Shumei Wen
Chinese Academy of Sciences
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Publication
Featured researches published by Shumei Wen.
Bioresource Technology | 2015
Qinghua Zhang; Shengzhang Xue; Chenghu Yan; Xia Wu; Shumei Wen; Wei Cong
To reduce the dead zone and enhance the flashing light effect, a novel open raceway pond with flow deflectors and wing baffles was developed. The hydrodynamics and light characteristics in the novel open raceway pond were investigated using computational fluid dynamics. Results showed that, compared with the control pond, pressure loss in the flow channel of the pond with optimized flow deflectors decreased by 14.58%, average fluid velocity increased by 26.89% and dead zone decreased by 60.42%. With wing baffles built into the raceway pond, significant swirling flow was produced. Moreover, the period of average L/D cycle was shortened. In outdoor cultivation of freshwater Chlorella sp., the biomass concentration of Chlorella sp. cultivated in the raceway pond with wing baffles was 30.11% higher than that of the control pond.
Biofouling | 2017
Dongwei Wang; Xia Wu; Lixia Long; Xubo Yuan; Qinghua Zhang; Shengzhang Xue; Shumei Wen; Chenghu Yan; Jianming Wang; Wei Cong
Abstract To improve the antifouling (AF) properties of photobioreactors (PBR) for microalgal cultivation, using trihydroxymethyl aminomethane (tris) as the linking agent, a series of polyethylene (PE) films grafted with sulfobetaine (PE-SBMA) with grafting density ranging from 23.11 to 112 μg cm−2 were prepared through surface-initiated atom transfer radical polymerization (SI-ATRP). It was found that the contact angle of PE-SBMA films decreased with the increase in the grafting density. When the grafting density was 101.33 μg cm−2, it reached 67.27°. Compared with the PE film, the adsorption of protein on the PE-SBMA film decreased by 79.84% and the total weight of solid and absorbed microalgae decreased by 54.58 and 81.69%, respectively. Moreover, the transmittance of PE-SBMA film recovered to 86.03% of the initial value after cleaning, while that of the PE film recovered to only 47.27%. The results demonstrate that the AF properties of PE films were greatly improved on polySBMA-grafted surfaces.
Chemical Engineering & Technology | 2012
Qinghua Zhang; Zhihui Wang; Shumei Wen; Guoliang Liu; Xia Wu; Wei Cong
Algal Research-Biomass Biofuels and Bioproducts | 2015
Ruimin Wang; Shengzhang Xue; Dongmei Zhang; Qinghua Zhang; Shumei Wen; Dezhu Kong; Chenghu Yan; Wei Cong
Chemical Engineering & Technology | 2013
Zhihui Wang; Shumei Wen; Qinghua Zhang; Guoliang Liu; Xia Wu; Wei Cong
Journal of Microbiology and Biotechnology | 2012
Yilu Bao; Shumei Wen; Wei Cong; Xia Wu; Zhengxiang Ning
Archive | 2011
Shaoyuan Shi; Xiyun Zhao; Wei Cong; Xia Wu; Shumei Wen; Qian Wang
Minerals Engineering | 2013
Guoliang Liu; Jian Jin; Shumei Wen; Zhihui Wang; Qinghua Zhang; Wei Cong
Archive | 2012
Shaoyuan Shi; Xiyun Zhao; Wei Cong; Xia Wu; Shumei Wen; Qian Wang
Archive | 2012
Wei Cong; Zhongliang Sun; Ming Liu; Xia Wu; Dongmei Zhang; Shumei Wen