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稻田土壤溶解性有机质组成及其与Cd2+络合过程研究

梁以豪 倪才英 黎衍亮 肖罗长 简敏菲

土壤学报2025,Vol.62Issue(1):153-164,12.
土壤学报2025,Vol.62Issue(1):153-164,12.DOI:10.11766/trxb202310180426

稻田土壤溶解性有机质组成及其与Cd2+络合过程研究

Research of Paddy Soil Dissolved Organic Matter Composition and Its Binding Process with Cd2+

梁以豪 1倪才英 1黎衍亮 1肖罗长 1简敏菲2

作者信息

  • 1. 江西师范大学地理与环境学院/鄱阳湖湿地与流域研究教育部重点实验室,南昌 330022
  • 2. 江西师范大学生命科学学院/江西省亚热带植物资源保护与利用重点实验室 南昌 330022
  • 折叠

摘要

Abstract

[Objective]Cadmium(Cd)is the heavy metal pollutant with the highest over-limit rate in paddy soil in China.The bioavailability and mobility of Cd are affected by dissolved organic matter(DOM)in the soil.Paddy fields are important food production areas in China.As an important ecological agriculture mode in the rice industry,integrated planting and breeding of rice fields is of great significance to rural revitalization.The modification of paddy field environments and fishing can change DOM,but the complexation process between soil DOM and Cd2+in paddy soil and during integrated planting and breeding of rice field process has not been clearly understood.[Method]In this study,the complexation process between DOM and Cd2+in rice-shrimp cultivation(RS)and rice monoculture(CK)systems was investigated using a comprehensive array of analytical techniques,including ultraviolet-visible absorption spectrum(UV-Vis),3D fluorescence spectroscopy,synchronous fluorescence spectroscopy,parallel factor analysis(PARAFAC),2D correlation analysis(2D-COS),and the modified Stern-Volmer binding reaction model.Herein,RS was taken as an example of integrated planting and breeding of rice fields.[Result]The PARAFAC analysis showed that soil DOM components of RS and CK were similar,including 1 tryptophan(C1)and 3 humus components(C2,C3,C4).Compared with CK,the proportions of C2 and C4 in soil DOM of RS were lower,while C3 was higher,and C1 was not significantly different.The UV-Vis spectrum showed that DOM absorbance in CK was higher than in RS,with the absorption peak mainly located at 200-230 nm.With the increase of Cd2+,the change of UV-Vis spectrum and UV254 was significantly different between RS and CK.Synchronous fluorescence spectra and 2D-COS analysis showed that paddy soil DOM fluorescence intensity changed with the increase of Cd2+,three absorption peaks were found by synchronous fluorescence spectra in DOM of paddy soil,which were the peak of tryptophan at 270 nm and the humus peak at 310 nm and 370 nm,respectively.The binding order between soil DOM and Cd2+in RS was humus(310 nm),tryptophan,and humus(375 nm),respectively.However,in CK,the binding order was tryptophan,humus(375 nm),humus(310 nm).In the Stern-Volmer binding reaction model,the fluorescence intensity of C1 and C4 decreased with the increase of Cd2+,but the fluorescence intensity of C2 and C3 was unstable,which showed that the complexation of humus components C2 and C3 with Cd2+had instability.This also led to the failure of fitting C2 and C3 in the model.The complexation constants 1gK of C1 and C4 in the soil DOM of RS were 4.25 and 5.03,which were higher than in CK.[Conclusion]The soil DOM in RS and CK mainly consisted of humus and the material composition ratio of soil DOM in RS was different.The complex process of DOM and Cd2+in paddy soil belonged to static quenching and the aromatic structure affected the stability of DOM and Cd2+complexation.Also,RS influenced the binding ability of tryptophan and fulvic acid DOM to Cd2+whereas the instability of the complexation of humus with Cd2+and the complexation of C4 with Cd2+can enhance the bioavailability of Cd in soil.The results of this research can provide a scientific reference for the study of soil Cd pollution mechanism and pollution prevention in paddy fields.

关键词

稻田土壤/稻虾种养/溶解性有机质/荧光猝灭/

Key words

Paddy soil/Rice-shrimp cultivation/Dissolved organic matter/Fluorescence quenching/Cadmium

分类

环境科学

引用本文复制引用

梁以豪,倪才英,黎衍亮,肖罗长,简敏菲..稻田土壤溶解性有机质组成及其与Cd2+络合过程研究[J].土壤学报,2025,62(1):153-164,12.

基金项目

国家自然科学基金项目(42167006)和江西省现代农业产业技术体系建设专项项目(JXARS-12-环境控制)资助Supported by the National Natural Science Foundation of China(No.42167006),and the Earmarked Fund for Jiangxi Agriculture Research System,China(No.JXARS-12-Environmental Control) (42167006)

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