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Journal articles on the topic 'Membrane photobioreactor'

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1

Khor, Wei-Han, Hooi-Siang Kang, Lee Kee Quen, et al. "Hydrodynamic sloshing of microalgae in membrane type photobioreactor." IOP Conference Series: Earth and Environmental Science 463 (April 7, 2020): 012162. http://dx.doi.org/10.1088/1755-1315/463/1/012162.

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2

Suali, E., R. Sarbatly, S. R. M. Shaleh, F. A. Lahin, and S. M. Anisuzzaman. "Correlation study of microalgae carbonation in membrane integrated photobioreactor." IOP Conference Series: Earth and Environmental Science 36 (June 2016): 012043. http://dx.doi.org/10.1088/1755-1315/36/1/012043.

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3

González-Camejo, J., A. Jiménez-Benítez, M. V. Ruano, A. Robles, R. Barat, and J. Ferrer. "Optimising an outdoor membrane photobioreactor for tertiary sewage treatment." Journal of Environmental Management 245 (September 2019): 76–85. http://dx.doi.org/10.1016/j.jenvman.2019.05.010.

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4

Senatore, Vincenzo, Antonio Buonerba, Tiziano Zarra, et al. "Innovative membrane photobioreactor for sustainable CO2 capture and utilization." Chemosphere 273 (June 2021): 129682. http://dx.doi.org/10.1016/j.chemosphere.2021.129682.

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5

Luo, Yunlong, Pierre Le-Clech, and Rita K. Henderson. "Assessment of membrane photobioreactor (MPBR) performance parameters and operating conditions." Water Research 138 (July 2018): 169–80. http://dx.doi.org/10.1016/j.watres.2018.03.050.

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6

Ding, Ke, Nan Wang, Xiamin Huang, et al. "Enhancing lipid productivity with novel SiO2-modified polytetrafluoroethylene (PTFE) membranes in a membrane photobioreactor." Algal Research 45 (January 2020): 101752. http://dx.doi.org/10.1016/j.algal.2019.101752.

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7

Derakhshan, Zahra, Mohammad Hassan Ehrampoush, Amir Hossein Mahvi, Mansooreh Dehghani, Mohammad Faramarzian, and Hadi Eslami. "A comparative study of hybrid membrane photobioreactor and membrane photobioreactor for simultaneous biological removal of atrazine and CNP from wastewater: A performance analysis and modeling." Chemical Engineering Journal 355 (January 2019): 428–38. http://dx.doi.org/10.1016/j.cej.2018.08.155.

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8

Kim, H. N., J. H. Lee, E. J. Choi, Y. G. Oh, and Jeongbae Kim. "Experimental Study to reveal Optimum Condition of CO2Supply Membrane at Photobioreactor." Journal of ILASS-Korea 19, no. 3 (2014): 130–35. http://dx.doi.org/10.15435/jilasskr.2014.19.3.130.

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9

Fortunato, Luca, Andrés Felipe Lamprea, and TorOve Leiknes. "Evaluation of membrane fouling mitigation strategies in an algal membrane photobioreactor (AMPBR) treating secondary wastewater effluent." Science of The Total Environment 708 (March 2020): 134548. http://dx.doi.org/10.1016/j.scitotenv.2019.134548.

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10

Zhang, Meijia, Kam-Tin Leung, Hongjun Lin, and Baoqiang Liao. "Membrane fouling in a microalgal-bacterial membrane photobioreactor: Effects of P-availability controlled by N:P ratio." Chemosphere 282 (November 2021): 131015. http://dx.doi.org/10.1016/j.chemosphere.2021.131015.

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11

Cheng, Lihua, Lin Zhang, Huanlin Chen, and Congjie Gao. "Carbon dioxide removal from air by microalgae cultured in a membrane-photobioreactor." Separation and Purification Technology 50, no. 3 (2006): 324–29. http://dx.doi.org/10.1016/j.seppur.2005.12.006.

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12

Fan, L. H., Y. T. Zhang, L. H. Cheng, L. Zhang, D. S. Tang, and H. L. Chen. "Optimization of Carbon Dioxide Fixation byChlorella vulgaris Cultivated in a Membrane-Photobioreactor." Chemical Engineering & Technology 30, no. 8 (2007): 1094–99. http://dx.doi.org/10.1002/ceat.200700141.

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13

Chang, Haixing, Qian Fu, Nianbing Zhong, et al. "Microalgal lipids production and nutrients recovery from landfill leachate using membrane photobioreactor." Bioresource Technology 277 (April 2019): 18–26. http://dx.doi.org/10.1016/j.biortech.2019.01.027.

