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以橄榄饼为有机改良剂作为改变土壤中磺酰脲类除草剂降解的一种策略。

Organic amendments from olive cake as a strategy to modify the degradation of sulfonylurea herbicides in soil.

作者信息

Delgado-Moreno Laura, Peña Aranzazu

机构信息

Estación Experimental del Zaidín (CSIC), Profesor Albareda 1, 18008 Granada, Spain.

出版信息

J Agric Food Chem. 2007 Jul 25;55(15):6213-8. doi: 10.1021/jf0708342. Epub 2007 Jul 4.

Abstract

Amending soil with products rich in organic matter, such as raw olive cake or alperujo and its compost and vermicompost, could be a simple bioremediation strategy for soil pollutants such as pesticides. To investigate this hypothesis in relation to sulfonylurea herbicides, these amendments were applied to a Mediterranean agricultural soil at rates 4 times higher than agronomical dosage to stimulate biodegradation of chlorsulfuron, prosulfuron, and bensulfuron, added in a mixture to the soils. Degradation studies were conducted in microbially active and sterile soils to check the importance of biological and chemical degradation of sulfonylurea herbicides in nonamended and amended soil. The addition of alperujo stimulated soil microbial activity, as determined by dehydrogenase activity measurements, but it did not enhance the degradation of the sulfonylurea herbicides. In contrast, compost and vermicompost slightly favored the biological degradation of bensulfuron during the first week of incubation. Chlorsulfuron and prosulfuron were mainly degraded by chemical pathways in all substrates, which is probably due to a competitive or inhibitory phenomenon observed between chlorsulfuron and bensulfuron. The first-order kinetic equation satisfactorily explained the experimental data for chlorsulfuron and prosulfuron; however, a biphasic model, such as that proposed by Hoerl, better predicted the results obtained for bensulfuron.

摘要

用富含有机物的产品改良土壤,如粗橄榄饼或橄榄渣及其堆肥和蚯蚓堆肥,可能是一种针对土壤污染物(如农药)的简单生物修复策略。为了研究与磺酰脲类除草剂相关的这一假设,将这些改良剂以高于农艺用量4倍的比例施用于地中海农业土壤,以刺激添加到土壤中的氯磺隆、丙酯磺隆和苄嘧磺隆的生物降解。在微生物活性土壤和无菌土壤中进行降解研究,以检查磺酰脲类除草剂在未改良和改良土壤中的生物降解和化学降解的重要性。通过脱氢酶活性测量确定,添加橄榄渣刺激了土壤微生物活性,但并未增强磺酰脲类除草剂的降解。相比之下,堆肥和蚯蚓堆肥在培养的第一周略微有利于苄嘧磺隆的生物降解。氯磺隆和丙酯磺隆在所有底物中主要通过化学途径降解,这可能是由于氯磺隆和苄嘧磺隆之间观察到的竞争或抑制现象。一级动力学方程令人满意地解释了氯磺隆和丙酯磺隆的实验数据;然而,双相模型,如Hoerl提出的模型,能更好地预测苄嘧磺隆的实验结果。

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