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17篇 您的检索式:作者名="Fengwu BAI"
    题名 作者 年代 出处 被引量
1Experiment study of a quartz tube falling particle receiver显示文摘这篇论文论述特殊设计的掉落的粒子接收装置的试验性的评估。一个石英试管在设计,粒子没被风与征服被使用。集中的太阳的放射被吸收并且由稳固的粒子变换成热精力流动里面石英试管。几个实验被进行在太阳的炉子系统上测试接收装置的动态热表演。在实验期间,最大的粒子温度上升是 212C,与 61.2% 的效率,它在小规模粒子接收装置与 0.2 m 的掉落的距离显示出好热表演。平均插头粒子温度被直接正常的发光(DNI ) 影响,象风那样的另外的因素加速。当更小的稳固的粒子更容易在螺旋石英试管困住时,稳固的粒子与更高的温度获得更大的粘性。,当稳固的粒子的温度增加,硅碳化物的热能力与粒子温度的上升变得更大,硅碳化物的温度上升减少。Tianjian WANG Fengwu BAI Shunzhou CHU Xiliang ZHANG Zhifeng WANG 2017Frontiers in Energy2017,11,4:3
2Sensitivity analysis of the numerical study on the thermal performance of a packed-bed molten salt thermocline thermal storage system 显示文摘Xu Chao Wang Zhifeng He Yaling Li Xin Bai Fengwu 2012Applied Energy2012,92,:1
3Effects of solid particle properties on the thermal performance of a packed-bed molten-salt thermocline thermal storage system 显示文摘Xu Chao Li Xin Wang Zhifeng He Yaling Bai Fengwu 2013Applied ThermalEngineering2013,57,12:1
4High - density cultivation of oleaginous yeast Rhodosporidium toruloides Y4 in fed - batch culture 显示文摘LI Yonghong ZHAO Zongbao BAI Fengwu 2007Enzyme and Microbial Technology2007,41,:1
5High‐titer n ‐butanol production by clostridium acetobutylicum JB200 in fed‐batch fermentation with intermittent gas stripping显示文摘Chuang Xue Jingbo Zhao Congcong Lu Shang‐Tian Yang Fengwu Bai I.‐Ching Tang 2012Biotechnol Bioeng2012,,11:1
6Redox potential control and applications in microaerobic and anaerobic fermentations 显示文摘Liu Chenguang Xue Chuang Lin Yenhan Bai Fengwu 2013Biotechnology Advances2013,31,2:1
7Ethanol fer- mentation with Kluyveromyces marxianus from Jerusalem arti- choke grown in salina and irrigated with a mixlure of seawa- ter and freshwater显示文摘Yuan Wenjie Zhao Xinqing Bai Fengwu 2008J Appl Microbiol2008,105,:1
8Ethanol tolerance and the variation of plasma membrane composition of yeast floc populations with different size distribution显示文摘Juanjuan Lei Xinqing Zhao Xumeng Ge Fengwu Bai 2007Journal of Biotechnology2007,,3:1
9High- density cultivation of oleaginous yeast Rhodosporidium toruloides Y4 in fed-batch culture显示文摘Yonghong Li Zongbao Zhao Fengwu Bai 2007Enzyme and Microbial Technology2007,,41:1
10Ethanol fermentation technologies from sugar and starch feedstocks 显示文摘Bai Fengwu Anderson W A Moo-Young M 2008Biotechnol Adv2008,26,:1
11Effects of medium nutrition on cell growth and isocamptothecin A and B production by suspension cell culture of Camptotheca acuminata显示文摘张冬艳 Yu Fang Bai Fengwu An Lijia 2006High Technology Letters2006,12,4:1
12Yeast flocculation: New story in fuel ethanol production 显示文摘Zhao Xinqing Bai Fengwu 2009Biotechnology Advances2009,27,6:1
13Enhancing ethanol tolerance of a self-flocculating fusant of Schizosoa ccharomyces pombe and Saccharomyces cerevisiae by Mg2+ via reduction in plasma membrane permeability 显示文摘Hu Chunkeng Bai Fengwu An Lijia 2003Bioteehnol Lett2003,25,:1
14Enhancing ethanol tolerance of a self-flocculating fusant of Schizosaccharomyces pombe and Saccharomyces cerevisiae by Mg^2+ via reduction in plasma membrane permeability显示文摘Hu Chunkeng Bai Fengwu An Lijia 2003Biotechnol Lett2003,,25:1
15On-line monitoring and characterization of flocculating yeast cell flocs during continuous ethanol fermentation 显示文摘Ge Xumeng Zhao Xinqing Bai Fengwu 2005Biotechnol Bioeng2005,90,:1
16Optical performance analysis of an innovative linear focus secondary trough solar concentrating system显示文摘The parabolic trough solar concentrating system has been well developed and widely used in commercial solar thermal power plants. However, the conventional system has its drawbacks when connecting receiver tube parts and enhancing the concentration ratio. To overcome those inherent disadvantages, in this paper, an innovative concept of linear focus secondary trough concentrating system was proposed, which consists of a fixed parabolic trough concentrator, one or more heliostats, and a fixed tube receiver. The proposed system not only avoids the end loss and connection problem on the receiver during the tracking process but also opens up the possibility to increase the concentration ratio by enlarging aperture. The design scheme of the proposed system was elaborated in detail in this paper.Besides, the optical performance of the semi and the whole secondary solar trough concentrator was evaluated by using the ray tracing method. This innovative solar concentrating system shows a high application value as a solar energy experimental device.Xiliang ZHANG Zhiying CUI Jianhan ZHANG Fengwu BAI Zhifeng WANG 2019Frontiers in Energy2019,13,3:0
17Amine-functionalized hierarchically porous carbon supported Pd nanocatalysts for highly efficient H2 generation from formic acid with fast-diffusion channels显示文摘Formic acid(FA)has come to be considered a potential candidate for hydrogen storage,and the development of efficient catalysts for H2releasing is crucial for realizing the sustainable process from FA.Herein,we have developed the ultrafine Pd nanoparticle(NPs)with amine-functionalized carbon as a support,which was found to show an excellent catalytic activity in H_(2)generation from FA dehydrogenation.The synergetic mechanism between amine-group and Pd active site was demonstrated to facilitate H2generation byβ-hydride elimination.Moreover,the texture of support for Pd NPs also plays an important role in determining the reactivity of FA,since the diffusion of gaseous products makes the kinetics of diffusion as a challenge in this high performance Pd catalysts.As a result,the as-prepared Pd/NH_(2)-TPC catalyst with the small sized Pd nanoparticles and the hierarchically porous structures shows a turnover of frequency(TOF)value of 4312 h^(-1)for the additive-free FA dehydrogenation at room temperature,which is comparable to the most promising heterogeneous catalysts.Our results demonstrated that the intrinsic catalytic activities of active site as well as the porous structure of support are both important factors in determining catalytic performances in H2generation from FA dehydrogenation,which is also helpful to develop high-activity catalysts for other advanced gas-liquid-solid reactions systems.Xianzhao Shao Xinyi Miao Fengwu Tian Miaomiao Bai Xiaosha Guo Wei Wang Zuoping Zhao Xiaohui Ji Miyi Li Fangan Deng 2023Journal of Energy Chemistry2023,,1:0
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