吉林大学学报(理学版) ›› 2025, Vol. 63 ›› Issue (6): 1803-1814.

• • 上一篇    

实验室模拟研究冻融和微塑料对稻田土壤砷形态转化的影响

王翰伯1,2, 郭平1,2, 李悦铭3, 叶红升3, 陈指路1,2, 郝安静1,2,  弓尚钰1,2, 韩雅冰1,2, 陈薇薇1,2   

  1. 1. 吉林大学 新能源与环境学院, 地下水资源与环境教育部重点实验室, 长春 130012; 
    2. 吉林大学 吉林省水资源与水环境重点实验室, 长春 130012;
    3. 中国电力工程顾问集团东北电力设计院有限公司, 长春130021
  • 收稿日期:2024-12-19 出版日期:2025-11-26 发布日期:2025-11-26
  • 通讯作者: 陈薇薇 E-mail:chenvv@jlu.edu.cn

Laboratory Simulation on Effects of Freeze Thaw and Microplastics on  Transformation of Arsenic Speciation in Paddy Soil

WANG Hanbo1,2, GUO Ping1,2, LI Yueming3, YE Hongsheng3, CHEN Zhilu1,2, HAO Anjing1,2, GONG Shangyu1,2, HAN Yabing1,2, CHEN Weiwei1,2   

  1. 1. Key Laboratory of Groundwater Resources and Environment Ministry of Education,  College of New Energy and Environment,  Jilin University,  Changchun 130012,  China;
    2. Jilin Provincial Key Laboratory of Water Resources and Environment,  Jilin University,  Changchun 130012,  China;   3. Northeast Electric Power Design Institute Co.,  Ltd. of China Power Engineering Consulting Group,  Changchun 130021,  China
  • Received:2024-12-19 Online:2025-11-26 Published:2025-11-26

摘要: 采用实验室模拟的方法研究冻融(FT)和微塑料对土壤中砷(As)赋存形态的影响. 结果表明: 在未添加微塑料的条件下, FT导致有机结合态As和弱结晶铁氧化物结合态As占比升高(3.67%和4.17%), 锰氧化物结合态As和极难结晶铁氧化物结合态As占比降低(0.28%和5.33%); FT下添加聚乙烯(MP-PE)可降低有机结合态As占比(0.96%), 提高锰氧化物结合态As、 硫化物结合态As及晶体铁氧化物结合态As占比(1.55%,0.60%和2.05%); FT下添加聚己二酸/对苯二甲酸丁二醇酯(MP-PBAT)可降低水溶态As和晶体铁氧化物结合态As占比(1.33%和2.65%), 提高锰氧化物结合态As和极难结晶铁氧化物结合态As占比(1.11%和3.82%); 在未添加微塑料的条件下, FT使As与土壤的结合强度系数(IR)显著升高1.85%, 但在FT下添加MP-PBAT后IR显著降低6.27%;  IR值与水溶态、 有机结合态、 锰氧化物结合态As呈正相关, 与晶体铁氧化物结合态As的影响呈负相关. 该研究结果为揭示污染土壤中As的环境行为和评估As生态风险提供了理论依据, 并为As污染土壤治理和风险管理提供了重要参考. 

关键词: 砷, 冻融, 微塑料, 稻田土壤, 形态转化

Abstract: We used laboratory simulation methods  to investigate the effects of freeze thaw (FT) and microplastics on transformation of arsenic (As) speciation in  soil. The results show that under the condition of not adding microplastics,  FT leads to an increase in the proportions of organic-bound As and weakly crystalline iron oxide-bound As (3.67% and 4.17%),  while the proportion of manganese oxide-bound As and extremely difficult to  crystallize iron oxide-bound As decreases (0.28% and 5.33%). Adding polyethylene (MP-PE) under FT can reduce the proportion of organic-bound As (0.96%), increase th proportion of manganese oxide-bound As,  sulfide-bound As,  and crystalline iron oxide-bound As(1.55%,  0.60%,  and 2.05%). Adding butylene adipate-co-terephthalate (MP-PBAT) under FT can reduce the proportion of water-soluble As and crystalline iron oxide-bound As (1.33% and 2.65%),  and increase the proportion of  manganese oxide-bound As and extremely difficult to  crystallize iron oxide-bound As (1.11% and 3.82%). Under the condition of not adding microplastics, FT significantly increases the bounding strength coefficient IR between As and soil by 1.85%, but  adding MP-PBAT under FT, IR significantly decreases by 6.27%. The IR value is positively correlated with water-soluble As,  organic-bound As,  and manganese oxide-bound As, and  negatively correlated with the effect of the crystalline iron oxide-bound As. The research results  provide theoretical  basis for revealing  the environmental behavior of As in contaminated soils and evaluating the  ecological risks of As, and provide important  reference value   for the treatment and risk management of As-contaminated soil.

Key words: arsenic,  , freeze thaw,  , microplastics,  , paddy soil,  , morphological transformation

中图分类号: 

  • X143