数字农科院2.0

Thresholds and Key Environmental Drivers of Agricultural Film-Derived Microplastic Effects on Soil CO2 Emissions: Transition from Inhibition to Promotion

文献类型: 外文期刊

作者: Qi, Ruimin;Zhu, Heyi;Jones, Davey L.;Yan, Changrong;Chi, Yihan;Tang, Yuanyuan

作者机构:

关键词: agricultural film;microplastics;soil carbonmineralization;microbial community;interactivemechanisms;thresholds

期刊名称: ENVIRONMENTAL SCIENCE & TECHNOLOGY

ISSN: 0013-936X

年卷期: 2025 年

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Microplastics are emerging pollutants that can disrupt soil structure and key biogeochemical processes, such as carbon and nitrogen cycling. However, critical gaps remain in identifying contamination thresholds and understanding how different microplastics affect CO2 emissions through interactions with soil and microbes. To address these gaps, we conducted a microcosm experiment to evaluate CO2 emissions and their key influencing factors in soil amended with four types of agricultural film-derived microplastics (PE, PP, PVC, and PBAT) at varying doses (0.01, 0.10, 1.00, and 5.00%). Findings reveal that at higher doses, PBAT and PVC significantly enhanced soil CO2 emissions and cumulative mineralization, whereas PE and PP exhibited no clear dose-response relationship. Microplastics exhibited a double-edged effect on CO2 emissions, transitioning from inhibition to promotion over time. The zero-point effect stabilized in a short time, with PVC and PBAT being more prone to disrupt soil processes compared to PE and PP, exhibiting dose threshold values of 0.07, 0.09, 2.38, and 2.16%, respectively. Microplastic characteristics, soil physicochemical properties, and microbial communities varied with the types and doses of microplastics added, contributing 34.7, 39.4, and 25.9%, respectively, to the double-edged effect. Furthermore, the type of microplastics (coefficient = 0.67) had a more substantial effect on the double-edged effect than dosage (coefficient = 0.39), highlighting the critical role of the microplastic type in modulating soil carbon dynamics. This study provides new mechanistic insights into how microplastics affect soil carbon cycling, helping predict their impact on climate change mitigation and sustainable soil management.

分类号:

  • 相关文献

[1]Interactions between dissolved organic matter and the microbial community are modified by microplastics and heat waves. Wang Z.,Hu X.,Kang W.,Qu Q.,Feng R.,Mu L.. 2023

[2]Effects of single and combined contamination of microplastics and cadmium on soil organic carbon and microbial community structural: A comparison with different types of soil. Qingyao Meng,Tiantian Diao,Lei Yan,Yuebing Sun. 2023

[3]Microplastics promoted cadmium accumulation in maize plants by improving active cadmium and amino acid synthesis. Zhao M.,Xu L.,Wang X.,Li C.,Zhao Y.,Cao B.,Zhang C.,Zhang J.,Wang J.,Chen Y.,Zou G.. 2023

[4]Microplastic contamination accelerates soil carbon loss through positive priming. Jie Zhou,Wenhao Feng,Robert W. Brown,Haishui Yang,Guodong Shao,Lingling Shi,Heng Gui,Jianchu Xu,Feng Min Li,Davey L. Jones,Kazem Zamanian. 2024

[5]Water level regimes can regulate the influences of microplastic pollution on carbon loss in paddy soils: Insights from dissolved organic matter and carbon mineralization. Xiaonan Lu,Lili Wang,Georg Guggenberger,Yue Sun,Runan Hu,Tingxuan Li. 2025

[6]A Biodegradable Ramie Fiber-Based Nonwoven F.ilm Used For Increasing O xygen Supply To Cultivated Soil. Zhou, WL, Niu, YB, Wang, CY, Yang, YR, Tan, ZJ, Yi, YJ, Yu, W, Wang, HY. 2018

[7]Research Progress of Light Wavelength Conversion Materials and Their Applications in Functional Agricultural Films. Yi Liu,Zhiguo Gui,Jialei Liu. 2022

[8]Potential sources and occurrence of macro-plastics and microplastics pollution in farmland soils: A typical case of China. Ren, Siyang,Wang, Kai,Zhang, Jinrui,Li, Jingjing,Zhang, Hanyue,Qi, Ruimin,Xu, Wen,Yan, Changrong,Liu, Xuejun,Zhang, Fusuo,Jones, Davey L.,Chadwick, David R.. 2023

[9]Occurrence and characteristics of microplastics in soils from greenhouse and open-field cultivation using plastic mulch film. Ruimin Qi,Yuanyuan Tang,Davey L. Jones,Wenqing He,Changrong Yan. 2023

[10]Concurrence of microplastics and heat waves reduces rice yields and disturbs the agroecosystem nitrogen cycle. Shuqing Guo,Li Mu,Shan Sun,Xuan Hou,Mingqi Yao,Xiangang Hu. 2023

[11]Transport of different microplastics in porous media: Effect of the adhesion of surfactants on microplastics. Yanji Jiang,Shi Zhou,Jiao Fei,Zhiming Qin,Xianqiang Yin,Huimin Sun,Yuebing Sun. 2022

[12]Microbiology combined with metabonomics revealing the response of soil microorganisms and their metabolic functions exposed to phthalic acid esters. Changcai Wu,Yajie Ma,Dan Wang,Yongpan Shan,Xianpeng Song,Hongyan Hu,Xiangliang Ren,Xiaoyan Ma,Junyu Luo,Jinjie Cui,Yan Ma. 2022

[13]Effects of microplastics on soil microbiome: The impacts of polymer type, shape, and concentration. Yuanze Sun,Chongxue Duan,Na Cao,Xinfei Li,Xiaomin Li,Yumei Chen,Yi Huang,Jie Wang. 2022

[14]Microplastics reduce the bioaccumulation and oxidative stress damage of triazole fungicides in fish. Changsheng Li,Shankui Yuan,Yanming Zhou,Xuefeng Li,Liusheng Duan,Lan Huang,周晓今,Yongqiang Ma,Sen Pang. 2022

[15]Effect of different polymers of microplastics on soil organic carbon and nitrogen – A mesocosm experiment. Fanrong Meng,Xiaomei Yang,Michel Riksen,Violette Geissen. 2022

[16]Potential translocation process and effects of polystyrene microplastics on strawberry seedlings. Chen Zhang,Ning Yue,Xiaohui Li,Hua Shao,Jing Wang,Lihui An,Fen Jin. 2023

[17]Warming and microplastic pollution shape the carbon and nitrogen cycles of algae. Hou X.,Mu L.,Hu X.,Guo S.. 2023

[18]Environmental risk, toxicity, and biodegradation of polyethylene: a review. El-Sherif, Dina M.,Eloffy, Manal G.,Elmesery, Alaa,Abouzid, Mohamed,Gad, Mohammed,El-Seedi, Hesham R.,Brinkmann, Markus,Wang, Kai,Al Naggar, Yahya. 2022

[19]Effects of long-term microplastic pollution on soil heavy metals and metal resistance genes: Distribution patterns and synergistic effects. Changcai Wu,Xianpeng Song,Dan Wang,Yajie Ma,Xiangliang Ren,Hongyan Hu,Yongpan Shan,Xiaoyan Ma,Jinjie Cui,Yan Ma. 2023

[20]Research progress on distribution, sources, identification, toxicity, and biodegradation of microplastics in the ocean, freshwater, and soil environment. Qinghui Sun,Juan Li,Chen Wang,Anqi Chen,Yanli You,Shupeng Yang,Huihui Liu,Guibin Jiang,Yongning Wu,Yanshen Li. 2022

作者其他论文 更多>>