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利用桉树皮去除工业废料中的铬

Removal of chromium from industrial waste by using eucalyptus bark.

作者信息

Sarin Vikrant, Pant K K

机构信息

Department of Chemical Engineering, Indian Institute of Technology, Hauz Khas, New Delhi 110 016, India.

出版信息

Bioresour Technol. 2006 Jan;97(1):15-20. doi: 10.1016/j.biortech.2005.02.010. Epub 2005 Apr 7.

Abstract

Several low cost biomaterials such as baggase, charred rice husk, activated charcoal and eucalyptus bark (EB) were tested for removal of chromium. All the experiments were carried out in batch process with laboratory prepared samples and wastewater obtained from metal finishing section of auto ancillary unit. The adsorbent, which had highest chromium(VI) removal was EB. Influences of chromium concentration, pH, contact time on removal of chromium from effluent was investigated. The adsorption data were fitted well by Freundlich isotherm. The kinetic data were analyzed by using a first order Lagergren kinetic. The Gibbs free energy was obtained for each system and was found to be -1.879 kJ mol(-1) for Cr(VI) and -3.885 kJ mol(-1) for Cr(III) for removal from industrial effluent. The negative value of deltaG0 indicates the feasibility and spontaneous nature of adsorption. The maximum removal of Cr(VI) was observed at pH 2. Adsorption capacity was found to be 45 mg/g of adsorbent, at Cr(VI) concentration in the effluent being 250 mg/l. A waste water sample containing Cr(VI), Cr(III), Mg, and Ca obtained from industrial unit showed satisfactory removal of chromium. The results indicate that eucalyptus bark can be used for the removal of chromium.

摘要

测试了几种低成本生物材料,如甘蔗渣、稻壳炭、活性炭和桉树皮(EB)对铬的去除效果。所有实验均采用分批处理方式,使用实验室制备的样品和从汽车零部件厂金属加工车间获取的废水。去除铬(VI)效果最佳的吸附剂是桉树皮。研究了铬浓度、pH值、接触时间对废水中铬去除的影响。吸附数据符合Freundlich等温线。动力学数据采用一级Lagergren动力学进行分析。获得了每个系统的吉布斯自由能,从工业废水中去除铬(VI)时为-1.879 kJ mol(-1),去除铬(III)时为-3.885 kJ mol(-1)。吉布斯自由能的负值表明吸附具有可行性和自发性。在pH值为2时观察到铬(VI)的最大去除量。当废水中铬(VI)浓度为250 mg/l时,吸附容量为45 mg/g吸附剂。从工业单位获得的含有铬(VI)、铬(III)、镁和钙的废水样品显示出对铬的去除效果良好。结果表明桉树皮可用于去除铬。

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