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Removal of DDT from aqueous solutions using mesoporous silica materials

机译:使用介孔二氧化硅材料从水溶液中去除DDT

摘要

BACKGROUND: There are few reports about adsorbents for the effective removal of large-molecule pesticides such as DDT (1,1,1-trichloro-2,2' bis(p-chlorophenyl)ethane). Some mesoporous silica materials and their modified derivatives might serve as good adsorbents for these large organic molecules because of their large pore diameter and special pore structures. In this work, the adsorption processes of DDT in aqueous solutions were investigated using different mesoporous silica materials, including HMS, MCM-41, SBA-15 and MCM-48. RESULTS: All these materials exhibit efficient DDT removal, and the adsorption is a rapid process with over 50% of DDT removed within approximately 2 h. The efficiency of DDT removal is influenced by the adsorbent characteristics, such as pore volume, pore diameter, connectivity between pore channels and surface OH groups. The influences of water/acetone ratio and initial DDT concentration in solution were also explored. It was found that with enhancing DDT solubility, the addition of acetone in the reaction solution had no evident impact on DDT adsorption efficiency. Increasing the initial concentration of DDT resulted in a decrease of DDT adsorption efficiency. The adsorption kinetics of DDT on mesoporous silica material is shown to be pseudo-second-order. After thermal treatment at a relatively low temperature of 450 degrees C, the adsorbed DDT was completely decomposed and the adsorbents, except MCM-41, were regenerated well. CONCLUSION: The results demonstrate the potential of a simple and efficient new approach for the removal of OCPs (organochlorine pesticides), especially large OCP molecules from surface water or groundwater. (c) 2008 Society of Chemical Industry
机译:背景:关于有效去除大分子农药如DDT(1,1,1-三氯-2,2'双(对氯苯基)乙烷)的吸附剂的报道很少。某些介孔二氧化硅材料及其改性衍生物可能因其大孔径和特殊的孔结构而成为这些大有机分子的良好吸附剂。在这项工作中,使用不同的介孔二氧化硅材料,包括HMS,MCM-41,SBA-15和MCM-48,研究了滴滴涕在水溶液中的吸附过程。结果:所有这些材料均显示出有效的DDT去除,并且吸附是一个快速过程,在大约2小时内去除了50%以上的DDT。去除滴滴涕的效率受吸附剂特性的影响,例如孔体积,孔径,孔通道与表面OH基团之间的连通性。还探讨了水/丙酮比例和溶液中滴滴涕初始浓度的影响。发现随着DDT溶解度的增加,在反应溶液中添加丙酮对DDT的吸附效率没有明显的影响。增加DDT的初始浓度会导致DDT吸附效率降低。 DDT在介孔二氧化硅材料上的吸附动力学显示为伪二级。在450℃的较低温度下进行热处理后,吸附的滴滴涕完全分解,除MCM-41以外的吸附剂充分再生。结论:结果表明,一种简单有效的新方法可用于去除地表水或地下水中的OCP(有机氯农药),特别是大的OCP分子。 (c)2008年化学工业学会

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