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Phytoremediation of lowland soil contaminated with a formulated mixture of Imazethapyr and Imazapic1

机译:修复了由Imazethapyr和Imazapic混合配制的低地土壤的植物修复1

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The use of plants to decontaminate water and soil contaminated with both organic and inorganic pollutants is a promising technology for sustainable agriculture. The aim of this work was to evaluate the efficiency of plant species in the remediation of formulated mixtures of imazethapyr and imazapic, using the irrigated rice cultivar IRGA 417 as bioindicator. The treatments consisted of the combination of 13 plant species with seven rates of a formulated mixture of imazethapyr and Imazapic (75+25 g e.a. L-1 respectively): 0, 200, 300, 400, 500, 1000 and 4000 mL ha-1. To evaluate the potential for phytoremediation in these species, symptoms of injury and plant height were measured in rice plants at 7, 14, 21 and 28 days after emergence and shoot dry weight at 28 days after emergence. Glycine max, Lolium multiflorum and Lotus corniculatus are potentially promising species in the phytoremediation of soils contaminated with the herbicide imazethapyr and imazapic (up to 4000 mL ha-1), due to being more adapted to hydromorphic environments, which is a feature found in soils cultivated with irrigated rice. Crotalaria juncea, Canavalia ensiformis, Stizolobium aterrimum, Vicia sativa, Raphanus sativus and Triticum aestivum are species capable of the phytoremediation of soils contaminated with imazethapyr + imazapic, however the occurrence of anoxia in hydromorphic soils reduce the establishment and development of these plants.
机译:使用植物对被有机和无机污染物污染的水和土壤进行净化是可持续农业的一项有前途的技术。这项工作的目的是使用灌溉的水稻品种IRGA 417作为生物指示剂,评估植物物种在修复咪唑乙草胺和伊马佐比克混合物时的效率。处理方法包括将13种植物与7种比例的咪唑乙烟草和依马西平的配方混合物(分别为75 + 25 g ea L-1)组成:0、200、300、400、500、1000和4000 mL ha-1 。为了评估这些物种中植物修复的潜力,在出苗后第7、14、21和28天测量了水稻植株的损伤症状和株高,并在出苗后28天测量了茎干重量。大豆,多花黑麦草和山茱Lotus是潜在的有前途的物种,在植物修复中被除草剂咪草乙烟和依马替比(最高4000 mL ha-1)污染,这是因为它们更适应于水溶环境,这是土壤中的一个特征用灌溉大米栽培。猪屎豆,Canavalia ensiformis,Stizolobium aterrimum,豌豆,蚕豆,Raphanus sativus和Triticum aestivum都是能够对受咪唑乙草胺+依马替比克污染的土壤进行植物修复的物种,但是在水形态土壤中缺氧的发生会降低这些植物的形成和发育。

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