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DECHLORINATION OF DDT MEDIATED BY BIMETALLIC SYSTEMS

机译:双金属系统介导的DDT脱氯

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DDT dechlorination efficiencies of bimetallic systems, namely, Mg~o-Zn, Mg~o-Ni, and Mg~o-Co were compared. All the systems transformed DDT with efficiencies exceeding 98% within 24 h. Based on GC-ECD and GC-MS analyses a step-wise and sequential dechlorination of DDT by Mg~o-Zn system in 1:1 water acetone phase via 1,1 dichloro, 2,2- bis (p-chlorophenyl) ethane (DDD), 1, chloro, 2,2 bis (p-chlorophenyl) ethane (DDMS) to 2,2 bis (p-chlorophenyl) ethane (DDNS) was noted. Accumulation of DDNS as the end product indicates that all three alkyl chlorine atoms of DDT were removed by Mg~o-Zn system. Mg~o-Co also showed almost complete removal of DDT in water-acetone phase that was accompanied by the accumulation of DDD followed by a decline in its concentration as a function of time. On the other hand, Mg~o-Ni system exhibited inefficient removal of DDT in water-acetone phase. In pure acetone phase, Mg~o-Co system and Mg~o-Ni dechlorinated DDT with the accumulation of DDE and DDMU as end products following 24 h of reaction. The presence of surfactants or organic solvents is required to ensure solubilization of DDT. Also addition of acid is essential to provide sufficient protons for efficient reductive dechlorination via hydrogenation. Advantage of Mg~o based dehalogenation reactions is that they occur at high rates under ambient temperatures, and pressure and oxygen need not be excluded in the reaction phase. Our studies revealed that Mg~o-Zn is the best option among all tested systems due to its high reactivity and low cost, and may be used to treat DDT contaminated water.
机译:比较了双金属体系Mg〜o-Zn,Mg〜o-Ni和Mg〜o-Co的DDT脱氯效率。所有系统在24小时内转换DDT的效率超过98%。基于GC-ECD和GC-MS分析了Mg〜o-Zn体系在1:1水丙酮相中经由1,1,2-二氯,2,2-双(对-氯苯基)乙烷对DDT进行的逐步和连续脱氯注意到(DDD),1,氯,2,2双(对氯苯基)乙烷(DDMS)至2,2双(对氯苯基)乙烷(DDNS)。最终产物DDNS的积累表明DDT的所有三个烷基氯原子都被Mg-o-Zn系统去除。 Mg-o-Co还显示了在水-丙酮相中几乎完全去除了DDT,并伴随着DDD的积累,其浓度随时间下降。另一方面,Mg-o-Ni体系在水-丙酮相中的滴滴涕去除效率不高。在纯丙酮相中,反应24小时后,Mg〜o-Co体系和Mg〜o-Ni脱氯的DDT最终产物DDE和DDMU的积累。需要表面活性剂或有机溶剂的存在以确保滴滴涕的增溶。同样,添加酸对于提供足够的质子以通过氢化有效地进行还原性脱氯也是必不可少的。基于镁的脱卤反应的优点是它们在环境温度下以高速率发生,并且在反应阶段中不需要排除压力和氧气。我们的研究表明,Mg〜o-Zn由于其高反应性和低成本而成为所有测试系统中的最佳选择,可用于处理DDT污染的水。

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