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57篇 您的检索式:作者名="Baikun"
    题名 作者 年代 出处 被引量
1颗粒活性炭改进阳极提升微生物燃料电池性能的研究显示文摘微生物燃料电池(MFCs)的阳极是产电菌降解有机污染物并产电的场所,是微生物燃料电池性能提升的限制性因素之一,本研究通过改进阳极提升微生物燃料电池产电性能.试验采用了两种类型的微生物燃料电池,用作对比的常规炭布阳极微生物燃料电池(Carbon-MFCs)和用颗粒活性炭(GAC)改进阳极的微生物燃料电池(GAC-MFCs),对比实验结果表明用GAC改进阳极可以有效提高微生物燃料电池功率输出:Carbon-MFCs在一个星期驯化后,输出电压稳定在300mV,最大功率密度到达200mW/m2;GAC-MFCs需要较长驯化期,在一个星期驯化后,输出电压100mV,但在2000h后,输出电压稳定在380mV,阳极的改进使输出电压提高26.7%,最大输出功率密度达到560mW/m2,提高了180%;颗粒活性炭的巨大比表面积增加了生物膜载体面积,提高了产电菌和协同参与产电菌总量,使库伦效率提高了3.4倍;颗粒活性炭的物理和电学特性使电池内阻降低38%.结果显示:使用颗粒活性炭作阳极可有效提高微生物燃料电池功率输出.李凤祥 周启星 Baikun Li 2010应用基础与工程科学学报2010,18,6:10
2Selections of data preprocessing methods and similarity metrics for gene cluster analysis显示文摘聚类是为基因表示数据分析的主要探索技术之一。仅仅与合适的类似度量标准并且数据集是什么时候适当地 preprocessed,高质量的罐头结果在簇分析被获得。在这研究,有外部评估标准的基因表达式数据集作为由行,由列的正规化或由 base-2 的对数转变的正规化是 preprocessed,并且被层次聚类, k 工具聚类和有象类似度量标准的皮尔森关联系数或欧几里德几何学的距离的自我组织的地图(SOM ) 随后聚类。最后,簇的质量被调整的边索引评估。结果说明聚类的那 k 工具, SOM 比在基因聚类,和 SOM 的层次聚类有明显的优点当随机初始化时,比 k 工具好一些。当类似度量标准和数据集由行使正常化,它也证明层次聚类比较喜欢皮尔森关联系数。同时,聚类的 k 工具和 SOM 能与欧几里德几何学的距离生产更好的簇,对数转变数据集。这些结果将负担得起珍贵参考到基因表示簇分析的实现。YANG Chunmei WAN Baikun GAO Xiaofeng 2006Progress in Natural Science:Materials International2006,16,6:4
3The effect of salinity on waste activated sludge alkaline fermentation and kinetic analysis显示文摘The effect of salinity on sludge alkaline fermentation at low temperature(20°C) was investigated, and a kinetic analysis was performed. Different doses of sodium chloride(Na Cl, 0–25 g/L) were added into the fermentation system. The batch-mode results showed that the soluble chemical oxygen demand(SCOD) increased with salinity. The hydrolysate(soluble protein, polysaccharide) and the acidification products(short chain fatty acids(SCFAs), NH+4–N, and PO_4^(3-)–P) increased with salinity initially, but slightly declined respectively at higher level salinity(20 g/L or 20–25 g/L). However, the hydrolytic acidification performance increased in the presence of salt compared to that without salt.Furthermore, the results of Haldane inhibition kinetics analysis showed that the salt enhanced the hydrolysis rate of particulate organic matter from sludge particulate and the specific utilization of hydrolysate, and decreased the specific utilization of SCFAs. Pearson correlation coefficient analysis indicated that the importance of polysaccharide on the accumulation of SCFAs was reduced with salt addition, but the importance of protein and NH+4–N on SCFA accumulation was increased.Baodan Jin Shuying Wang Liqun Xing Baikun Li Yongzhen Peng 2016Journal of Environmental Sciences2016,28,5:4
4Optimization of denitrifying phosphorus removal in a predenitrification anaerobic/anoxic/post-aeration+nitrification sequence batch reactor(pre-A_(2)NSBR)system:Nitrate recycling,carbon/nitrogen ratio and carbon source type显示文摘Because the efficiency of biological nutrient removal is always limited by the deficient carbon source for the low carbon/nitrogen(C/N)ratio in real domestic sewage,the denitrifying phosphorus removal(DNPR)was developed as a simple and efficient method to remove nitrogen and phosphorous.In addition,this method has the advantage of saving aeration energy while reducing the sludge production.In this context,a pre-denitrification anaerobic/anoxic/post-aeration+nitrification sequence batch reactor(pre-A_(2)NSBR)system,which could also reduce high ammonia effluent concentration in the traditional two-sludge DNPR process,is proposed in this work.The pre-A_(2)NSBR process was mainly composed of a DNPR SBR and a nitrifying SBR,operating as alternating anaerobic/anoxic/post-aeration+nitrification sequence.Herein,the long-term performance of different nitrate recycling ratios(0-300%)and C/N ratios(2.5-8.8),carbon source type,and functional microbial community were studied.The results showed that the removal efficiency of total