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In this paper the acid number and breakdown voltage of transformer oil are tested.

加速氧化会使变压器油酸值增加,对变压器油的酸值和击穿电压进行了测定。

It can oxygenate active group of bacilli cytoplasm albuminoid; combine with the amido of albuminoid to change it denaturalization; furthermore, it can kill bacilli, epiphyte, virus and amebiasis protozoon .

它能氧化细菌细胞浆蛋白质的活性基因,并与蛋白质的氨基结合,使其变性,能杀死细菌、真菌、病毒和阿半巴原虫。

One hand mechanical obstruct led to the increase of veinous resistance and the obstacle of microcirculation, the other hand the adhesive PMN was activated in excess, the white blood cells released a lot of enzymes, in which PMN-elastase can decompose the components of cell and many albumens, inclusive of immunoglobulin、alexin and fibrication. These components induced the injury of the pancreatic capillary vessels and cell and lysosome enzy made the tissue protein hydrolyze and produced unsaturated fatty acids, which destroyed the structure and function of cellar membrane. The inflammatory cellar factors activate other immunocytes to produce the injury and necrosis of tissue, which aggravated the pathological injury and led to shock、pyaemia and MODS. So ICAM-1 and LFA-1 played an important role in SAP. Frossard found that the expression of ICAM-1 in the rat model, especially in serum、pancreas and lung. All these showed ICAM-1 is an important factor in AP and concomitant lung injury.

胰腺小叶组织局部血管EC首先被激活,ICAM-1表达升高,与被激活的PMN表面表达的LFA-1相结合,"PMN-EC"相互作用加剧,一方面机械性阻塞毛细血管导致静脉阻力增加、微循环障碍;另一方面粘附的PMN过度吞噬或激活,当白细胞吞噬的颗粒不能被封闭隔离,连同细胞内的酶被释放出来,其中的PMN-elastase能够降解细胞基质中各种成分,水解多种蛋白,加重胰腺的毛细血管内皮细胞和腺泡的损伤;释放的溶酶体酶使组织蛋白水解,产生的不饱和脂肪酸引发脂质过氧化方应,破坏细胞膜的结构和功能;释放的炎性细胞因子,激发其他的免疫细胞的功能,导致进一步的组织损伤和坏死,加重SAP的病理损伤,最终导致休克、脓毒血症及多器官功能障碍等严重后果。

Therefore, they make people keep healthy and prolong life only keeping alkalescence at the time of supplementing water in the cells and strengthening anti-oxidative capacity.

所以只有在补充细胞内水份的同时保持弱碱性,并增强抗氧化能力才能使人保持健康、延年益寿。

Formation of an aluminum oxide layer on exposed surfaces makes this metal very corrosion resistant.

铝青铜表面的铝氧化层结晶体,使其具有很强的抗腐蚀能力。

The paper studied the viability determination of two kinds of algae Anabaena flos-aquae and Microcystis aeruginosa by FDA-PI double staining.

对处理的水样进行的水质分析显示,电催化氧化法能够很明显地降解水中的有机物,使DOC的含量明显下降从而能够改善水质。

M-6601 Quick Detailer– This cleaner wax is the workhorse in the Meguiar's Cleaner/Wax category. Available in 1-gallon jugs, this is Meguiar's most aggressive cleaner wax and perfectly suited for use with rotary buffers on severely neglected, oxidized, scratched and swirled surfaces. This wax offers incredible cleaning strength, without using harsh abrasives. The rich polishing oils leave behind a lustrous finish while Meguiar's state-of-the-art synthetic polymer waxes leave behind a long lasting durable protective finish. Perfect for Used Car dealers and wholesalers looking for a fast and effective one-step product. M-66 like M-06 is very versatile, and can be used by hand, dual-action polisher, orbital buffer, and the rotary buffer.

