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Combined intensive preconditioning regimen allo-HSCT with imatinib for treatment of Ph chromosome positive acute lymphocyte leukemia
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作者 罗毅 《外科研究与新技术》 2011年第4期296-296,共1页
Objective To evaluate the outcome of combination of intensive preconditioning regimen allo - HSCT with imatinib for treatment of Ph chromosome positive acute lymphocyte leukemia ( ALL) . Methods Between 2009 and 2010,... Objective To evaluate the outcome of combination of intensive preconditioning regimen allo - HSCT with imatinib for treatment of Ph chromosome positive acute lymphocyte leukemia ( ALL) . Methods Between 2009 and 2010,8 patients diagnosed as Ph + ALL received 展开更多
关键词 HSCT GVHD Combined intensive preconditioning regimen allo-HSCT with imatinib for treatment of Ph chromosome positive acute lymphocyte leukemia
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Positively charged microporous ceramic membrane for the removal of Titan Yellow through electrostatic adsorption 被引量:5
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作者 Xiuting Cheng Na Li +3 位作者 Mengfu Zhu Lili Zhang Yu Deng Cheng Deng 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2016年第6期204-212,共9页
To develop a depth filter based on the electrostatic adsorption principle, positively charged microporous ceramic membrane was prepared from a diatomaceous earth ceramic membrane.The internal surface of the highly por... To develop a depth filter based on the electrostatic adsorption principle, positively charged microporous ceramic membrane was prepared from a diatomaceous earth ceramic membrane.The internal surface of the highly porous ceramic membrane was coated with uniformly distributed electropositive nano-Y2O3 coating. The dye removal performance was evaluated through pressurized filtration tests using Titan Yellow aqueous solution. It showed that positively charged microporous ceramic membrane exhibited a flow rate of 421 L/(m^2·hr) under the trans-membrane pressure of 0.03 bar. Moreover it could effectively remove Titan Yellow with feed concentration of 10 mg/L between pH 3 to 8. The removal rate increased with the enhancement of the surface charge properties with a maximum rejection of 99.6%. This study provides a new and feasible method of removing organic dyes in wastewater. It is convinced that there will be a broad market for the application of charged ceramic membrane in the field of dye removal or recovery from industry wastewater. 展开更多
关键词 Positively charged ceramic membrane Electrostatic adsorption Organic dyes Wastewater treatment
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