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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Effect of activation type on bioregeneration of various activated carbons loaded with phenol
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Effect of activation type on bioregeneration of various activated carbons loaded with phenol

机译:活化方式对各种含酚活性炭生物再生的影响

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摘要

Thermally and chemically activated powdered carbons (PAC), and their granular countertypes (GAC) with similar physical characteristics were used to investigate the extent of bioregeneration in laboratory-scale activated sludge reactors. Bioregeneration of activated carbon was determined by measurement of bulk phenol concentrations and loadings remaining on activated carbon. It was also followed by oxygen uptake rate measurements. For the carbons used in this study, bioregeneration of chemically activated carbons was found to be higher than thermally activated ones. This was in accordance with their higher reversibility of adsorption and showed that bioregeneration was controlled by the reversibility of adsorption. Oxidative polymerization of phenol was a plausible explanation for low bioregeneration of thermally activated carbons. However, bioregeneration efficiencies of thermally activated carbons were much higher than their total desorbabilities. This unexpectedly high bioregeneration indicated that some exoenzymatic reactions had occurred. These results suggest that carbon activation type is of crucial importance for bioregeneration. PAC and GAC countertypes showed comparable bioregeneration efficiencies indicating that carbon size was not an effective factor. The environmental scanning electron microscopy (ESEM) studies showed that microorganisms were attached both on the external surface and interval cavities of activated carbon particles. (c) 2006 Society of Chemical Industry.
机译:使用热和化学活性粉状碳(PAC)及其具有相似物理特性的粒状对型(GAC)来研究实验室规模的活性污泥反应器中生物再生的程度。活性炭的生物再生通过测量总苯酚浓度和活性炭上剩余的负载量来确定。随后还进行了氧气吸收率的测量。对于本研究中使用的碳,发现化学活化碳的生物再生性要高于热活化碳。这符合它们较高的吸附可逆性,并表明生物再生受吸附的可逆性控制。苯酚的氧化聚合是热活化碳生物再生低的合理解释。但是,热活化碳的生物再生效率远高于其总的脱附能力。这种出乎意料的高生物再生表明已经发生了一些外酶反应。这些结果表明碳活化类型对于生物再生至关重要。 PAC和GAC对型显示出可比的生物再生效率,表明碳大小不是有效因素。环境扫描电子显微镜(ESEM)研究表明,微生物附着在活性炭颗粒的外表面和间隔腔上。 (c)2006年化学工业协会。

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