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新型磺酰脲类除草剂在酸性和碱性土壤中的可控降解研究

Research on Controllable Degradation of Novel Sulfonylurea Herbicides in Acidic and Alkaline Soils.

作者信息

Zhou Shaa, Hua Xue-Wen, Wei Wei, Gu Yu-Cheng, Liu Xiao-Qing, Chen Jing-Huo, Chen Ming-Gui, Xie Yong-Tao, Zhou Sha, Meng Xiang-De, Zhang Yan, Li Yong-Hong, Wang Bao-Lei, Song Hai-Bin, Li Zheng-Ming

机构信息

State Key Laboratory of Elemento-Organic Chemistry, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin), College of Chemistry, Nankai University , Tianjin 300071, China.

College of Agriculture, Liaocheng University , Liaocheng 252000, China.

出版信息

J Agric Food Chem. 2017 Sep 6;65(35):7661-7668. doi: 10.1021/acs.jafc.7b03029. Epub 2017 Aug 22.

Abstract

The degradation issue of sulfonylurea (SU) has become one of the biggest challenges that hamper the development and application of this class of herbicides, especially in the alkaline soils of northern China. On the basis of the previous discovery that some substituents on the fifth position of the benzene ring in Chlorsulfuron could hasten its degradation rate, apparently in acidic soil, this work on Metsulfuron-methyl showed more convincing results. Two novel compounds (I-1 and I-2) were designed and synthesized, and they still retained potent herbicidal activity in tests against both dicotyledons and monocotyledons. The half-lives of degradation (DT) assay revealed that I-1 showed an accelerated degradation rate in acidic soil (pH 5.59). Moreover, we delighted to find that the degradation rate of I-1 was 9-10-fold faster than that of Metsulfuron-methyl and Chlorsulfuron when in alkaline soil (pH 8.46), which has more practical value. This research suggests that a modified structure that has potent herbicidal activity as well as accelerated degradation rate could be realized and this approach may provide a way to improve the residue problem of SUs in farmlands with alkaline soil.

摘要

磺酰脲类(SU)除草剂的降解问题已成为阻碍这类除草剂发展和应用的最大挑战之一,在中国北方的碱性土壤中尤为突出。基于之前的发现,即氯磺隆苯环第五位上的一些取代基能加快其降解速率,显然是在酸性土壤中,本研究针对甲基磺草酮得出了更具说服力的结果。设计并合成了两种新型化合物(I-1和I-2),它们在针对双子叶植物和单子叶植物的测试中仍保留了强大的除草活性。降解半衰期(DT)测定表明,I-1在酸性土壤(pH 5.59)中显示出加速降解速率。此外,我们高兴地发现,在碱性土壤(pH 8.46)中,I-1的降解速率比甲基磺草酮和氯磺隆快9至10倍,这具有更高的实用价值。这项研究表明,可以实现一种具有强大除草活性且降解速率加快的改良结构,这种方法可能为解决碱性土壤农田中磺酰脲类除草剂的残留问题提供一条途径。

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