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埃塞俄比亚南部盖德奥地区农林业系统中天然土壤镉的含量、生物有效性及污染治理分析

Extent of natural soil cadmium, its bioavailability, and pollution treat analysis in the agroforestry systems of the Gedeo Zone of southern Ethiopia.

作者信息

Saghir Abdelaali Ait, Asmelash Fisseha, Maryo Melesse, Boularbah Ali, Kebede Fassil

机构信息

Center of Excellence for Soil and Fertilizer Research in Africa, College of Agriculture and Environmental Science, Mohammed VI Polytechnic University, Benguerir, Morocco.

Forest and Rangeland Plants Biodiversity Research, Ethiopian Biodiversity Institute, Addis Ababa, Ethiopia.

出版信息

Heliyon. 2025 Feb 15;11(4):e42742. doi: 10.1016/j.heliyon.2025.e42742. eCollection 2025 Feb 28.

Abstract

The research objectives were to determine extent of soil cadmium (Cd) in the major soil types of the Gedeo Zone of Ethiopia thereby assessing the pollution risk on the environmental health. Four profile pits representing Luvisols, Nitisols, Cambisols, and Leptosols, were excavated and soil samples were collected. Total and available Cd, Cu, Zn, and Mn, including other major soil physicochemical properties, were analyzed in the lab. The permutational multivariate analysis of variance results indicated that the significant ( < 0.05) level of heterogeneity between soil types is confined to subsurface horizons. The nonmetric multidimensional scaling ordination plots also show a marked difference between the physicochemical properties of the subsurface horizons of the Luvisol and the remaining soil types. The mean total Cd levels were high for all soil types and horizons in the range of 5.82-8.48 ppm, however, the mean available Cd contents were low (0.69-0.90 ppm). One-way ANOVA and Kruskal Wallis test results revealed a significant ( < 0.05) soil type effect on total and available Cd contents between the corresponding soil horizons. Based on the single pollution and the Nemerow comprehensive pollution indices, the pollution risk decreases in the order of Cd > Mn > Zn > Cu pollution. According to Pearson's correlation results, no correlation exists between total and available Cd, whereas very strong and significant ( < 0.05) correlations are present between total Cd and total nitrogen ( = 0.90), electrical conductivity ( = 0.83), and organic matter ( = 0.77). Our results indicate that Cd contamination is of geogenic origin, further aggravated by organic matter amendments. More research are needed, among other things, to know the Cd status of the major crops grown in the area so as to design appropriate Cd management strategies.

摘要

本研究的目的是确定埃塞俄比亚格德奥地区主要土壤类型中的土壤镉(Cd)含量,从而评估对环境健康的污染风险。挖掘了代表淋溶土、黏粒变性土、始成土和薄层土的四个土壤剖面坑,并采集了土壤样本。在实验室中分析了总镉和有效镉、铜、锌、锰,以及其他主要土壤理化性质。置换多变量方差分析结果表明,土壤类型之间显著(<0.05)的异质性水平仅限于地下层位。非度量多维尺度排序图也显示,淋溶土的地下层位与其他土壤类型的理化性质存在显著差异。所有土壤类型和层位的总镉平均含量都很高,在5.82 - 8.48 ppm范围内,然而,有效镉平均含量较低(0.69 - 0.90 ppm)。单因素方差分析和克鲁斯卡尔 - 沃利斯检验结果显示,相应土壤层位之间,土壤类型对总镉和有效镉含量有显著(<0.05)影响。基于单污染指数和内梅罗综合污染指数,污染风险按镉>锰>锌>铜污染的顺序降低。根据皮尔逊相关性结果,总镉和有效镉之间不存在相关性,而总镉与总氮(=0.90)、电导率(=0.83)和有机质(=0.77)之间存在非常强且显著(<0.05)的相关性。我们的结果表明,镉污染是地质成因的,有机物改良进一步加剧了这种污染。除其他方面外,还需要开展更多研究,以了解该地区主要农作物的镉状况,从而制定适当的镉管理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b0c/11891679/de814d248fa8/gr1.jpg

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