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首页> 外文期刊>Applied Surface Science >The impact of surface chemistry of carbon xerogels on their performance in phenol removal from wastewaters via combined adsorption-catalytic process
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The impact of surface chemistry of carbon xerogels on their performance in phenol removal from wastewaters via combined adsorption-catalytic process

机译:碳干凝胶的表面化学对其通过联合吸附-催化工艺从废水中去除苯酚的性能的影响

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The present work explores the influence of the surface chemistry of carbon xerogels (CXs) on their ability to remove phenol from aqueous solutions under mild reaction conditions. The surface of the CXs was functionalized introducing acidic, basic or a combination of weak acid/basic active centers via: (A) hydrothermal method with diluted nitric acid, (B) gas treatments with diluted ammonia and then oxygen, and (C) thermal modification. Obtained CXs with varied acidic-basic surface properties were used for removal of phenol via adsorption or adsorption combined with catalytic we peroxide oxidation reaction. It was found that both sorption and catalytic properties of CXs depended strongly on the chemical structure of their surfaces. The adsorption of phenol was clearly favored on the basic surfaces (mainly in the presence of quaternary nitrogen) and hindered in the presence of carboxylic groups. Similarly, the activity of these materials in CWPO was affected not only by the total acidity/basicity of the surface of these carbocatalysts, but also by the type of N- and O-type groups present in these samples. Overall, the removal of over 60% of phenol was achieved in the first hour of the process with CX containing quaternary nitrogen and neutral O-groups on the surface.
机译:本工作探讨了碳干凝胶(CXs)的表面化学对其在温和的反应条件下从水溶液中去除苯酚的能力的影响。通过以下方式对CX的表面进行功能化:引入酸性,碱性或弱酸/碱性活性中心的组合:(A)用稀硝酸进行水热法;(B)先用稀氨水然后再进行氧气的气体处理;以及(C)热法修改。获得的具有不同的酸碱性表面性质的CX通过吸附或吸附结合催化过氧化物氧化反应用于去除苯酚。发现CXs的吸附和催化性能都强烈取决于其表面的化学结构。显然,在基本表面上(主要是在季氮存在下)苯酚的吸附是有利的,而在羧基的存在下阻碍了苯酚的吸附。同样,这些材料在CWPO中的活性不仅受这些碳催化剂表面的总酸度/碱度的影响,而且还受到这些样品中存在的N型和O型基团类型的影响。总体而言,在该过程的第一小时内,通过CX在表面上包含季氮和中性O-基团,可以去除60%以上的苯酚。

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