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基于原状土壤性质估算日本土壤镉污染潜在脆弱性的模型构建。

Model construction for estimating potential vulnerability of Japanese soils to cadmium pollution based on intact soil properties.

机构信息

Research Institute of Science for Safety and Sustainability, National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki, Japan.

Research Institute for Geo-Resources and Environment, National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki, Japan.

出版信息

PLoS One. 2019 Jun 14;14(6):e0218377. doi: 10.1371/journal.pone.0218377. eCollection 2019.

Abstract

Prediction of heavy metal bioavailability in intact soil is important to manage soil pollution risks. We developed a regression model for representative Japanese soils to judge their potential vulnerability to cadmium (Cd) pollution. We added four rates of Cd to 17 sample soils to mimic artificial contamination. After aging the contaminated soils, we measured Cd's bioavailability using the diffusive gradients in thin-films (DGT) technique. We then evaluated the relationships between bioavailability of Cd ([CdDGT]) and intact soil properties by statistical analyses. Cation exchange capacity (CEC) and pH emerged as significant factors to explain the cadmium bioavailability in Japanese soils. Specifically, lower CEC and lower pH were associated with higher [CdDGT], which poses a higher risk for soil ecosystems. The correlation between pH and [CdDGT] had a high dependence on [CdAdd], whereas that for CEC did not. Regression analysis also showed that the interaction between intact soil pH and spiked concentration ([CdAdd]) had a significant contribution to [CdDGT]. The regression model developed was rationally supported by a biotic ligand model. This simplified but realistic model would be useful in estimating the vulnerability of representative Japanese soils and determining the risk for Japanese soils in relation to Cd contamination.

摘要

预测完整土壤中重金属的生物有效性对于管理土壤污染风险很重要。我们为有代表性的日本土壤开发了一个回归模型,以判断它们对镉(Cd)污染的潜在脆弱性。我们向 17 种土壤样品中添加了四种浓度的 Cd,以模拟人为污染。在污染土壤老化后,我们使用薄膜扩散梯度(DGT)技术测量 Cd 的生物有效性。然后,我们通过统计分析评估了 Cd 生物有效性([CdDGT])与完整土壤特性之间的关系。阳离子交换容量(CEC)和 pH 值是解释日本土壤中镉生物有效性的重要因素。具体而言,较低的 CEC 和较低的 pH 值与较高的[CdDGT]相关,这对土壤生态系统构成了更高的风险。pH 值与[CdDGT]之间的相关性高度依赖于[CdAdd],而 CEC 则不然。回归分析还表明,完整土壤 pH 值与添加浓度([CdAdd])之间的相互作用对[CdDGT]有显著贡献。所开发的回归模型得到了生物配体模型的合理支持。该简化但现实的模型将有助于估计有代表性的日本土壤的脆弱性,并确定与 Cd 污染相关的日本土壤的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8077/6570033/e23bb1a8f5ef/pone.0218377.g001.jpg

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