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121.
以活性炭阳极双室生物燃料电池为基础,使用葡萄糖(COD为2000mg·L-1)作为底物,比较了铁氰化钾、过氧化氢、重铬酸钾和高锰酸钾分别作为生物燃料电池阴极电子受体时电池的开路电压和功率输出.结果表明,铁氰化钾、过氧化氢和重铬酸钾对应的开路电位分别为0.72V、0.33V和1.13V,均低于高锰酸钾的1.4lV.铁氰化钾和重铬酸钾对应的最大功率密度分别为4788mW·m-3和10951m W·m-3,相比之下高锰酸钾对应的最大功率达到了21912 mW·m-3.除过氧化氢外,3种氧化剂对应的电池内阻没有区别,均在2200Ω左右.当高锰酸钾浓度为200mg·L-1、pH为2.0时,开路电位高达1.44V,阴极电位达到1.38V,pH对电池电压输出的影响比高锰酸钾浓度更为显著.将高锰酸钾用于生物燃料电池从有机废水中发电不但可以极大提高系统的功率输出,还具有十分显著的经济和环境效益. 相似文献
122.
The deactivation of catalyst is a significant reason for its limited application during the catalytic fast pyrolysis (CFP) process. To reduce the coke formation, binary compound impregnation (BCI) and chemical liquid deposition (CLD) were used to modify HZSM-5 catalysts. At the same time, the self-designed microwave reactor separated the pyrolysis of bamboo and catalytic upgrading of primary vapor, which made the catalytic effect more thorough. Experimental results indicated that CLD used TiO2 deposition to cover external acid sites, while BCI by phosphorus-nickel could cover and partly destroy superficial acid sites through two different ways. Within the scope of the loaded amount studied, the yield of aromatic hydrocarbons in the oil phase increased at first and then decreased, while the coke formation reduced continuously. BTX (benzene, toluene and xylene), the most valuable product in bio-oil, drastically increased by 39.1% and 22.6% respectively over the CLD and BCI modified catalysts. Considering the catalytic performance as well as cost, CLD over HZSM-5 has more advantages in the CFP process to upgrade bio-oil. 相似文献
123.
针对建筑室内火灾烟雾环境对微波信号的干扰问题,利用火灾标准实验间和微波实验装置,研究棉绳阴燃、聚氨酯明火等四种典型火灾烟雾对频率分别为600 MHz和2.7GHz微波衰减特性的影响规律。在有和无火灾烟雾环境下,对比分析入射波频率、烟雾浓度、烟雾类型对微波衰减的影响。实验结果表明,四种火灾烟雾对微波传播有明显衰减,且衰减量均随烟雾浓度的增加而增加,而衰减速率逐渐减小。频率以及不同特性类型的烟雾对微波衰减特性的规律不同。最后,计算并修正了室内火灾烟雾环境下微波衰减因子模型的衰减因子,提高了该模型在火灾烟雾环境下的适用性和准确性。 相似文献
124.
根据电动振动台的工作原理,详细分析电动振动台磁路结构及漏磁场的来源,通过进行测量分析,并提出一种有效的漏磁场屏蔽措施。 相似文献
125.
为研究废弃印刷电路板(PCB)在回收加热拆解电子元件过程中所产生的气体排放物的主要成分,使用自行设计的废弃PCB拆解装置进行拆解实验,采用傅里叶红外光谱(FTIRS)、气相色谱-质谱(GC/MS)、离子色谱(IC)和电感耦合等离子体质谱(ICP-MS)等分析方法,对实验过程所收集到的气体产物进行成分分析.结果表明,废弃PCB的基板在加热过程中发生了初步分解,基板上的溴化环氧树脂发生了O—C、C—C、C—Br键的断裂,产生了苯酚、2,6-二溴苯酚等有机物;伴随有机气体逸出的还有废弃PCB在加热过程所释放的含有大量S、N、Cl、Br等元素的无机酸性气体;而连续的熔锡过程还使得PCB与焊料中的Sn、Pb、Sb、Hg、Cd、Cr等重金属产生烟尘逸出. 相似文献
126.
We investigated the efficiency and kinetics of the degradation of soluble dyes over the p H range 5.0–9.0 using a method employing microwave radiation in combination with nanoscale zero-valent iron(MW–n ZVI). The n ZVI particles(40–70 nm in diameter) were prepared by a liquid-phase chemical reduction method employing starch as a dispersant.Compared to the removal of Solvent Blue 36 and Reactive Yellow K-RN using only n ZVI,more rapid and efficient dye removal and total organic carbon removal were achieved using MW–n ZVI. The dye removal efficiency increased significantly with decreasing p H, but was negligibly affected by variation in the microwave power. The kinetics of dye removal by MW–n ZVI followed both an empirical equation and the pseudo first-order model, while the kinetics of dye removal using n ZVI could only be described by an empirical equation. It was also concluded that microwave heating of the dye solutions as well as acceleration of corrosion of n ZVI and consumption of Fe(II) were possible reasons behind the enhanced dye degradation. 相似文献
127.
目的提高砷化镓电池的应用效率。方法以航天器常用灰皮电缆作为放气源,通过电池性能与透过率关系试验和污染物沉积量与透过率关系试验研究,分析材料放气对砷化镓电池的性能影响。结果随着非金属材料放气沉积量的增多,砷化镓电池的短路电流不断减小。当污染沉积量达到4×10-5g/cm2时,砷化镓电池的短路电流变化量为23 m A,变化率为10.9%;当污染沉积量达到1.26×10-4g/cm2时,砷化镓电池的短路电流变化量为42 m A,变化率为20.0%。结论非金属材料放气是造成太阳电池性能下降的因素之一。 相似文献
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130.
《Journal of Manufacturing Processes》2014,16(2):176-182
Cladding is generally characterized by partial dilution of the substrate and hence formation of metallurgical bonding between the substrate and the deposits. Laser cladding is one of the most widely practiced surface engineering techniques. The present work mainly focuses on a novel development in surface engineering techniques in the form of microwave cladding. Clads of tungsten carbide (WC) based WC10Co2Ni powder on austenitic stainless steel were produced using microwave hybrid heating. Microwave clads were developed by exposing the preplaced, preheated powder for a duration of 120 s to microwave radiation at 2.45 GHz frequency and 900 W power in a home microwave system. Characterization of the clads was carried out in the form of microstructural and elemental composition studies. Investigations show crack-free interface revealing good metallurgical bond associated with partial dilution of the stainless steel substrate and full melting of WC particles. Typical X-ray diffraction results confirm presence of metallic carbides in the clad which is primarily responsible for significantly higher microhardness of the clad. Process mechanism has been discussed. 相似文献