和酸性洗涤后的组合在具有合适的亚甲基蓝色去除能力的成本效率的材料中。相反,苯酚的吸附,通过高度微孔的材料青睐,通过酸预处理最大化在900摄氏度之前的酸预处理。(c)2017 Elsevier Inc.保留所有权利。

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