Zobrazeno 1 - 8
of 8
pro vyhledávání: '"Ken Jer Wu"'
Publikováno v:
Journal of the Taiwan Institute of Chemical Engineers. 42:20-25
An isolated Klebsiella sp. HE1 strain was used to produce H 2 and other energy-rich soluble metabolites from glycerol at different pH values, temperatures, and glycerol concentrations. The highest cumulative hydrogen production (6.89 l), H 2 producti
Publikováno v:
Resources, Conservation and Recycling. 54:952-961
Mixture of polymer waste (LDPE/HDPE/PP) was pyrolyzed over various catalysts using a laboratory fluidized-bed reactor operating isothermally at ambient pressure. The systematic experiments discussed in this work show that the use of various catalysts
Publikováno v:
Process Biochemistry. 42:1165-1171
Hydrogen and ethanol are promising biofuels and of great potential to become alternatives to fossil fuels. In this work, two bioreactor systems, namely fluidized-bed (FBR) and packed-bed (PBR), were developed to produce H2 and ethanol simultaneously
Publikováno v:
Journal of the Chinese Institute of Chemical Engineers. 38:205-213
In this work, a continuously stirred tank bioreactor (CSTBR) was used to produce gaseous (hydrogen) and liquid (ethanol) biofuels simultaneously from carbohydrate substrates using immobilized anaerobic sludge with polyethylene–octene–elastomer (P
Publikováno v:
Process Biochemistry. 42:669-675
This study examined the feasibility of using polycaprolactone (PCL) and its composites (with starch and/or clay) in encapsulating cells of phosphate-solubilizing bacteria (PSB) for the development of biodegradable and “controlled-release” bacteri
Autor:
Ken Jer Wu, Jo Shu Chang
Publikováno v:
Process Biochemistry. 42:279-284
Cell immobilization techniques were adopted to biohydrogen production using immobilized anaerobic sludge as the seed culture. Sucrose-based synthetic wastewater was converted to H2 using batch and continuous cultures. A novel composite polymeric mate
Autor:
Ken-Jer Wu, 吳坤哲
97
In this dissertation, mixed and pure culture (i.e., Klebsiella sp. HE1) were immobilized to produce various biofuels, such as hydrogen, ethanol, 1,3-propanediol and 2,3-butanediol. A series of cell immobilization approaches were used to entra
In this dissertation, mixed and pure culture (i.e., Klebsiella sp. HE1) were immobilized to produce various biofuels, such as hydrogen, ethanol, 1,3-propanediol and 2,3-butanediol. A series of cell immobilization approaches were used to entra
Externí odkaz:
http://ndltd.ncl.edu.tw/handle/49833382819392397757
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