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浅谈汽车内饰材料挥发成雾性测试 被引量:11
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作者 王钊桐 《环境技术》 2008年第5期35-37,22,共4页
汽车内饰材料中所含挥发性物质的释放是造成车内环境污染最直接的也是最主要的原因。对汽车内饰材料进行挥发性物质测试的重要方法之一就是挥发成雾性测试。本文中,笔者将对汽车内饰材料挥发成雾性测试的测试原理、测试设备、当前业界... 汽车内饰材料中所含挥发性物质的释放是造成车内环境污染最直接的也是最主要的原因。对汽车内饰材料进行挥发性物质测试的重要方法之一就是挥发成雾性测试。本文中,笔者将对汽车内饰材料挥发成雾性测试的测试原理、测试设备、当前业界流行的主要测试方法和相关的标准作一些介绍。 展开更多
关键词 汽车内饰材料 挥发物质 成雾性 成雾性测试
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能降低成雾性的热塑性聚氨酯模塑品
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《塑料工业》 CAS CSCD 北大核心 2002年第2期52-52,共1页
关键词 成雾性 热塑 聚氨酯模塑品 汽车扇形物
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低成雾性防水加脂复鞣剂通过验收
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《化工中间体(科技.产业版)》 2004年第6X期50-50,共1页
关键词 成雾性防水加脂复鞣剂 制革厂 成都有机化学有限公司 中间体
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车灯常用非金属材料雾化研究 被引量:1
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作者 刘丹 《上海汽车》 2016年第9期55-57,共3页
文章着重研究车灯常用非金属材料有机挥发物对雾气现象的贡献,对各类材料进行了成雾性试验,分析结果优劣,并研究推荐了改善措施,对后续车灯材料的选取有借鉴意义。
关键词 非金属材料 成雾性试验 车灯
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Research on the effect of the component proportion in the new water mist additive on firefighting performance 被引量:1
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作者 Ji Huanle Zhang Qingsong +1 位作者 Wu Binbin Liang Tianshui 《Engineering Sciences》 EI 2013年第6期85-90,共6页
Water mist technology provides efficient firefighting performance while there is still room for improvement. So varieties of additives have been studied in recent years both at home and abroad. The self-made additives... Water mist technology provides efficient firefighting performance while there is still room for improvement. So varieties of additives have been studied in recent years both at home and abroad. The self-made additives are used to compare the firefighting performance of diesel and heptane fire in open space. By adjusting the concentration of substance in the additives and conducting the experiment under the pressure of 0.3 MPa,0.5 MPa and 0.7 MPa,extinguish time and temperature are measured in the experiment. Through the experiments using different fuels,it can be found when the fuel is heptane that has a lower ignition point and a higher evaporation rate, the water mist additive can still significantly improve the firefighting performance. According to the data based on different concentrations of fluorinated surfactants,we find that fluorinated surfactants are the main substance to improve the performances by changing physical property of water mist. Optimal proportion of the additives for firefighting performance is found by experiment results. 展开更多
关键词 water mist additive firefighting performance additive proportion fire extinguishing mechanisms
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Improved water-splitting performances of CuW_(1-x)Mo_xO_4 photoanodes synthesized by spray pyrolysis 被引量:3
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作者 Qing Liang Yongsheng Guo +5 位作者 Ningsi Zhang Qinfeng Qian Yingfei Hu Jianqiang Hu Zhaosheng Li Zhigang Zou 《Science China Materials》 SCIE EI CSCD 2018年第10期1297-1304,共8页
CuW(1-x)MoxO4 solid solution of CuWO4 and CuMoO4, which is a copper-based multi-component oxide semiconductor, possesses much narrower band gap than CuWO4. In theory, it can absorb a larger part of the visible spect... CuW(1-x)MoxO4 solid solution of CuWO4 and CuMoO4, which is a copper-based multi-component oxide semiconductor, possesses much narrower band gap than CuWO4. In theory, it can absorb a larger part of the visible spectrum, widening the use of solar spectroscopy and obtaining a higher photo-to-chemical conversion efficiency. In this study, CuW(1-x)MoxO4 thin-film photoanodes on conducting glass were prepared using a simple and low-cost spray pyrolysis method. The resulting CuW(1-x)MoxO4 photoanodes perform higher photocurrent than CuWO4 photoanodes under AM 1.5 G simulated sunlight illumination(100 m W cm^(-2))in 0.1 mol L^(-1) phosphate buffer at pH 7. Combined with IPCE and Mott-Schottky analysis, the enhancement of the photocurrent is due to the improvement of photon utilization and the increase of carrier concentration with the incorporation of Mo atoms. Moreover, with the optimal Mo/W atomic ratio,the photocurrent density increases obviously from 0.07 to 0.46 m A cm^(-2) at 1.23 V(RHE) bias. In addition, compared with particle-assembled thin-film photoanodes prepared by solidphase reaction and drop-necking treatment, the photoanodes prepared by spray pyrolysis have obvious advantages in terms of reducing resistance and facilitating charge transport. 展开更多
关键词 CuWO4 CuW(1-x)MoxO4 photoelectrochemical watersplitting PHOTOANODE
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