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Xing Huang

Publications -  5
Citations -  113

Xing Huang is an academic researcher. The author has contributed to research in topics: Leachate & Anaerobic digestion. The author has an hindex of 4, co-authored 5 publications receiving 44 citations.

Papers
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Insights into the microbial community structure of anaerobic digestion of municipal solid waste landfill leachate for methane production by adaptive thermophilic granular sludge

TL;DR: Feng et al. as discussed by the authors used a thermophilic granular sludge for anaerobic digestion of municipal solid waste leachate (from an aging large-scale landfill) for methane production.
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Biodesulfurization of sulfide wastewater for elemental sulfur recovery by isolated Halothiobacillus neapolitanus in an internal airlift loop reactor.

TL;DR: The functional group analysis indicated that biofloculation was closely associated with NH and CO, and the transcriptional level of cbbL decreased in the presence of organic carbon, while the expressions of sqr, sat, and cytochrome C3 increased under higher sulfide stress.
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Bioaugmentation potential evaluation of a bacterial consortium composed of isolated Pseudomonas and Rhodococcus for degrading benzene, toluene and styrene in sludge and sewage.

TL;DR: Analysis of bacterial community structure following bioaugmentation indicated an increase in abundance of BTS-degrading bacteria, particularly Acinetobacter and Pseudoxanthomonas in sludge and Pseudes in sewage, enhancing the collective BTS degradation ability of the bacterial community.
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Reutilization of high COD leachate via recirculation strategy for methane production in anaerobic digestion of municipal solid waste: Performance and dynamic of methanogen community

TL;DR: The influences of reutilization of high COD leachate via recirculation strategy on methane production and dynamic of methanogen community in anaerobic digestion of Municipal Solid Waste (MSW) were revealed and a positive correlation between the dominant methanogens Methanobacterium and CH4 production and a negative correlation with Methanoculleus was verified.
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Simultaneous denitrification and desulfurization-S0 recovery of wastewater in trickling filters by bioaugmentation intervention based on avoiding collapse critical points.

TL;DR: In this paper, the intervention of sulfur oxidizing bacteria (SOB) and denitrifying bacteria (DNB) was employed to avoid the collapse critical points (the dramatically decrease of S/N removal efficiency) under the fluctuated load.