复湿条件下PBAT纳米塑料对盐碱土壤黏粒特性的影响
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1.浙江省生态环境损害控制与价值转化重点实验室;2.浙江省工业污染低碳治理技术重点实验室;3.青海盐湖资源综合利用工程技术中心

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浙江省领雁研发攻关计划项目(2023C03128,2025C02216)和国家自然科学基金项目(42577247)资助


Impacts of Saline-alkaline Soil Clay Properties by PBAT Nanoplastics Under Rewetting Condition
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1.Zhejiang Key Laboratory of Ecological Environmental Damage Control and Value Transformation, College of Geoinformatics, Zhejiang University of Technology;2.Zhejiang Key Laboratory of Low-carbon Control Technology for Industrial Pollution, College of Environment, Zhejiang University of Technology;3.Qinghai Engineering and Technology Research Center of Comprehensive Utilization of Salt Lake Resources, Qinghai Institute of Salt Lakes, Chinese Academy of Sciences

Fund Project:

Supported by the Research and Development Plan of “Leading Goose” of Zhejiang Province, China (Nos. 2023C03128 and 2025C02216) and the National Natural Science Foundation of China (No. 42577247)

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    摘要:

    以聚对苯二甲酸-己二酸丁二醇酯(PBAT)为代表的生物可降解塑料地膜在中国西北农耕区广泛使用,以黏粒为主的当地土壤中所残留的大量纳米塑料可能显著改变黏粒特性。以西北盐碱土壤的黏粒和PBAT生物可降解纳米塑料(PBAT-BNPs)为研究对象,通过复湿模拟灌溉周期内土壤水分变化,探究PBAT-BNPs对灭菌的高盐碱土壤黏粒团聚行为及理化性质的影响。结果显示,复湿处理可促进黏粒团聚,PBAT-BNPs虽强化了该效应,但受制于高盐碱条件。在复湿处理周期内,添加PBAT-BNPs的黏粒阳离子交换量显著增加,电导率和pH明显降低。PBAT-BNPs诱导的酸性环境致使黏土矿物溶解,硅酸根离子释放,而铝离子在复湿条件下通过絮凝促进团聚体形成;同时,PBAT的单体和黏粒的可溶性离子释放导致矿物层间距明显增加。本研究为生物可降解纳米塑料对土壤性质的非生物影响提供了新视角。

    Abstract:

    【Objective】Biodegradable plastic mulch films, which are representatively made from polybutylene adipate co-terephthalate (PBAT), have been widely used in the agricultural areas of northwest China. As a result, a large quantity of nanoplastics is left in the local soils. However, the effect of these nanoplastics on the properties of this predominantly clay soil remains understudied. 【Method】This study used clays separated from saline-alkaline soils from northwest China and PBAT-based biodegradable nanoplastics (PBAT-BNPs) as research objects. Clay rewetting was conducted to simulate the soil moisture changes during the agricultural irrigation period in Xinjiang. The effects of PBAT-BNPs on the aggregation behavior and physicochemical properties of sterilized high saline-alkaline clays were explored. 【Result】 The results showed that rewetting significantly promoted the aggregation of clays, which was further enhanced by PBAT-BNPs but was hindered by the high salinity-alkalinity of clays. During the rewetting treatment period, the cation exchange capacity of PBAT-BNP-added clays increased significantly, whereas their electrical conductivity and pH decreased noticeably. The acidic environment induced by PBAT-BNPs facilitated the dissolution of clay minerals and the release of silicate ions. Under the rewetting condition, the Al cations promoted the formation of aggregates through flocculation. Meanwhile, the release of PBAT monomers and soluble ions from clays led to a significant increase in the interlayer spacing of minerals. 【Conclusion】 This study provides a new perspective on the abiotic impacts of biodegradable nanoplastics on soil properties.

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张明,张诗城,应俊蝶,邵卓琛,李文锋,张道勇,潘响亮.复湿条件下PBAT纳米塑料对盐碱土壤黏粒特性的影响[J].土壤学报,2026,63(2). DOI:10.11766/trxb202511060530 ZHANG Ming, ZHANG Shicheng, YING Jundie, SHAO Zhuochen, LI Wenfeng, ZHANG Daoyong, PAN Xiangliang. Impacts of Saline-alkaline Soil Clay Properties by PBAT Nanoplastics Under Rewetting Condition[J]. Acta Pedologica Sinica,2026,63(2).

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  • 收稿日期:2025-11-06
  • 最后修改日期:2025-11-28
  • 录用日期:2025-12-07
  • 在线发布日期: 2025-12-08
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