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通过有机堆肥与化肥共同施用降低水稻中镉和砷的富集。

Attenuated cadmium and arsenic enrichment in rice by co-application of organic composting and chemical fertilization.

作者信息

Li Kai-Ye, Xiong Yu-Jie, Fu Jia-Cheng, Tian Xiao-Song, Lu Chensheng

机构信息

College of Resources and Environment, Department of Environment Science and Engineering, Southwest University, Chongqing, 400715, China.

Chongqing Key Laboratory of Agricultural Resources and Environment, Chongqing, 400715, China.

出版信息

Sci Rep. 2024 Dec 30;14(1):31942. doi: 10.1038/s41598-024-83412-5.

Abstract

A pot experiment was conducted on arsenic (As) and cadmium (Cd) co-contaminated soil to discern the influence of varying proportions of pig manure compost (PM) vis-à-vis chemical fertilizers (NPK) on the mitigation of Cd and As absorption by rice. Our findings illustrated that by increasing the PM proportions from 25 to 100%, it manifested a statistically significant reduction in the mobilized fractions of Cd, accounting for up to 77% reduction in soil CaCl-Cd concentrations. Conversely, the NaHCO-As reactions were contingent on the distinct PM application rates. Furthermore, augmented PM application rates correlated with a substantial surge in Cd and As concentrations within the iron (Fe) and manganese (Mn) plaques, ranging from up to 116.6% and 85.9%, respectively. This led to a concomitant decline in Cd and As concentrations within the grains, up to 72.6% and 74.5%, respectively. Notably, grain concentrations of As and Cd diminished progressively with increased PM application, reaching a nadir with the 75% PM treatment. In summary, the observed mitigation in contamination is postulated to stem from the modulation of soil attributes via PM addition, which curtails Cd availability, combined with the bolstered immobilization of As and Cd by the Fe/Mn plaques.

摘要

在砷(As)和镉(Cd)共污染土壤上进行了盆栽试验,以探讨不同比例的猪粪堆肥(PM)与化肥(NPK)相比,对水稻吸收Cd和As的缓解作用。我们的研究结果表明,将PM比例从25%提高到100%,Cd的可移动部分在统计学上显著降低,土壤CaCl-Cd浓度降低了77%。相反,NaHCO-As反应取决于不同的PM施用量。此外,增加PM施用量与铁(Fe)和锰(Mn)斑块中Cd和As浓度的大幅增加相关,分别高达116.6%和85.9%。这导致籽粒中Cd和As浓度随之下降,分别高达72.6%和74.5%。值得注意的是,随着PM施用量的增加,籽粒中As和Cd的浓度逐渐降低,在75%PM处理时达到最低点。总之,观察到的污染缓解被假定源于通过添加PM对土壤属性的调节,这减少了Cd的有效性,同时Fe/Mn斑块增强了对As和Cd的固定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17d4/11686351/b88b9605e9cc/41598_2024_83412_Fig1_HTML.jpg

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