Effect of psychrophilic temperature shocks on a gas-lift anaerobic membrane bioreactor (Gl-AnMBR) treating synthetic domestic wastewater
Creators
- 1. University of South Florida
- 2. Institute of Chemical Technology in Prague
- 3. UNESCO-IHE Institute for Water Education
Description
Abstract Municipal wastewater is a renewable resource containing energy, nutrients and water. These valuables can be recovered via new, innovative technologies such as the gas-lift anaerobic membrane bioreactor (Gl-AnMBR), which is especially suitable for decentralized wastewater treatment. To better understand the effects of fluctuating environmental conditions on the treatment performance, the impact of short-term temperature shocks was studied. We present a laboratory study of a 10 L Gl-AnMBR equipped with an external tubular ultrafiltration membrane treating synthetic domestic wastewater at mesophilic (35 °C) conditions with a series of short-term (12–48 h) cold (15 °C) shocks applied prior to switching to psychrophilic (15 °C) conditions. The average COD removal under mesophilic conditions was as high as 94 ± 2%, even during the temperature shocks. Under psychrophilic conditions, more than 80% of the influent COD accumulated in the reactor (compared to 39% under mesophilic conditions). The results suggest that an abrupt and short-term temperature decrease from 35 to 15 °C can largely be absorbed by our system with no negative effect on effluent quality.
Open Access
Licence Attribution (ELSEVIER-SPECIFIC: OA USER LICENSE)
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Publication Details
Journal article
Journal:
Journal of Water Process Engineering
Publisher:
Elsevier BV
ISSN:
22147144
Volume:
16
Pages:
108-114
Persistent Identifiers
MAGID
2570518932
DOI
10.1016/j.jwpe.2016.12.005
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Funding
References
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Smith . Psychrophilic anaerobic membrane bioreactor treatment of domestic wastew...
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Cakir . Greenhouse gas production: a comparison between aerobic and anaerobic wa...
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