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14

Bilad, M. R., V. Discart, D. Vandamme, I. Foubert, K. Muylaert, and Ivo F. J. Vankelecom. "Coupled cultivation and pre-harvesting of microalgae in a membrane photobioreactor (MPBR)." Bioresource Technology 155 (March 2014): 410–17. http://dx.doi.org/10.1016/j.biortech.2013.05.026.

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15

González-Camejo, J., A. Jiménez-Benítez, M. V. Ruano, A. Robles, R. Barat, and J. Ferrer. "Preliminary data set to assess the performance of an outdoor membrane photobioreactor." Data in Brief 27 (December 2019): 104599. http://dx.doi.org/10.1016/j.dib.2019.104599.

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16

Praveen, Prashant, Wei Xiao, Bhumika Lamba, and Kai-Chee Loh. "Low-retention operation to enhance biomass productivity in an algal membrane photobioreactor." Algal Research 40 (June 2019): 101487. http://dx.doi.org/10.1016/j.algal.2019.101487.

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17

Praveen, Prashant, and Kai-Chee Loh. "Nitrogen and phosphorus removal from tertiary wastewater in an osmotic membrane photobioreactor." Bioresource Technology 206 (April 2016): 180–87. http://dx.doi.org/10.1016/j.biortech.2016.01.102.

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18

Vu, Linh T. K., and Kai-Chee Loh. "Symbiotic hollow fiber membrane photobioreactor for microalgal growth and bacterial wastewater treatment." Bioresource Technology 219 (November 2016): 261–69. http://dx.doi.org/10.1016/j.biortech.2016.07.105.

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19

Viruela, Alexandre, Ángel Robles, Freddy Durán, et al. "Performance of an outdoor membrane photobioreactor for resource recovery from anaerobically treated sewage." Journal of Cleaner Production 178 (March 2018): 665–74. http://dx.doi.org/10.1016/j.jclepro.2017.12.223.

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20

Derakhshan, Zahra, Amir Hossein Mahvi, Mohammad Hassan Ehrampoush, et al. "Evaluation of kenaf fibers as moving bed biofilm carriers in algal membrane photobioreactor." Ecotoxicology and Environmental Safety 152 (May 2018): 1–7. http://dx.doi.org/10.1016/j.ecoenv.2018.01.024.

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21

Najm, Yasmeen, Sanghyun Jeong, and TorOve Leiknes. "Nutrient utilization and oxygen production by Chlorella vulgaris in a hybrid membrane bioreactor and algal membrane photobioreactor system." Bioresource Technology 237 (August 2017): 64–71. http://dx.doi.org/10.1016/j.biortech.2017.02.057.

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22

Chen, Siye, and Hanshi Qi. "Photolithotrophic cultivation of Laminaria japonica gametophyte cells in a silicone tubular membrane-aerated photobioreactor." Plant Cell, Tissue and Organ Culture 93, no. 1 (2008): 29–38. http://dx.doi.org/10.1007/s11240-008-9339-3.

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23

Bilad, M. R., V. Discart, D. Vandamme, I. Foubert, K. Muylaert, and I. F. J. Vankelecom. "Simultaneous Cultivation and Pre-harvesting of Microalgae in a Lab-scale Membrane Photobioreactor (MPBR)." Procedia Engineering 44 (2012): 712–13. http://dx.doi.org/10.1016/j.proeng.2012.08.541.

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24

González-Camejo, J., S. Aparicio, A. Jiménez-Benítez, et al. "Improving membrane photobioreactor performance by reducing light path: operating conditions and key performance indicators." Water Research 172 (April 2020): 115518. http://dx.doi.org/10.1016/j.watres.2020.115518.

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25

Prieto, Ana L., Robert Bair, Ivy Cormier, and Daniel H. Yeh. "Closing the Water-Energy-Nutrient Loop Using Anaerobic Membrane Biorector Coupled with Algae Photobioreactor." Proceedings of the Water Environment Federation 2011, no. 6 (2011): 362–73. http://dx.doi.org/10.2175/193864711802836625.

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26

Gao, Feng, Zhao-Hui Yang, Chen Li, Yu-jie Wang, Wei-hong Jin, and Yi-bing Deng. "Concentrated microalgae cultivation in treated sewage by membrane photobioreactor operated in batch flow mode." Bioresource Technology 167 (September 2014): 441–46. http://dx.doi.org/10.1016/j.biortech.2014.06.042.

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27

Boonchai, Rawiwan, and Gyutae Seo. "Microalgae membrane photobioreactor for further removal of nitrogen and phosphorus from secondary sewage effluent." Korean Journal of Chemical Engineering 32, no. 10 (2015): 2047–52. http://dx.doi.org/10.1007/s11814-015-0043-9.

