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制造条件对牧野竹炭吸附重金属离子能力的影响。

Effects of manufacturing conditions on the adsorption capacity of heavy metal ions by Makino bamboo charcoal.

作者信息

Wang Song-Yung, Tsai Ming-Hsiu, Lo Sheng-Fong, Tsai Ming-Jer

机构信息

School of Forestry and Resource Conservation, College of Bio-Resource and Agriculture, National Taiwan University, No.1, Sec. 4, Roosevelt Road, Taipei 10617, Taiwan, ROC.

出版信息

Bioresour Technol. 2008 Oct;99(15):7027-33. doi: 10.1016/j.biortech.2008.01.014. Epub 2008 Feb 20.

Abstract

The objective of this study was to investigate the effects of manufacturing conditions on the adsorption capacity of heavy metal ions by Makino bamboo charcoal. Results show that the specific surface area and iodine number of bamboo charcoal activated at 900 degrees C were larger than those of bamboo charcoal activated at 800 degrees C. The specific surface area of bamboo charcoal activated at 800 degrees C by carbon dioxide was larger than that of charcoal activated by steam. However, a contrary result was observed when the activation temperature was 900 degrees C. The total volume and proportion of micropores in bamboo charcoal activated by carbon dioxide were greater than those in the other sample groups. However, the total volume and bulk volume of meso- and macropores, and average pore diameter for bamboo charcoal activated by steam were greater than those in the other sample groups. Using 5g bamboo charcoal (10-30 mesh) with a soaking time of 24h, a better adsorption effect on Pb2+ (100%), Cu2+ (100%), and Cr3+ (88-98%) was found. However, medium frequencies were observed for the adsorption of Cd2+ (40-80%) and Ni2+ (20-60%). Very limited adsorption of As5+ was detected in this study. For the same charcoal grain sizes, the adsorption capacity of 0.5g of charcoal was better than that of 0.1g. The improved adsorption effect of the sample group activated by steam was compared with the sample group activated by carbon dioxide.

摘要

本研究的目的是探究制造条件对真竹活性炭吸附重金属离子能力的影响。结果表明,900℃活化的竹炭比表面积和碘值大于800℃活化的竹炭。800℃二氧化碳活化的竹炭比表面积大于水蒸气活化的竹炭。然而,活化温度为900℃时观察到相反的结果。二氧化碳活化的竹炭中微孔总体积和比例大于其他样品组。然而,水蒸气活化的竹炭中、大孔总体积和大孔体积以及平均孔径大于其他样品组。使用5g(10 - 30目)竹炭,浸泡时间为24h,发现对Pb2+(100%)、Cu2+(100%)和Cr3+(88 - 98%)有较好的吸附效果。然而,对Cd2+(40 - 80%)和Ni2+(20 - 60%)的吸附出现中等频率。本研究中检测到As5+的吸附非常有限。对于相同的炭粒度,0.5g炭的吸附能力优于0.1g。比较了水蒸气活化样品组和二氧化碳活化样品组的吸附效果改善情况。

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