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Yanyan Liu

Researcher at Qufu Normal University

Publications -  36
Citations -  512

Yanyan Liu is an academic researcher from Qufu Normal University. The author has contributed to research in topics: Chemistry & Catalysis. The author has an hindex of 6, co-authored 11 publications receiving 138 citations.

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Bacterial community shift and antibiotics resistant genes analysis in response to biodegradation of oxytetracycline in dual graphene modified bioelectrode microbial fuel cell.

TL;DR: Coding resistance genes of efflux pump, ribosome protective protein and modifying or passivating were all found in O-GM-BE, and this explained the OTC removal mechanisms from gene level.
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Biodegradation of oxytetracycline and electricity generation in microbial fuel cell with in situ dual graphene modified bioelectrode.

TL;DR: Bacteria related with OTC biodegradation were enriched, which contributed to the high removal efficiency of OTC, and electricity generation in O-D-GM-BE MFC was explored.
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Bacterial community shift in response to a deep municipal tail wastewater treatment system.

TL;DR: The bacterial community shift in response to the treatment process of ozone oyster shell fixed-bed bioreactor (OFBR-MBR) is discussed, which would also provide an alternative and promising technology for other kinds of tail wastewater recycling in future.
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Removal behaviors and mechanisms for series of azo dye wastewater by novel nano constructed macro-architectures material.

TL;DR: A novel macro-architectures material Fe3O4-N-GO@sodium alginate (SA) gel film was successfully produced, which was used to remove series azo dye wastewater and would provide theoretical basis for the application of macro- Architecture material in environment.
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Bacterial community composition of internal circulation reactor at different heights for large-scale brewery wastewater treatment.

TL;DR: In this paper, the authors analyzed bacterial community structure for large-scale brewery wastewater treatment at different heights in internal circulation (IC) reactor and found that Proteobacteria, Bacteroidetes and Chloroflexi were dominant bacteria, which accounted for 64.17%, 64.04%, 59.87% and 55.79% in phylum level, respectively.