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- W2018080113 abstract "► First attempt to use microbial pyrosequencing technology to study microorganism communities in aged refuse bioreactor. ► Medium and temperature were the main determinants of bacterial community structure in the bioreactors. ► Sequential treatment with aged refuse biofilter and slag biofilter could remove pollutants from mature leachate efficiently. ► Effluent recirculation can stabilize microbes in biofilters, and alleviate the low temperature effect on pollutant removal. Aged landfill leachates become more refractory over time and difficulty to treat. Recently, aged refuse bioreactors show great promise in treating leachates. In this study, aged refuse bioreactors were constructed to simulate landfill leachate degradation process. The characteristics of leachate were: COD cr , ∼2200 mg/L; BOD 5 , ∼280 mg/L; total nitrogen, ∼2030 mg/L; and ammonia, ∼1900 mg/L. Results showed that bioreactor could remove leachate pollutants effectively at hydraulic loading of 20 L/m 3 d. The removal rate reduced when hydraulic loading doubled or temperature lowered. Effluent recirculation could alleviate the temperature effect. Combining aged refuse and slag biofilters could treat leachate more efficiently. Pyrosequencing analysis indicated that bacteria from Pseudomonas , Lysobacter , Bacillus and δ-proteobacter, Flexibacteraceae were more abundant in the samples. The Shannon index decreased at lower temperature, while evenness and equitability increased with recirculation. We suggest that filter medium and temperature may be the main factors for shaping bacterial community structure." @default.
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- W2018080113 date "2012-01-01" @default.
- W2018080113 modified "2023-09-26" @default.
- W2018080113 title "Performance and bacterial compositions of aged refuse reactors treating mature landfill leachate" @default.
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- W2018080113 doi "https://doi.org/10.1016/j.biortech.2011.09.114" @default.
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