inorganic nitrogen(TIN,including NH4^(+)-N,NO_(2)^(-)-N,and NO_(3)^(-)-N)gradually increased with the nitrate recycling ratios,and the system reached the highest DNPR efficiency of 94.45% at the nitrate recycling ratio of 300%.The optimum C/N ratio was around 3.9-7.3 with a nitrogen and phosphorus removal efficiency of 80.15%and 93.57%,respectively.The acetate was proved to be a high-quality carbon source for DNPR process.The results of fluorescence in situ hybridization(FISH)analysis indicated that nitrifiers and phosphorus accumulating organisms(PAOs)were accumulated with a proportion of 19.41%and 26.48%,respectively.Weihua Zhao Meixiang Wang Jianwei Li Yu Huang Baikun Li Cong Pan Xiyao Li Yongzhen Peng 2018Frontiers of Environmental Science & Engineering2018,12,5:3
5Anoxic biological phosphorus uptake and the effect of excessive aeration on biological phosphorus removal in the A2 O proeess显示文摘PENG Yongzhen WANG Xiaolian LI Baikun 2006Desalination2006,189,123:1
6Biohydrogen productionfrom molasses by anaerobic fermentation with a pilot-scale bioreactorsystem显示文摘RenNanqi Li Jianzheng Li Baikun 2006International Journal of Hydrogen Energy2006,31,15:1
7Microbial Fuel Cells: The Effects of Configurations, Electrolyte Solutions, and Electrode Materials on Power Generation显示文摘Fengxiang Li Yogesh Sharma Yu Lei Baikun Li Qixing Zhou 2010Applied Biochemistry and Biotechnology2010,,1:1
8The combined effects of COD/N ratio and nitrate recycling ratio on nitrogen and phosphorus removal in anaerobic/anoxic/aerobic(A2/O)-biological aerated filter(BAF) systems显示文摘Chen Yongzhi Li Baikun Ye Liu 2015Biochemical Engineering Journal2015,93,10:1
9Shortcut nitrification-denitrification by real-time control strategies 显示文摘Gao Dawen Peng Yongzhen Li Baikun 2009Bioresource Technology2009,100,7:1
10Anoxic biological phosphorus uptake and the effect of excessive aeration on biological phosphorus removal in the A2/O process 显示文摘PENG Yongzhen WANG Xiaolian LI Baikun 2006Desalination2006,189,1:1
11Anoxic biological phosphorus uptake and the effect of excessive aeration on biological phosphorus removal in the A2/O process显示文摘Peng Yongzhen Wang Xiaolian Li Baikun 2006Desalination2006,189,123:1
12Manganese dioxide as a new cathode catalyst in microbial fuel cells显示文摘Xiang Li Boxun Hu Steven Suib Yu Lei Baikun Li 2009Journal of Power Sources2009,,9:1
13Biohydrogen production from molasses by anaerobic fermentation with a pilot-scale bioreactor system显示文摘Nanqi tLen Jianzheng Li Baikun Li 2006International journal of hydrogen energy2006,,31:1
14Hydrogen production from diluted molasses by anaerobic hydrogen producing bacteria in an anaerobic baffled reactor (ABR)显示文摘Jianzheng Li Baikun Li Gefu Zhu Nanqi Ren Lixin Bo Junguo He 2007International Journal of Hydrogen Energy2007,,15:1
15Characterization of calcined kaolin/TiO2 composite particle material prepared by mechano-chemical method显示文摘Baikun Wang Hao Ding Yanxi Deng 2010Journal of Wuhan University of Technology - Mater Sci Ed2010,,5:1
16Anoxic biological phosphorus uptake and the effect of excessive aeration on biological phosphorus removal in the A2O process 显示文摘PENG Yongzhen WANG Xiaolian LI Baikun 2006Desalination2006,189,123:1
17The comparison of alkalinity and ORP as indicators for nitrification and denitrification in a sequencing batch reactor (SBR) 显示文摘Li Baikun Irvin S 2007Biochemical Engineering Journal2007,34,3:1
18显示文摘LIUXin-yuan BAIKun(刘新园 白煜) 中国陶瓷0,,:1
19Biohydrogen production from molasses by anaerobic fermentation with a pilot-scale bioreactor system显示文摘Nanqi Ren Jianzheng Li Baikun Li 2006International Journal of Hydrogen Energy2006,31,15:1
20A hybrid BCI speller paradigm combining P300 potential and the SSVEP blocking feature 显示文摘Xu Minpeng Qi Hongzhi Wan Baikun 2013Journal of Neural Engineering2013,10,02:1
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