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排序方式: 共有71条查询结果,搜索用时 15 毫秒
1.
Investigation of titanium liquid/gas diffusion layers in proton exchange membrane electrolyzer cells
Stuart M. Steen III Jingke Mo Zhenye Kang Gaoqiang Yang 《International Journal of Green Energy》2017,14(2):162-170
In a proton exchange membrane electrolyzer cell (PEMEC), liquid/gas diffusion layer (LGDL) is expected to transport electrons, heat, and reactants/products to and from the catalyst layer with minimum voltage, current, thermal, interfacial, and fluidic losses. In addition, carbon materials, which are typically used in PEM fuel cells (PEMFCs), are unsuitable in PEMECs due to the high ohmic potential and highly oxidative environment of the oxygen electrode. In this study, a set of titanium gas diffusion layers with different thicknesses and porosities are designed and examined coupled with the development of a robust titanium bipolar plate. It has been found that the performance of electrolyzer improves along with a decrease in thickness or porosity of the anode LGDL of titanium woven meshes. The ohmic resistance of anode LGDL and contact resistance between anode LGDL and the anode catalyst play dominant roles in electrolyzer performance, and better performance can be obtained by reducing ohmic resistance. Thin titanium LGDLs with straight-through pores and optimal pore morphologies are recommended for the future developments of low-cost LGDLs with minimum ohmic/transport losses. 相似文献
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The aim of the study was to prepare a porous sound-absorbing material using steel slag and fly ash as the main raw material, with coal powder and sodium silicate used as a pore former and binder respectively. The influence of the experimental conditions such as the ratio of fly ash, sintering temperature, sintering time, and porosity regulation on the performance of the porous sound-absorbing material was investigated. The results showed that the specimens prepared by this method had high sound absorption performance and good mechanical properties, and the noise reduction coefficient and compressive strength could reach 0.50 and 6.5 MPa, respectively. The compressive strength increased when the dosage of fly ash and sintering temperature were raised. The noise reduction coefficient decreased with increasing ratio of fly ash and reducing pore former, and first increased and then decreased with the increase of sintering temperature and time. The optimum preparation conditions for the porous sound-absorbing material were a proportion of fly ash of 50% (wt.%), percentage of coal powder of 30% (wt.%), sintering temperature of 1130°C, and sintering time of 6.0 hr, which were determined by analyzing the properties of the sound-absorbing material. 相似文献
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利用模拟软件Fluent6.3建立二维模型并进行合理设置,对多孔介质中的煤矿低浓度瓦斯燃烧进行数值模拟,研究了均匀型和渐变型燃烧器中的温度分布和NOx生成情况,以及三种不同渐变型多孔介质组合燃烧器中的温度分布和NOx生成情况。结果表明,渐变型多孔介质燃烧器的温度分布比均匀型燃烧器更加均匀;同一瓦斯当量比和流速下,渐变型多孔介质燃烧器的NOx产生量比均匀型燃烧器低很多,有利于减少污染物排放;三种不同渐变型多孔介质组合的温度分布和NOx生成有着不同特点,燃烧器设计时,可根据不同需求选取不同组合形式,综合考虑各因素,组合一燃烧特性最佳。 相似文献
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目的获取含疏松缺陷ZL205A材料主要力学性能参数的变化规律及力学行为。方法通过单轴拉伸实验测试,采用割线法估算含不同等级疏松ZL205A试样的力学性能参数;基于试样断面及载荷-位移曲线分析,归纳ZL205A材料的力学行为,并通过有限元模拟对假设的力学模型进行验证。结果发现ZL205A材料的抗拉强度、伸长率、弹性模量及屈服强度指标呈现随疏松等级增加而降低的趋势,材料变形塑性屈服阶段不明显且具有脆性断裂特征。结论 Ramberg-Osgood方程适合于描述ZL205A材料的弹塑性本构关系。 相似文献
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目的研究不同炭化压力环境对C/C复合材料致密过程及结构的影响。方法通过浸渍/高压炭化工艺在不同炭化压力下制备高温煤沥青炭块及沥青基C/C复合材料,并研究不同炭化压力环境下对其密度和孔隙的影响。结果制备沥青炭的炭化压力由20 MPa增大至60 MPa时,沥青炭体积密度由1.08 g/cm~3增加至1.39g/cm~3,质量比表面积由14.74增加至16.51,开孔率由26.73减少至7.94,孔隙填充效果明显改善,浸渍-炭化的增密效率得到提升。结论在编织C/C材料的致密过程中,压力越大,其孔隙越小,分布越均匀,故产品致密效果越好。 相似文献
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pH-dependent leaching behaviour and other performance properties of cement-treated mixed contaminated soil 总被引:2,自引:0,他引:2
Portland cement has been widely used for stabilisation/solidification (S/S) treatment of contaminated soils. However, there is a dearth of literature on pH-dependent leaching of contaminants from cement-treated soils. This study investigates the leachability of Cu, Pb, Ni, Zn and total petroleum hydrocarbons (TPH) from a mixed contaminated soil. A sandy soil was spiked with 3000 mg/kg each of Cd, Cu, Pb, Ni and Zn, and 10,000 mg/kg of diesel, and treated with ordinary Portland cement (CEM I). Four different binder dosages, 5%, 10%, 15% and 20% (m/m) and different water contents ranging from 13%-19% dry weight were used in order to find a safe operating envelope for the treatment process. The pH-dependent leaching behaviour of the treated soil was monitored over an 84-day period using a 3-point acid neutralisation capacity (ANC) test. The monolithic leaching test was also conducted. Geotechnical properties such as unconfined compressive strength (UCS), hydraulic conductivity and porosity were assessed over time. The treated soils recorded lower leachate concentrations of Ni and Zn compared to the untreated soil at the same pH depending on binder dosage. The binder had problems with Pb stabilisation and TPH leachability was independent of pH and binder dosage. The hydraulic conductivity of the mixes was generally of the order, 10-8 m/sec, while the porosity ranged from 26%-44%. The results of selected performance properties are compared with regulatory limits and the range of operating variables that lead to acceptable performance described. 相似文献