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89篇 您的检索式:作者名="LOGAN Bruce"
    题名 作者 年代 出处 被引量
1稀土Nd改性纳米TiO2-NTs/SnO2-Sb电极的制备、结构及性能显示文摘采用溶剂热法制备了稀土Nd掺杂TiO_2-NTs/SnO_2-Sb电极,以苯酚作为典型有机物,考察了电极组成、结构与电极电催化效能的关系,实验结果表明,Nd的掺杂量对电极电催化性能有较大的影响,当前驱液中Nd/Sn原子摩尔百分比为3%时,电极的电催化活性最佳,对苯酚浓度及TOC的降解速率较空白电极(Nd0%)提高了60%及52%。利用SEM及XRD分析方法对所制备的电极进行了形貌及晶形结构的表征,并计算了电极表面SnO_2晶胞参数以及平均粒径,结果显示,适量地掺杂Nd元素后,电极表面更加致密,SnO_2平均粒径变小。通过XPS分析电极表面元素组成,并计算电极表面吸附氧含量,结果表明,由于Nd元素的存在,降低了涂层中晶格氧(O_(lat))的含量,减弱了电子的吸引作用,促使了Sn^(4+)周围电子云密度升高,从而电极表面Sn元素特征衍射峰表现为向低结合能方向偏移。与空白电极(Nd0%)相比,改性后的电极(Nd3%)涂层表面Sb含量下降,且吸附氧(O_(ads))含量上升,为空白电极的1.6倍。EPR测试结果进一步证实了改性后电极性能提高的机制,Nd元素的引入,增加了电极涂层表面氧空位的浓度,使得电极涂层表面各元素的化学环境发生改变。掺杂改性后,电极的析氧电位以及产羟基自由基能力均得以提升,从而促使电极催化活性大大增强。杨莉莎 刘俊峰 黄琳琳 郭嘉钰 冯玉杰 LOGAN Bruce 2018环境工程学报2018,12,8:6
2Electricity generation using membrane and salt bridge microbial fuel cells显示文摘Booki Min Shaoan Cheng Bruce E. Logan 2005Water Research2005,,9:2
3Scaling up microbial fuel cells and other bioelectrochemical systems显示文摘Bruce E. Logan 2010Applied Microbiology and Biotechnology2010,,6:2
4Using cathode spacers to minimize reactor size in air cathode microbial fuel cells显示文摘Qiao Yang Yujie Feng Bruce E. Logan 2012Bioresource Technology2012,,:2
5Increasing power generation for scaling up single-chamber air cathode microbial fuel cells显示文摘Shaoan Cheng Bruce E. Logan 2010Bioresource Technology2010,,6:2
6Power generation in fed-batch microbial fuel ceils as a function of ionic strength, temperature, and reactor configuration 显示文摘Liu Hong Cheng Shaoan Logan Bruce E 2005Environmental Science and Technology2005,39,:1
7Electrochemical reduction of oxygen with iron phthalocyanine in neutral media显示文摘Eileen Hao Yu Shaoan Cheng Bruce E. Logan Keith Scott 2009Journal of Applied Electrochemistry2009,,5:1
8Production of hydrogen from domestic wastewater using a bioelectrochemically assisted microbial reactor (BEAMR)显示文摘Jenna Ditzig Hong Liu Bruce E. Logan 2007International Journal of Hydrogen Energy2007,,13:1
9Hydrogen and electricity production from a food processing wastewater using fermentation and microbial fuel cell technologies显示文摘SangEun Oh Bruce E. Logan 2005Water Research2005,,19:1
10Proton exchange membrane and electrode surface areas as factors that affect power generation in microbial fuel cells显示文摘Sang-Eun Oh Bruce E. Logan 2006Applied Microbiology and Biotechnology2006,,2:1
11Ammonia treatment of carbon cloth anodes to enhance power generation of microbial fuel cells显示文摘Shaoan Cheng Bruce E. Logan 2006Electrochemistry Communications2006,,3:1
12Electricity-producing bacterial corn- munities in microbial fuel cells 显示文摘BRUCE E LOGAN JOHN M 2006TRENDS in Microbiology2006,14,12:1
13Electricity generation from cysteine in a microbial fuel cell显示文摘Bruce E. Logan Cassandro Murano Keith Scott Neil D. Gray Ian M. Head 2004Water Research2004,,5:1
14Proton exchange membrane and electrode surface areas as factors that affect power generation in microbial fuel cells显示文摘Sang-Eun Oh Bruce E. Logan 2006Applied Microbiology and Biotechnology2006,,2:1
15Collision Frequencies Between Fractal Aggregates and Small Particles in a Turbulently Sheared Fluid显示文摘Xiaoyan Li Bruce E Logan 1997Environ Sci Technol1997,31,:1
16Reductive dechlorination and mineralization of pentachlorophenol in biocathode microbial fuel cells显示文摘Liping Huang Xiaolei Chai Xie Quan Bruce E. Logan Guohua Chen 2012Bioresource Technology2012,,:1
17Electrochemical evaluation of mo-lybdenum disulfide as a catalyst for hydrogen evolution in microbialelectrolysis cells 显示文摘Justin C Tokash Bruce E Logan 2011International journal of hydrogen energy2011,36,:1
18Performance of C-d - doped Ti - based Sb - SnO2 anodes for electrochemical destruc- tion of phenol 显示文摘Yujie Feng Yuhong Cui Bruce Logan 2008Chemosphere2008,70,9:1
19Production of electricity from acetate or butyrate using a single-chamber microbial fuel cell显示文摘Liu Hong Cheng Shaoan Bruce E Logan 0,,02:1
20Increased performance of single-chamber microbial fuel cells using an improved cathode structure显示文摘Cheng Shaoan Liu Hong Bruce E Logan 0,,03:1
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