H
Han Qu
Researcher at University of Arizona
Publications - 36
Citations - 839
Han Qu is an academic researcher from University of Arizona. The author has contributed to research in topics: Medicine & Chemistry. The author has an hindex of 15, co-authored 25 publications receiving 461 citations. Previous affiliations of Han Qu include Qinghai University & Jinan University.
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Occurrence and distribution of microplastics in domestic, industrial, agricultural and aquacultural wastewater sources: A case study in Changzhou, China
TL;DR: The occurrence, composition and distribution of MPs in the influents and effluents from 9 domestic wastewater treatment plants, 5 industrial WWTPs, wastewater of 10 industrial plants, 4 livestock farms and 4 fish ponds in China were investigated to fill MP data gaps regarding different sources, guide future monitoring work and policy making.
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Enantiospecific toxicity, distribution and bioaccumulation of chiral antidepressant venlafaxine and its metabolite in loach (Misgurnus anguillicaudatus) co-exposed to microplastic and the drugs.
TL;DR: Insight is gained into the potential ecological effects and environmental behaviors of combined pollutions of chiral pharmaceuticals and microplastic, which could supply important information for environment risk assessment of concurrent organic pollutants andmicroplastic.
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How microplastics affect chiral illicit drug methamphetamine in aquatic food chain? From green alga (Chlorella pyrenoidosa) to freshwater snail (Cipangopaludian cathayensis)
Han Qu,Ruixue Ma,Holly Barrett,Bin Wang,Jiajun Han,Fang Wang,Pin Chen,Wei Wang,Guilong Peng,Gang Yu +9 more
TL;DR: Evidence is provided that the co-occurrence of microplastics and the chiral drug methamphetamine may increase the burden on aquatic species, with potential further impacts throughout aquatic food chain.
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Enantioselective toxicity, bioaccumulation and degradation of the chiral insecticide fipronil in earthworms (Eisenia feotida).
TL;DR: It is demonstrated that the presence of earthworms could accelerate the degradation of fipronil in soil, which suggested that the enantioselectivity of fipsonil in earthworms results from the organism's metabolism.
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Environmental behavior of the chiral insecticide fipronil: Enantioselective toxicity, distribution and transformation in aquatic ecosystem.
TL;DR: The results showed fipronil could be degraded significantly faster (half-life of 4.6 days) in the complex water-sediment-L.