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首页> 外文期刊>Journal of Agricultural Chemistry and Environment >Spatial Availability of Nitrogen and Pesticides in the Surface Layers of Agricultural Soils of Tropical Hydrosystems in the Wet Season: Case of the Béré Watershed in Côte d’Ivoire (West Africa)
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Spatial Availability of Nitrogen and Pesticides in the Surface Layers of Agricultural Soils of Tropical Hydrosystems in the Wet Season: Case of the Béré Watershed in Côte d’Ivoire (West Africa)

机译:在潮湿季节的热带水系统的地表层中氮气和农药的空间可用性:Bé ré 在C& amp; ocirc; te d'ivoire(西非)

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The objective of this study was to assess the contribution of the spatial organization of cropping systems and the physicochemical properties of surface layers of the agricultural zones soils in tropical hydrosystems to the spatial availability of nitrogen and pesticides during the wet season, such as the Béré watershed (BW) in C ? te d’Ivoire. For this purpose, after mapping the spatial distribution of the BW cropping systems based on the likelihood classification methodology of satellite images of the study area, 27 samples from the 0 - 20 cm horizon of the soil surface layers of the agricultural areas were taken during the wet and agricultural season of the year 2016. The Kjeldahl method has been used to evaluate the total nitrogen concentration and high-performance liquid chromatography (HPLC) chain made it possible for the analysis of pesticide residues in the soil solutions. Geostatistical analysis and processing of spatial data and physicochemical and agrochemical soil parameters revealed that two major agricultural areas stand out in the BW, namely the Béré upstream watershed (BUW) dominated at 32.65% by annual croppings (maize, cotton, rainfed or lowland rice, market gardening, etc.) and the Béré downstream watershed (BDW) by large areas of perennial croppings (cashew nuts, cocoa, etc.), i.e. 21.47%. Agricultural soils in BW are usually of the moderately desaturated ferralitic type with a low acid pH and a quite strong temperature, such as those of tropical soils’ characteristics. However, agricultural soils in the BUW are characterized by higher proportions of sand and coarse sand. The parameters such as total porosity, cation exchange capacity, clay, organic matter, silt, fine silt, coarse silt, and potassium ions, are higher in the soils of the agricultural area of the BDW. Moreover, soils in the agricultural areas of the BUW are less rich in total nitrogen (0.84 g · kg~(-1)) in contrast to those of the BDW (1.2 g · kg~(-1)). On the other hand, the median concentrations of total pesticides remain very high in the BUW (193.80 μg · kg~(-1)) in front of those of the BDW (94.81 μg · kg~(-1)). In addition, the biological family of herbicides was the most notable in BW. The chemical families of triazines (100% detection; 79.37 μg · kg~(-1)) are the most important in the agricultural area of the BUW with the very significant presence of active molecules of pesticides such as simazine (92.86% detection; 13.17 μg · kg~(-1)). However, in the BDW, urea substitute (100% detection; 44.02 μg · kg~(-1)) dominate, including the active substance chlortoluron (84.62% detection; 10.12 μg · kg~(-1)). The presence and abundance of nitrogen and pesticides in the soils of the agricultural areas of BW are strongly linked to the intensive use of these agrochemicals in cropping systems in recent decades in West African countries, even though most of the active molecules found are forbidden in several countries, especially in European countries. These are applied to tropical agricultural soils with physicochemical characteristics favorable to their retention in wet weather, as confirmed by the case of BW’s agricultural soils. Therefore, the BW’s water resources present worrying risks of contamination during rainy events that deserve to be assessed and monitored. Hence the need to take mitigating measures to this effect in order to preserve the quality of the environment.
机译:本研究的目的是评估种植系统的空间组织和农业区土壤的地表层的物理化学性质在热带水系统中的含水季节的空间可用性,如Béré流域(BW)在c? te d'ivoire。为此目的,在基于研究区域的卫星图像的似然分类方法映射BW裁剪系统的空间分布之后,在农业区域的土壤表面层0-20cm地平线上进行了27个样品2016年的潮湿季节。Kjeldahl方法已被用于评估总氮浓度和高效液相色谱(HPLC)链,使得土壤溶液中的农药残留物分析。空间数据和物理化学和农业化学土壤参数的地质统计分析和加工揭示了两大农产病学领域在BW中脱颖而出,即Béré上游流域(BUW)占年度农作的32.65%(玉米,棉花,雨水或低地米饭)。市场园艺等)和Béré下游流域(BDW)由大面积的多年生植物种植(腰果,可可等),即21.47%。 BW中的农业土壤通常是具有低酸性pH的中等去饱和脱硫型,并且温度相当强,例如热带土壤的特征。然而,BuW中的农业土壤的特点是砂和粗砂比例更高。总孔隙度,阳离子交换能力,粘土,有机物,淤泥,细淤泥,粗淤泥和钾离子等参数在BDW的农业面积的土壤中较高。此外,与BDW的那些(1.2g·kg〜(-1))相比,BUW的农业区域中的土壤含量不太富含氮(0.84g·kg〜(-1))。另一方面,在BDW的前方的BUW(193.80μg·kg〜(-1)中的总杀虫剂的中值浓度保持非常高(94.81μg·kg〜(-1))。此外,生物家族的除草剂是BW中最值得注意的。三嗪的化学系列(100%检测;79.37μg·kg〜(-1))是奉献的农业领域中最重要的,具有西夏嗪如杀虫剂的活性分子(92.86%检测; 13.17 μg·kg〜(-1))。然而,在BDW中,尿素替代物(100%检测;44.02μg·kg〜(-1))支配,包括活性物质chlortoluron(84.62%检测;10.12μg·kg〜(1))。近几十年来,BW农业区土壤中氮和农药的存在和丰富的氮和农药在西非国家近几十年来,这些农业化学物质的密集利用率相关联,即使大多数发现的主要分子都在几个中被禁止国家,特别是欧洲国家。这些适用于热带农产物土壤,具有湿润天气留在潮湿天气中的物理化学特征,如BW的农业土壤所证实。因此,BW的水资源存在令人担忧的污染风险,这些污染在雨天事件中值得进行评估和监测。因此,需要对这种效果进行缓解措施,以保持环境的质量。

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