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28

Kim, Hyun-Woo, Jing Cheng, and Bruce E. Rittmann. "Direct membrane-carbonation photobioreactor producing photoautotrophic biomass via carbon dioxide transfer and nutrient removal." Bioresource Technology 204 (March 2016): 32–37. http://dx.doi.org/10.1016/j.biortech.2015.12.066.

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29

Chang, Hai-Xing, Qian Fu, Yun Huang, et al. "An annular photobioreactor with ion-exchange-membrane for non-touch microalgae cultivation with wastewater." Bioresource Technology 219 (November 2016): 668–76. http://dx.doi.org/10.1016/j.biortech.2016.08.032.

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30

Praveen, Prashant, Jonathan Yun Ping Heng, and Kai-Chee Loh. "Tertiary wastewater treatment in membrane photobioreactor using microalgae: Comparison of forward osmosis & microfiltration." Bioresource Technology 222 (December 2016): 448–57. http://dx.doi.org/10.1016/j.biortech.2016.09.124.

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31

Lee, Jae-Cheol, Rumi Park, Kyu Seon Yoo, and Hyun-Woo Kim. "Coupling cold plasma and membrane photobioreactor for enhanced fouling control during livestock excreta treatment." Chemosphere 265 (February 2021): 129031. http://dx.doi.org/10.1016/j.chemosphere.2020.129031.

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32

Ojanen, Suvi, Esa Tyystjärvi, Henrik Holmberg, and Pekka Ahtila. "Porous membrane as a means of gas and nutrient exchange in a tubular photobioreactor." Journal of Applied Phycology 27, no. 3 (2014): 1169–75. http://dx.doi.org/10.1007/s10811-014-0397-0.

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33

Tse, Hei Tsun, Shuai Luo, Jian Li, and Zhen He. "Coupling microbial fuel cells with a membrane photobioreactor for wastewater treatment and bioenergy production." Bioprocess and Biosystems Engineering 39, no. 11 (2016): 1703–10. http://dx.doi.org/10.1007/s00449-016-1645-2.

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34

González-Camejo, J., R. Barat, D. Aguado, and J. Ferrer. "Continuous 3-year outdoor operation of a flat-panel membrane photobioreactor to treat effluent from an anaerobic membrane bioreactor." Water Research 169 (February 2020): 115238. http://dx.doi.org/10.1016/j.watres.2019.115238.

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35

González-Camejo, J., R. Barat, M. V. Ruano, A. Seco, and J. Ferrer. "Outdoor flat-panel membrane photobioreactor to treat the effluent of an anaerobic membrane bioreactor. Influence of operating, design, and environmental conditions." Water Science and Technology 78, no. 1 (2018): 195–206. http://dx.doi.org/10.2166/wst.2018.259.

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Abstract As microalgae have the ability to simultaneously remove nutrients from wastewater streams while producing valuable biomass, microalgae-based wastewater treatment is a win–win strategy. Although recent advances have been made in this field in lab conditions, the transition to outdoor conditions on an industrial scale must be further investigated. In this work an outdoor pilot-scale membrane photobioreactor plant was operated for tertiary sewage treatment. The effects of different parameters on microalgae performance were studied including: temperature, light irradiance (solar and artif
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36

Fan, Li-Hai, Ya-Tao Zhang, Lin Zhang, and Huan-Lin Chen. "Evaluation of a membrane-sparged helical tubular photobioreactor for carbon dioxide biofixation by Chlorella vulgaris." Journal of Membrane Science 325, no. 1 (2008): 336–45. http://dx.doi.org/10.1016/j.memsci.2008.07.044.

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37

Kim, Hyun Woo, Andrew K. Marcus, Jeong Hoon Shin, and Bruce E. Rittmann. "Advanced Control for Photoautotrophic Growth and CO2-Utilization Efficiency Using a Membrane Carbonation Photobioreactor (MCPBR)." Environmental Science & Technology 45, no. 11 (2011): 5032–38. http://dx.doi.org/10.1021/es104235v.

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38

Praveen, Prashant, and Kai-Chee Loh. "Nutrient removal in an algal membrane photobioreactor: effects of wastewater composition and light/dark cycle." Applied Microbiology and Biotechnology 103, no. 8 (2019): 3571–80. http://dx.doi.org/10.1007/s00253-019-09696-0.

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39

Parakh, Sheetal Kishor, Prashant Praveen, Kai-Chee Loh, and Yen Wah Tong. "Integrating gravity settler with an algal membrane photobioreactor for in situ biomass concentration and harvesting." Bioresource Technology 315 (November 2020): 123822. http://dx.doi.org/10.1016/j.biortech.2020.123822.

