"Enhanced Mass Transfer in Microbubble Driven Airlift Bioreactor for Microalgal Culture"
written by Kezhen Ying, Mahmood K. H. Al-Mashhadani, James O. Hanotu, Daniel J. Gilmour, William B. Zimmerman,
published by Engineering, Vol.5 No.9, 2013
has been cited by the following article(s):
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[11] Factors affecting bubble size in ionic liquids
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[12] Effects of pH and Carbon Source on Synechococcus PCC 7002 Cultivation: Biomass and Carbohydrate Production with Different Strategies for pH Control
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[13] Microfluidic bubbler facilitates near complete mass transfer for sustainable multiphase and microbial processing
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[14] In-situ disinfection and a new downstream processing scheme from algal harvesting to lipid extraction using ozone-rich microbubbles for biofuel production
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[15] Application of gas diffusion biocathode in microbial electrosynthesis from carbon dioxide
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[16] Algal Research
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[17] Suman Bajracharya, Karolien Vanbroekhoven, Cees JN Buisman
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[18] DBD plasma microbubble reactor for pre-treatment of lignocellulosic biomass
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[19] Airlift bioreactor for biological applications with microbubble mediated transport processes
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[20] Periodic CO2 Dosing Strategy for Dunaliella salina Batch Culture
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[21] Bubble Reactions to Improve Sustainability
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[22] Characteristics of extracellular hydrocarbon-rich microalga Botryococcus braunii for biofuels production: recent advances and opportunities
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[23] DBD plasma microbubble reactor for pre-treatment of lignocellulosic biomass [poster]
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[24] MINIMIZING OPTIMAL CO2 FEED TO ALGAL CULTURES UTLIZING MICROFLUIDIC DEVICES GENERATING MICRON-SIZED BUBBLES
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[25] Effects of CO2 and pH on growth of the microalga dunaliella salina
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[26] Investigation on micro-bubble flotation and coagulation for the treatment of anaerobically treated palm oil mill effluent (POME)
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[27] Effects of CO and pH on growth of the microalga Dunaliella salina
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