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[1] 路平,张浩然,任峰,袁涛,刘怡君.基于响应面法游湖沉积物-水界面溶解性碳交换通量,2023,2023年07期:2906-2915,10
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[2] 林梓博,路平,王瑞,刘向群,袁涛.Sulfur: a neglected driver of the increased abundance of antibiotic resistance genes in agricultural reclaimed subsidence land located in coal mines with high phreatic water levels,2023,卷: 9期: 3
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[3] 程森,路平,冯启言.渔业复垦塌陷地抗生素抗性基因与微生物群落,2020,2021年05期:2541-2549,9
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[4] 路平,方尧,Barvor, Joshua Bosco,Neth, Nicole L. Kennedy,Fan, Ningke,Li, Zhaoji.Review of Antibiotic Pollution in the Seven Watersheds in China,2019,卷: 28期: 6页: 4045-4055
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[5] 路平.Removals of Cryptosporidium parvum Oocysts and Cryptosporidium-Sized Polystyrene Microspheres from Swimming Pool Water by Diatomaceous Earth Filtration and Perlite-Sand Filtration,2017,15;3;
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[6] 路平.A full-scale study of Cryptosporidium parvum oocyst and Cryptosporidium-sized microsphere removals from swimming pools via sand filtration,2017,52;1;18-25
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[7] 孔亚东,路平.Cryptosporidium contamination and attributed risks in Yunlong Lake in Xuzhou, China,2017,2017;6;
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[8] 路平.Cryptosporidium Removal from Runoff by Active Carbon Filter with Coal Gangue,2016,2016;1;
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[9] 袁涛,路平.Removing Cryptosporidium-size microspheres with polyaluminium FeCl3,2016,42;109;
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[10] 路平.A pilot-scale study of Cryptosporidium-sized microsphere removals from swimming pools via sand filtration,2016,14;1;