Uncollected polythene fragments size-dependently alter soil multifunctionality via mediating bacterial drivers in dryland  

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作  者:Ze-Ying Zhao Peng-Yang Wang Xiao-Bin Xiong Yinglong Chen Hong-Yan Tao Wen-Ying Wang Yajie Song Muhammad Ashraf Li Zhu Yun-Li Xiao Shi-Sheng Li Fang-Kun Yang Meng-Ying Li Jing Cao Xiang-Wen Fang Levis Kavagi You-Cai Xiong 

机构地区:[1]State Key Laboratory of Herbage Improvement and Grassland Agro-ecosystems,College of Ecology,Lanzhou University,China [2]The UWA Institute of Agriculture,and School of Agriculture and Environment,The University of Western Australia,Australia [3]Laboratory of Biodiversity Formation Mechanism and Comprehensive Utilization of the Qinghai-Tibet Plateau in Qinghai Province,Qinghai Normal University,China [4]Global Institute of Eco-environment for Sustainable Development(GIESD),Yale School of the Environment,Yale University,USA [5]Institute of Molecular Biology and Biotechnology,The University of Lahore,Pakistan [6]College of Biology and Agricultural Resources,Huanggang Normal University,China [7]Division of Ecosystems and Biodiversity,United Nations Environment Programme,Kenya

出  处:《National Science Review》2024年第9期120-122,共3页国家科学评论(英文版)

基  金:suppor ted by National Natural Science Foundation of China(32161143012);Postdoctoral Innovation Talents Support Program(BX20230149);China Postdoctoral Science Foundation(2023M731464);Australian Research Council(FT210100902).

摘  要:Plastic pollution has emerged as a crucial driver of environmental change[1].Despite human efforts towards recycling and clean-up,current practice makes it difficult to collect fragments that are<100 cm^(2)in size and this poses a significant challenge for environmental sustainability[2].

关 键 词:size media SOIL 

分 类 号:X53[环境科学与工程—环境工程]

 

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