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40

Baral, Saroj Sundar, Davide Dionisi, Dileep Maarisetty, et al. "Biofuel production potential from wastewater in India by integrating anaerobic membrane reactor with algal photobioreactor." Biomass and Bioenergy 133 (February 2020): 105445. http://dx.doi.org/10.1016/j.biombioe.2019.105445.

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41

Zhu, Chenba, He Zhu, Longyan Cheng, and Zhanyou Chi. "Bicarbonate-based carbon capture and algal production system on ocean with floating inflatable-membrane photobioreactor." Journal of Applied Phycology 30, no. 2 (2017): 875–85. http://dx.doi.org/10.1007/s10811-017-1285-1.

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42

Keyvan Hosseini, Mahsa, Farshid Pajoum Shariati, Babak Bonakdarpour, and Amir Heydarinasab. "The effect of mechanical cleaning technology (MCT) on membrane fouling in a novel hybrid membrane photobioreactor (HMPBR) containing Arthrospira platensis (Spirulina)." Journal of Applied Phycology 32, no. 1 (2019): 83–91. http://dx.doi.org/10.1007/s10811-019-01944-0.

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43

Cheng, Jing, Xiaofeng Wu, Binbin Jin, Chenchen Zhang, Rongwei Zheng, and Lei Qin. "Coupling of Immobilized Photosynthetic Bacteria with a Graphene Oxides/PSF Composite Membrane for Textile Wastewater Treatment: Biodegradation Performance and Membrane Anti-Fouling Behavior." Membranes 11, no. 3 (2021): 226. http://dx.doi.org/10.3390/membranes11030226.

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The membrane bioreactor (MBR), as one of the promising technologies, has been widely applied for treatments of wastewater. However, serious membrane fouling and low microbial activity have been reported as major problems hindering the development of the MBR. To overcome these drawbacks, we intend to improve the MBR process in the view of membrane surface modification and efficient granular bacteria cultivation. In the present study, immobilized photosynthetic bacteria integration with graphene oxide (GO)/polysulfone (PSF) composite membrane separation (IPMBR) was first applied for textile wast
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44

Van Thuan, Nguyen, Ngo Thi Thanh Thuy, Nguyen Hong Hai, Nguyen Cong Nguyen, and Xuan-Thanh Bui. "Influence of microalgae retention time on biomass production in membrane photobioreactor using human urine as substrate." Vietnam Journal of Science, Technology and Engineering 60, no. 4 (2018): 66–70. http://dx.doi.org/10.31276/vjste.60(4).66-70.

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45

Lau, Allen K. S., M. R. Bilad, N. B. Osman, et al. "Sequencing batch membrane photobioreactor for simultaneous cultivation of aquaculture feed and polishing of real secondary effluent." Journal of Water Process Engineering 29 (June 2019): 100779. http://dx.doi.org/10.1016/j.jwpe.2019.100779.

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46

Gao, Feng, Zhao-Hui Yang, Chen Li, Guang-Ming Zeng, Dan-Hui Ma, and Li Zhou. "A novel algal biofilm membrane photobioreactor for attached microalgae growth and nutrients removal from secondary effluent." Bioresource Technology 179 (March 2015): 8–12. http://dx.doi.org/10.1016/j.biortech.2014.11.108.

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47

Solmaz, Alper, and Mustafa Işik. "Effect of Sludge Retention Time on Biomass Production and Nutrient Removal at an Algal Membrane Photobioreactor." BioEnergy Research 12, no. 1 (2019): 197–204. http://dx.doi.org/10.1007/s12155-019-9961-4.

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48

Gao, Feng, Chen Li, Zhao-Hui Yang, et al. "Continuous microalgae cultivation in aquaculture wastewater by a membrane photobioreactor for biomass production and nutrients removal." Ecological Engineering 92 (July 2016): 55–61. http://dx.doi.org/10.1016/j.ecoleng.2016.03.046.

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49

Lu, Miao-Miao, Feng Gao, Chen Li, and Hong-Li Yang. "Response of microalgae Chlorella vulgaris to Cr stress and continuous Cr removal in a membrane photobioreactor." Chemosphere 262 (January 2021): 128422. http://dx.doi.org/10.1016/j.chemosphere.2020.128422.

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50

Nguyen, Thanh-Tin, Xuan-Thanh Bui, Huu Hao Ngo, et al. "Nutrient recovery and microalgae biomass production from urine by membrane photobioreactor at low biomass retention times." Science of The Total Environment 785 (September 2021): 147423. http://dx.doi.org/10.1016/j.scitotenv.2021.147423.

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