首页> 外文期刊>Journal of Environmental Science and Health. A >THE USAGE OF DRIED ACTIVATED SLUDGE AND FLY ASH WASTES IN PHENOL BIOSORPTION/ADSORPTION: COMPARISON WITH GRANULAR ACTIVATED CARBON
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THE USAGE OF DRIED ACTIVATED SLUDGE AND FLY ASH WASTES IN PHENOL BIOSORPTION/ADSORPTION: COMPARISON WITH GRANULAR ACTIVATED CARBON

机译:干式活性污泥和粉煤灰废物在苯酚生物吸附/吸附中的用途:与颗粒状活性炭的比较

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摘要

The potential of using dried activated sludge and fly ash as a substitute for activated carbon was examined in this study. The pollutant binding rate and capacity of each biosorbent/adsorbent for the removal of phenol was shown as a function of initial pH and initial phenol concentration. The maximum phenol loading capacity of each sorbent was found to be 91.0 mg/g for dried activated sludge, 27.9 mg/g for fly ash and 108.0 mg/g for granular activated carbon at 100 mg/1 initial phenol concentration. The phenol sorption data when applied to the Freundlich, Langmuir and Redilch-Peterson isotherm equations, showed better correlation to the Freundlich model for all the sorbents, showed better correlation to the Freundlich model for all the sorbents over the entire concentration range. It was suggested that both the fly ash and dried activated sludge sorbents can be used successfully for phenol removal as an alternative to commercial activated carbon.
机译:在这项研究中,研究了使用干燥的活性污泥和粉煤灰替代活性炭的潜力。污染物结合率和每种生物吸附剂/吸附剂去除苯酚的能力显示为初始pH和初始酚浓度的函数。发现在100 mg / 1的初始苯酚浓度下,干燥的活性污泥的最大吸附量为91.0 mg / g,粉煤灰为27.9 mg / g,颗粒状活性炭为108.0 mg / g。当将苯酚吸附数据应用于Freundlich,Langmuir和Redilch-Peterson等温方程时,所有吸附剂均与Freundlich模型具有更好的相关性,在整个浓度范围内所有吸附剂均与Freundlich模型具有更好的相关性。有人提出,粉煤灰和干燥的活性污泥吸附剂都可以成功地用于苯酚的去除,作为商业活性炭的替代品。

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