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971.
972.
Surajbhan Sevda Xochitl Dominguez-Benetton Florian H. M. Graichen Karolien Vanbroekhoven Heleen De Wever T. R. Sreekrishnan 《International Journal of Green Energy》2016,13(1):71-79
Microbial fuel cells (MFCs) which are operated in continuous mode are more suitable for practical applications than fed batch ones. The aim of the present study was to characterize an air-cathode MFC operating in continuous mode and to determine the intrinsic properties for suitable performance and scalability. Air-cathode MFCs were constructed from plexiglass with a total working volume of 220 mL. Zirfon® separator used in this MFC had cross section area of 100 cm2. The air cathode MFCs were operated in fed-batch mode and then shifted to the continuous mode. To determine the behavior of anode and cathode in long term operation (274 days), their contribution in MFC performance was evaluated over time. Once the active biofilm was formed, power production and substrate consumption rate were significantly higher. The internal resistance increased with the passage of time. After stabilization of biofilm when the MFC was placed in close circuit by connecting an external resistance, the anode-reference and cathode-reference electrode behavior showed that anode potential is near to the bacterial cell inside potential. The maximum open circuit voltage achieved was 623 mV and the highest power and volumetric power density were 38.03 mW/m2 and 1296 mW/m3, respectively. 相似文献
973.
Dae-Young Kim Hong-Youl Ryu Seung-Hyun Kim Kyoung-Tae Park Seong-Seock Cho Moon-Hee Han 《International Journal of Green Energy》2016,13(6):573-579
A novel on-board hydrogen generation concept using Al coil with NaOH was investigated. The reaction rate was successfully controlled by introducing a pumping system for the NaOH solution. The time for the flow to develop fully was mainly dependent on the solution temperature, and the fastest start time recorded was 60 sec at a solution temperature of 70°C. The maximum H2 generation rate was 200 L min–1 with a prototype design of the on-board hydrogen generation system 1/8 times the size of a full-size reactor. The H2 generation process coupled with the solution pumping system was simulated with three-dimensional fluid dynamic software, and the calculated H2 flow and temperature rise of the system were validated with experimental data. 相似文献
974.
Wang Chin Tsan Chen Wei Jung Huang Ruei Yao 《International Journal of Green Energy》2016,13(7):695-702
The microbial fuel cell uses the microorganism biochemistry to carry on the energy conversion. Concerning the experimental precision, the colony culture would be replaced by a fixed amount of liquid culture for Microbial fuel cell of Escherichia coli. The anode and cathode chambers whose each volume is 100 mL were utilized, the effective surface area of proton exchange membrane Nafion-117 is about 9 cm2. In addition, the electrode area of carbon cloth is 20 cm2. Three kinds of Escherichia coli, named as BCRC No. 10322, 10675 and 51534, respectively, would be selected. Results show that the electricity performance of Escherichia coli of BCRC No.51534 is better than the other microorganism studied because of having a larger open circuit voltage of 1.01 V and limiting current 22 mA, the maximum power density of 1342 mW/m2, and average working power density of 295 mW/m2 would be produced. These results would be useful to improve the performance of microbial fuel cell. 相似文献
975.
Chi-Yuan Lee Fang-Bor Weng Ten-Lom Chen Fan-Hsuan Liu 《International Journal of Green Energy》2016,13(6):624-629
This study developed an integrated (flow, voltage, and temperature) micro sensor using the micro-electro-mechanical systems (MEMS) technology. It was inserted into the high temperature proton exchange membrane fuel cell (HT-PEMFC) for local real-time measurement. The integrated micro sensor is made of 40 µm thick stainless steel base material, and its protective layer is formed by polyimide (PI) that has better temperature resistance. The integrated micro sensor has three functions, and is favorably characterized by small size, good acid resistance and temperature resistance, quick response, real-time measurement, and being able to be put in any place for measurement. After calibration, and its reliability confirmed, the integrated micro sensor is inserted into the HT-PEMFC for local microcosmic measurement. 相似文献
976.
