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首页> 外文期刊>Environmental Science and Pollution Research >Spatial variations of concentrations of copper and its speciation in the soil-rice system in Wenling of southeastern China
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Spatial variations of concentrations of copper and its speciation in the soil-rice system in Wenling of southeastern China

机译:东南温岭土壤-水稻系统中铜浓度的空间变异及其形态

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摘要

Copper (Cu) is one of the essential elements for plant growth, while excessive Cu in soils has potential environmental risks. There is little information on spatial variation of Cu in practical paddy fields. This is now important for appropriate agricultural management. The spatial patterns of Cu, its fractions in soils, and its concentrations in rice were investigated in a typical rice production region-Wenling of southeastern China. A total of 96 pairs of rice grain and soil samples (0-15 cm) were collected. The total concentration of Cu and its fractions were very variable, with large skewness, kurtosis, and coefficient of variation (CV) values. Compared to the guideline value (50 mg kg~(-1)), Cu pollution in paddy fields was observed in the study area. All the measured Cu concentrations in rice were lower than 10 mg kg~(-1), suggesting that they remained at a safe level. Spatial analyses including Moran's / index and geostatistics results indicated that high-high spatial patterns for both Cu in soils and rice were found in the northwest part, which was mainly related to industrial and E-waste dismantling activities. The low-low spatial patterns of Cu in the soil-rice system were located in the south part ofstudy area. The cross-correlogram results indicated that Cu concentration in rice was significantly spatially correlated with total Cu in soils, its fractions, and soil organic matter (SOM), but significantly negatively correlated with pH and electrical conductivity (EC). Most of the selected variables had a clear spatial correlation range with Cu in rice. The ranges of significant spatial correlation (p<0.05) could be obtained and further used for dividing agricultural management zones.
机译:铜(Cu)是植物生长的基本元素之一,而土壤中过量的Cu具有潜在的环境风险。在实际的稻田中,关于铜的空间变化的信息很少。现在这对于适当的农业管理很重要。在中国东南部一个典型的水稻生产区温岭,研究了铜的空间格局,其在土壤中的含量及其在水稻中的含量。总共收集了96对稻谷和土壤样品(0-15厘米)。 Cu及其分数的总浓度变化很大,具有较大的偏度,峰度和变异系数(CV)值。与指导值(50 mg kg〜(-1))相比,研究区发现稻田铜污染。水稻中测得的所有铜浓度均低于10 mg kg〜(-1),表明它们保持在安全水平。包括Moran's /指数和地统计结果在内的空间分析表明,在西北部发现了土壤和水稻中Cu的高-高空间格局,这主要与工业和电子废物的分解活动有关。土壤-水稻系统中铜的低-低空间格局位于研究区的南部。互相关图结果表明,水稻中的Cu浓度与土壤中的总Cu,其含量和土壤有机质(SOM)呈显着空间相关,而与pH和电导率(EC)呈显着负相关。大多数选择的变量与水稻中的Cu有明确的空间相关性范围。可以获得重要的空间相关性范围(p <0.05),并将其进一步用于划分农业经营区。

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