Research Papers by Binbing Han
1 - 7 of 7 results
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Acetic acid is a compound commonly found in hemicellulosic hydrolysates. This weak acid strongly influences the bioconversion of sugar containing hydrolysates. Previous investigators have used anion exchange resins for acetic acid removal from different hemicellulosic hydrolysates. In this study, th
Desalination 193 (2006)
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Gas-filled membrane absorption has been used to remove cyanide from different cyanide containing wastewaters. In this study, cyanide removal from an industrial praziquantel wastewater has been investigated. The wastewater contained a high cyanide concentration and turbidity due to the presence of li
Desalination 195 (2006)
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Arsenic contamination of drinking water is a concern in many parts of the world. In the United States, the Environmental Protection Agency recently reduced the maximum contaminant level of arsenic in drinking water from 50 to 10 µg/L (ppb). In Bangladesh the arsenic concentration in drinking water c
Desalination 169 (2004)
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In modern blood oxygenators, microporous membranes (flat sheet or hollow fibre) are used to separate the blood and gas phases. Blood flows on one side of the membrane while gas (usually oxygen or air) flows on the other side. Since the membranes used are hydrophobic (e.g., polypropylene, Teflon), th
Desalination 148 (2002)
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Flocculation of yeast cells prior to microfiltration leads to improved permeate flux. A number of commercially available cationic polyacrylamides from Cytec Industries (Stamford, CT, USA) were tested. These flocculants had different molecular weights and charge densities. The optimum flocculant dose
Desalination 147 (2002)
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Arsenic removal from drinking water is a major problem in many parts of the world. We have investigated arsenic removal by flocculation and microfiltration. Ferric chloride and ferric sulphate have been used as flocculants. The use of small amounts of cationic polymeric flocculants, as flocculation
Desalination 145 (2002)
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A computational model has been developed for the simulation and optimization of the pervaporation process. This model involves solving coupled mass and energy balances, and chemical potential equations using a genetic algorithm. A visual, windows-based, user-friendly design software has been develop
Desalination 145 (2002)
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