采用PCR方法扩增了ZNF313基因的启动子序列,构建了含人ZNF313基因启动子不同片断的荧光素酶报告基因表达体系.以pRLTK为内参照质粒,瞬时转染HEK293T细胞,48h后收集细胞,测定荧光素酶的相对表达活性.结果发现,在ZNF313基因的启动子区域构建了4种荧光素酶报告基因表达体系,即pGL3215(-215bp~ 38bp)、pGL3160(-160bp~ 38bp)、pGL3133(-133bp~ 128bp)和pGL38(-8bp~ 128bp).其中pGL3215表达载体的荧光素酶相对表达活性最高;pGL3160和pGL3133表达载体的荧光素酶相对表达活性几乎相同,且是pGL3215的75%;而pGL38的荧光素酶相对表达活性急剧下降,接近于零.这表明,-133bp~-8bp区域内含有人ZNF313基因转录所必需的启动子序列.生物信息学的分析表明,两个SP1、一个AP2和一个TAg是人ZNF313基因启动子所必需的.图4参19 相似文献
977.
运用化学试剂处理水稻悬浮细胞诱导生成植保素Sakuranetin(SA)和Mom ilactone A(MA).结果表明,在悬浮培养液中添加1.5 mmol/L的金属阳离子Ag 、Ca2 、Zn2 、Mg2 和Cu2 ,都可以在一定程度上诱导悬浮细胞产生SA或MA,其中以K 处理效果最好;添加1.5 mmol/L的NH4 也可诱导产生MA;MA的产生量显著高于SA,每20 mL悬浮液中的产量可以分别高达158.9~1337.9μg和0.16~7.6μg,说明水稻悬浮细胞中存在这些阳离子的高效防御识别系统,从而开发新型绿色环保农药是可行的.图1表1参9 相似文献
978.
为更加准确且全面地对非正常条件下接发列车作业人因风险进行评价,提出基于博弈论与可拓学的人因风险评价模型。在工作人员认知机理的基础上,构建认知行为模型,考虑到人因风险指标数据的特性,利用博弈论的思想将由AHP法得出的主观权重与由熵值法得到的客观权重进行最优组合,克服了单一赋权法的不足;引用可拓学原理,建立多级可拓评价模型,修正了风险评价的偏差,使人因风险评价更加准确。实例计算表明:此方法运用到铁路非正常条件下接发列车作业人因风险评价是有效的,且可为科学制订风险控制措施提供依据。 相似文献
979.
Rafał Michalski 《International journal of occupational safety and ergonomics》2018,24(3):395-405
Various designs of typical digital control panels were analyzed experimentally from both the effectiveness and efficiency points of view. Subjects performed information comparison tasks aimed at keeping vehicle velocity at the same level. The experiment involved two versions of speedometers for displaying current and target velocities (clock-face and digital). The stimuli were also differentiated by the target velocity value (20, 50 and 80?km/h) and the correct response type (increase or decrease). Subjects’ performance results along with the eye-tracking data were qualitatively and quantitatively analyzed for all 24 experimental conditions. 相似文献
980.
Lin Zhou Gui Fu Yujingyang Xue 《International journal of occupational safety and ergonomics》2018,24(3):329-340
Human and organizational factors have been proven to be the prime causes of Chinese hazardous chemical accidents (HCAs). A modified version of the Human Factors Analysis and Classification System (HFACS), namely the HFACS-Hazardous Chemicals (HC), was developed to identify the human factors involved in Chinese HCAs. The ‘8.12’ Tianjin Port fire and explosion, the costliest HCA in recent years, was reanalyzed using this framework, and the results were compared with the official accident inquiry report to determine their differences related to the identification of human and organizational factors. The study revealed that interacting human factors from different levels in Ruihai Company led to this catastrophe, and the inquiry report had limitations in the identification of human factors and the guidance for similar accident prevention. This study showed the applicability of the HFACS-HC in HCA analyses as well as the necessity to recommend this approach for future HCA investigations. 相似文献