2022
DOI: 10.1016/j.biortech.2022.127145
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Enhanced organic degradation and biogas production of domestic wastewater at psychrophilic temperature through submerged granular anaerobic membrane bioreactor for energy-positive treatment

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Cited by 16 publications
(10 citation statements)
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“…Moreover, it was determined that the system provides an average COD removal equal to 88%. In turn, with regards to synthetic feed, Sanchez et al [199] investigated the treatment process in the submerged AnMBR with an ultrafiltration PES flat sheet membrane (Table 6). The experiments have been carried out under temperature and HRT of 25 • C and 13 h, respectively.…”
Section: Performance Of Cod Removalmentioning
confidence: 99%
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“…Moreover, it was determined that the system provides an average COD removal equal to 88%. In turn, with regards to synthetic feed, Sanchez et al [199] investigated the treatment process in the submerged AnMBR with an ultrafiltration PES flat sheet membrane (Table 6). The experiments have been carried out under temperature and HRT of 25 • C and 13 h, respectively.…”
Section: Performance Of Cod Removalmentioning
confidence: 99%
“…This conclusion is in line with the results pre in Figure 7, which shows the impact of the average feed temperature on the average removal in AnMBRs used for the treatment of real and synthetic domestic wastew All the data presented are based on results published in the reviewed studies. [111,134,193,195,199,202,204,[206][207][208][209]. [111,134,193,195,199,202,204,[206][207][208][209].…”
Section: Impact Of Temperaturementioning
confidence: 99%
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“…The anaerobic membrane bioreactor (AnMBR) is an emergent biotechnology that combines anaerobic digestion and membrane filtration. This hybrid technology is drawing attention for domestic wastewater treatment due to its competitiveness in terms of (i) conversion of organics into methane, (ii) effluent quality and (iii) reactor compactness [1,2]. Many lab-and pilot-scale studies have proven that AnMBR is a sustainable and efficient alternative to conventional energy-intensive processes, which could be suitable for low-energy, water-scarce, low-income and space-limited areas [3,4].…”
Section: Introductionmentioning
confidence: 99%