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  • Biomembrane technology offers promising innovative application of membranes. A membrane is used as a support material for biofilm growth. Such arrangement allows the selective transport of required gas or liquid to the microorganisms of biofilm. The potential of biomembrane technology for microaerobic desulfurization of biogas is evaluated and discussed. A selective transport of different components of biogas and air was confirmed using silicone rubber membrane. This way the concentration of hydrogen sulfide in biogas can be reduced significantly. The influence of oxygen consumption in biofilm and change in oxygen transfer will be evaluated in next stage of the research
  • Biomembrane technology offers promising innovative application of membranes. A membrane is used as a support material for biofilm growth. Such arrangement allows the selective transport of required gas or liquid to the microorganisms of biofilm. The potential of biomembrane technology for microaerobic desulfurization of biogas is evaluated and discussed. A selective transport of different components of biogas and air was confirmed using silicone rubber membrane. This way the concentration of hydrogen sulfide in biogas can be reduced significantly. The influence of oxygen consumption in biofilm and change in oxygen transfer will be evaluated in next stage of the research (en)
Title
  • Use of biomembrane technology in microaerobic sludge digestion
  • Use of biomembrane technology in microaerobic sludge digestion (en)
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  • Use of biomembrane technology in microaerobic sludge digestion
  • Use of biomembrane technology in microaerobic sludge digestion (en)
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  • RIV/60461373:22320/14:43899016!RIV15-TA0-22320___
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  • RIV/60461373:22320/14:43899016
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  • silicone rubber membrane; oxygen permeability; microaerobic condition; biogas desulfurization; biomembrane; anaerobic digestion (en)
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  • Jeníček, Pavel
  • Procházka, Jindřich
  • Pícha, Aleš
  • Bartáček, Jan
  • Alvarez Da Costa, Ana
http://localhost/t...ganizacniJednotka
  • 22320
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