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9篇 您的检索式:作者名="Jesuraj"
    题名 作者 年代 出处 被引量
1Pyomyositis显示文摘Annamalai AK Gopalakrishnan C Jesuraj M 2013Postgrad Med J2013,89,:1
2Glial cell linederived neurotrophic factor promotes increased phenotypic marker expression in femoral sensory and motorderived Schwann cell cultures显示文摘Jesuraj NJ Marquardt LM Kwasa JA 2014Exp Neurol2014,257,:1
3Differential gene expression in motor and sensory Schwann cells in the rat femoral nerve显示文摘Jesuraj NJ Nguyen PK Wood MD 2012J Neurosci Res2012,90,1:1
4Nerve allografts supplemented with schwann cells overexpressing glial-cell-line-derived neurotrophic factor显示文摘Santosa KB Jesuraj NJ Viader A 2013Muscle Nerve2013,47,2:1
5Schwann cells seeded in acellular nerve grafts improve functional recovery显示文摘Jesuraj NJ Santosa KB Macewan MR 2013Muscle Nerve2013,,:1
6Nerve al ografts supplemented with schwann cells overexpressing glial-cel-line-derived neurotrophic factor显示文摘Santosa KB Jesuraj NJ Viader A 0,,02:1
7Nerve allograftssupplemented with schwann cells overexpressing glial-cell-line-derived neurotrophic factor 显示文摘Santosa KB Jesuraj NJ Viader A 2013Muscle Nerve2013,47,2:1
8Paroxysmal complete atrioven-tricular block during AV nodal reentrant tachycardia 显示文摘Jesuraj ML Rao BH Sharada K 2013J CardiovascElectrophysiol2013,24,2:1
9Enhancing the biological hydrogen production in a novel way of using co-substrates显示文摘Microbial electrolysis cell(MEC)is a potential technology to meet the increasing interest in finding new sources of energy that will not harm the environment.MEC is an alternative energy conversion technology for the production of biofuels.It is possible to produce hydrogen by fermenting biogenous wastes with hydrogen-producing bacteria.This study investigated the biohydrogen production from co-substrates using electrogenic bacteria such as Escherichia coli,Salmonella bongori,and Shewanella oneidensis in pure culture and as a co-culture,which has the potential to be used as co-substrate in MECs.Briefly,150 mL working-volume reactors were constructed for batch biohydrogen production.The hydrogen production rate(HPR)from the co-substrate was maximum at a ratio of 75:25 g/L with a co-culture of 2.35 mL/(L h).Fabricated a single-chamber membrane-free microelectrolysis cell to evaluate the power density,current density,voltage,HPR,chemical oxygen demand(COD)removal efficiency and Columbic efficiency.Scanning electron microscope(SEM)imaging confirmed the binding of electrogenic bacteria to anode and cathode.The efficiency of electrical conductivity of MEC was analyzed by three different electrodes,namely,nickel,copper and aluminum.The HPR was high using nickel when compared to the other two electrodes.The HPR of a single chamber using a nickel electrode was 2.8 HPR ml/L H_(2) d^(−1) and provided a power density of 17.7 mW/m^(2) at pH 7.This study suggests that the nickel cathode in a single chamber could be a promising sustainable source for stable power generation.Chelladurai Mumtha Jesuraj Kabiriyel Pambayan Ulagan Mahalingam 2023Waste Disposal and Sustainable Energy2023,5,4:0
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