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Featured researches published by Dan Qu.


Journal of Hazardous Materials | 2009

Experimental study of arsenic removal by direct contact membrane distillation

Dan Qu; Jun Wang; Deyin Hou; Zhaokun Luan; Bin Fan; Changwei Zhao

Arsenite (As(III)) and arsenate (As(V)) removal by direct contact membrane distillation (DCMD) were investigated with self-made polyvinylidene fluoride (PVDF) membranes in the present work. Permeability and ion rejection efficiency of the membrane were tested before the arsenic removal experiments. A maximum permeate flux 20.90 kg/m(2)h was obtained, and due to the hydrophobic property, the PVDF membrane had high rejection of inorganic anions and cations which was independent of the solution pH and the temperature. The experimental results indicated that DCMD process had higher removal efficiency of arsenic than pressure-driven membrane processes, especially for high-concentration arsenic and arsenite removal. The experimental results indicated that the permeate As(III) and As(V) were under the maximum contaminant limit (10 microg/L) until the feed As(III) and As(V) achieved 40 and 2000 mg/L, respectively. The 250 h simultaneous DCMD performance of 0.5mg/L As(III) and As(V) solution was carried out, respectively. The permeate arsenic was not detected during the process which showed the PVDF membrane had stable arsenic removal efficiency. Membrane morphology changed slightly after the experiments, however, the permeability and the ion rejection of the membrane did not change.


Water Science and Technology | 2010

Desalination of brackish groundwater by direct contact membrane distillation

Deyin Hou; Jun Wang; Dan Qu; Zhaokun Luan; Changwei Zhao; Xiaojing Ren

The direct contact membrane distillation (DCMD) applied for desalination of brackish groundwater with self-made polyvinylidene fluoride (PVDF) membranes was presented in the paper. The PVDF membrane exhibited high rejection of non-volatile inorganic salt solutes and a maximum permeate flux 24.5 kg m(-2) h(-1) was obtained with feed temperature at 70 degrees C. The DCMD experimental results indicated that the feed concentration had no significant influence on the permeate flux and the rejection of solute. When natural groundwater was used directly as the feed, the precipitation of CaCO(3) would be formed and clog the hollow fibre inlets with gradual concentration of the feed, which resulted in a rapid decline of the module efficiency. The negative influence of scaling could be eliminated by acidification of the feed. Finally, a 250 h DCMD continuous desalination experiment of acidified groundwater with the concentration factor at constant 4.0 was carried out. The permeate flux kept stable and the permeate conductivity was less than 7.0 microS cm(-1) during this process. Furthermore, there was no deposit observed on the membrane surface. All of these demonstrated that DCMD could be efficiently used for production of high-quality potable water from brackish groundwater with water recovery as high as 75%.


Water Science and Technology | 2009

Preparation of hydrophobic PVDF hollow fiber membranes for desalination through membrane distillation

Deyin Hou; Jun Wang; Dan Qu; Zhaokun Luan; Changwei Zhao; Xiaojing Ren

Fabrication of polyvinylidene fluoride (PVDF) hydrophobic asymmetric hollow fiber membranes was studied by introducing inorganic salt LiCl and water soluble polymer polyethylene glycol (PEG) 1500, using N,N-dimethylacetamide (DMAc) as solvent and tap water as the coagulation medium. The membranes properties also were tested and characterized. It is found that the non-solvent additive can increase membranes porosity, ether LiCl or PEG 1500. Because of the addition of PEG 1500, the PVDF membranes obtained a rough topography on the membrane surface and the contact angle of the PVDF membranes increased to 113.50 degrees compared to 89.82 degrees of the PVDF membranes spun without an additive. During direct contact membrane distillation (DCMD) of 0.6 M sodium chloride solution, the PVDF membranes spun with PEG 1500 as a non-solvent additive achieved higher water permeation flux compared to the membranes spun from PVDF/DMAc and PVDF/DMAC/LiCl dopes, but the latter two membranes exhibited higher salt rejection rate.


Separation and Purification Technology | 2009

Fabrication and characterization of hydrophobic PVDF hollow fiber membranes for desalination through direct contact membrane distillation

Deyin Hou; Jun Wang; Dan Qu; Zhaokun Luan; Xiaojing Ren


Separation and Purification Technology | 2009

Integration of accelerated precipitation softening with membrane distillation for high-recovery desalination of primary reverse osmosis concentrate

Dan Qu; Jun Wang; Longlong Wang; Deyin Hou; Zhaokun Luan; Baoqiang Wang


Separation and Purification Technology | 2008

Effect of coagulation pretreatment on membrane distillation process for desalination of recirculating cooling water

Jun Wang; Dan Qu; Muer Tie; Haijing Ren; Xianjia Peng; Zhaokun Luan


Desalination | 2009

Study on concentrating primary reverse osmosis retentate by direct contact membrane distillation

Dan Qu; Jun Wang; Bin Fan; Zhaokun Luan; Deyin Hou


Journal of Cleaner Production | 2008

Integration of direct contact membrane distillation and recirculating cooling water system for pure water production

Jun Wang; Bin Fan; Zhaokun Luan; Dan Qu; Xianjia Peng; Deyin Hou


Archive | 2010

Resource treatment method for hydrochloric acid pickling waste liquor

Zhaokun Luan; Deyin Hou; Zhiping Jia; Wang Jun; Dan Qu; Xiaojing Ren; Zhen Liang


Water Science & Technology: Water Supply | 2010

Concentrating primary reverse osmosis concentrate by direct contact membrane distillation

Dan Qu; Jun Wang; Deyin Hou; Zhaokun Luan; Baoqiang Wang

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Zhaokun Luan

Chinese Academy of Sciences

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Deyin Hou

Chinese Academy of Sciences

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Jun Wang

Chinese Academy of Sciences

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Xiaojing Ren

Chinese Academy of Sciences

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Bin Fan

Chinese Academy of Sciences

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Changwei Zhao

Chinese Academy of Sciences

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Xianjia Peng

Chinese Academy of Sciences

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Baoqiang Wang

China University of Mining and Technology

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Zhiping Jia

Chinese Academy of Sciences

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Haijing Ren

Chinese Academy of Sciences

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