Mohan S, Sreelakshmi G
Environmental and Water Resources Engineering Division, Department of Civil Engineering, Indian Institute of Technology Madras, Chennai, India.
J Hazard Mater. 2008 May 1;153(1-2):75-82. doi: 10.1016/j.jhazmat.2007.08.021. Epub 2007 Aug 12.
This paper reports the results of the study on the performance of low-cost adsorbent such as raw rice husk (RRH) and phosphate treated rice husk (PRH) in removing the heavy metals such as lead, copper, zinc and manganese. The adsorbent materials adopted were found to be an efficient media for the removal of heavy metals in continuous mode using fixed bed column. The column studies were conducted with 10 mg/l of individual and combined metal solution with a flow rate of 20 ml/min with different bed depths such as 10, 20 and 30 cm. The breakthrough time was also found to increase from 1.3 to 3.5 h for Pb(II), 4.0 to 9.0 h for Cu(II), 12.5 to 25.4h for Zn(II) and 3.0 to 11.3 h for Mn(II) with increase in bed height from 10 to 30 cm for PRH. Different column design parameters like depth of exchange zone, adsorption rate, adsorption capacity, etc. were calculated. It is found that the adsorption capacity and adsorption rate constant were increased and the minimum column bed depth required was reduced when the rice husk is treated with phosphate, when compared with that of RRH.
本文报道了对低成本吸附剂(如原稻壳(RRH)和磷酸盐处理稻壳(PRH))去除铅、铜、锌和锰等重金属性能的研究结果。所采用的吸附材料被发现是一种在固定床柱连续模式下去除重金属的有效介质。柱实验使用10 mg/l的单一金属溶液和混合金属溶液,流速为20 ml/min,床层深度分别为10、20和30 cm。对于PRH,随着床层高度从10 cm增加到30 cm,Pb(II)的穿透时间从1.3小时增加到3.5小时,Cu(II)从4.0小时增加到9.0小时,Zn(II)从12.5小时增加到25.4小时,Mn(II)从3.0小时增加到11.3小时。计算了不同的柱设计参数,如交换区深度、吸附速率、吸附容量等。结果发现,与RRH相比,用磷酸盐处理稻壳时,吸附容量和吸附速率常数增加,所需的最小柱床层深度减小。