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Organohydrotalcites As Novel Supports For The Slow Release Of The Herbicide Terbuthylazine

机译:有机水滑石作为除草剂特丁噻嗪缓释的新载体

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The design of slow release formulations of pesticides is the subject of increasing attention with the aim of prolonging the biological efficacy of pesticides and attenuating their adverse environmental effects. In this work, organohydrotalcites (OHTs) are proposed as novel supports for the slow release of terbuthylazine, a herbicide widely applied to agricultural land. Two different OHTs were prepared by intercalating dodecylsulfate (DDS) and sebacate (SEB) anions into Mg-Al hydrotalcite (HT). Adsorption experiments revealed that terbuthylazine was well adsorbed by both HT-DDS and HT-SEB, whereas terbuthylazine adsorption by unmodified (inorganic) Mg-Al HT was negligible. Different terbuthylazine-OHT complexes were prepared by mixing the herbicide with the OHTs, using different solvents to favor the adsorbent-herbicide interaction. The ability of the herbicide-OHT complexes to slow the release of the herbicide into water and to reduce the herbicide leaching losses in soil was evaluated through batch release and column leaching tests. Compared to a standard commercial formulation of the herbicide, the complexes prepared from both HT-DDS and HT-SEB retarded the release of terbuthylazine into aqueous solution and reduced the herbicide leaching through soil columns. These results indicated promising usefulness of OHTs as suitable supports for the design of pesticide slow release formulations with the aim of reducing the adverse effects derived from rapid transport losses of the chemical once applied to soils.
机译:为了延长农药的生物功效并减轻其不利的环境影响,农药缓释制剂的设计受到越来越多的关注。在这项工作中,有机水滑石(OHTs)被提出作为特丁嗪的缓慢释放的新载体,特丁嗪是一种广泛应用于农业土地的除草剂。通过将十二烷基硫酸盐(DDS)和癸二酸根(SEB)阴离子插入Mg-Al水滑石(HT)中来制备两种不同的OHT。吸附实验表明,丁苯噻嗪被HT-DDS和HT-SEB很好地吸附,而未修饰的(无机)Mg-Al HT对丁苯噻嗪的吸附可以忽略不计。通过使用不同的溶剂促进除草剂与除草剂的相互作用,将除草剂与OHTs混合,制得不同的叔丁嗪-OHT复合物。通过分批释放和柱浸试验评估了除草剂-OHT配合物减缓除草剂向水中的释放以及减少土壤中除草剂淋失损失的能力。与标准的除草剂商业配方相比,由HT-DDS和HT-SEB制备的复合物可抑制叔丁嗪向水溶液中的释放,并减少了除草剂通过土壤柱的淋失。这些结果表明,OHT作为设计农药缓释制剂的合适载体具有广阔的前景,其目的是减少农药一旦施用于土壤后因其快速运输损失而产生的不利影响。

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