M-6601快速保养液–这瓶清洁蜡是美克拉清洁蜡系列中的主力產品,目前市面上可买到的是每瓶一加仑的包装,这是美克拉最强效的清洁蜡,他非常适合与打蜡机搭配使用以清除漆面上严重的受损、氧化、抓痕和太阳纹,这瓶蜡提供了非常强的清洁能力且不含粗糙的研磨成分,丰富的抛光油使烤漆富含光泽,而美克拉合成聚合物蜡品则提供烤漆长耐久的防护,这產品对于二手车业者或正在寻找一种速效的单步產品的批发商是最完美的,M-66就像M-06一样是多方面适用的,可以使用手、震抛机、打蜡机和旋抛机来施用。

As above mentioned, it could be improved the optics characterization of films efficiently by textured aluminium doped zinc oxide films by wet etching. Using solar cells as transparent electrode enables the light passed through solar cells and reduceds reflectance to permeate into absorb layer of solar cells and improve conversion efficiencies of solar cells.

由上述的光学性质变化中可得知,经由湿式蚀刻过程后的氧化锌掺铝薄膜确实能有效改善薄膜的光学特性,对於应用於太阳电池中当透明电极使用时,能使更多入射光通过元件表面而进入吸收层内,帮助提升太阳电池的转换效率。

Increased. In addition, the life of light can also make the blood of unsaturated fatty acid double bond or triple bond was cut, and saturated fatty acids is not easy to be oxidized lipid , a decrease of intravascular lipid deposition, so that the vessel wall smooth, thus reducing atherosclerosis, cataracts, such as cardiovascular disease or the occurrence of eye disease, health promotion plays a good efficacy.

此外,生命光线还可以使血液中不饱和脂肪酸的二重键或三重键被切断,饱和脂肪酸不容易再被氧化成血脂,减少了血管内脂质的沉积,使血管壁光滑,从而减少动脉硬化、白内障等心血管疾病或眼科疾病的发生,对人体健康起着良好的促进功效。

The following main results are obtained: The TiO_2 photocatalyst with small crystallite size, high surface area, narrow and uniform pore size distribution, and microporous frameworks could be prepared out by applying MW radiation in the preparation process. The microwave-induced fluorescence technique verified for the first time that microwave enhanced the formation rate of hydroxyl radical, leading to the increase in the photocatalytic efficiency. Compared with the conventional catalyst, TiO_2 prepared by MW dielectric heating owns a higher UV absorption ability, and its optical absorption edge and photovoltaic response are shifted toward the short wavelength region, resulting in increase of photooxidation efficiency. The photocatalytic conversion and the mineralization ratio of acetaldehyde are increased respectively by 30% and 40% over the TiO2 prepared by MW radiation when compared to the TiO2 prepared by the conventional heating. For the MW-assisted photocatalytic reaction over the MW-prepared TiO2, production of hydroxyl radicals is enhanced by 22.5%, and the photocatalytic conversion is accordingly increased by 20%. Similarlly, applying MW also increased the photocatalytic conversion and the mineralization ratio of acetaldehyde over TiO2/Al2O3 sample.

论文得到如下主要结果和结论:(1)微波介电加热TiO_2 溶胶可得到晶粒度小、光催化活性高、比表面积大和孔径分布窄而均一,且微孔发达的TiO_2光催化剂;在溶胶干燥处理过程中微波可使催化剂表面缺陷增加,进而导致光催化反应过程有更多的活性羟基自由基产生;(2)微波制备能显著增强TiO_2 样品的紫外光吸收率,并使其光吸收和光伏响应阈值发生蓝移,从而提高TiO_2的氧化还原能力;(3)与常规加热法所制TiO_2比较,微波法制备的TiO_2对乙醛的光催化降解转化率提高30%,CO_2生成率提高40%以上;(4)与未加微波辐射时相比,发现在光催化反应过程中施加微波,TiO_2 的羟基自由基生成速率提高了22.5%,相应CH_3CHO 光催化降解转化率提高了20%;对Al_2O_3/TiO_2催化剂,CH_3CHO 光催化降解转化率甚至提高了33%,同时CO_2 的生成率也都大幅度提高;(5)微波辐射可改变光催化降解乙醛的产物分布,推断施加微波时乙醛光催化降解按照羟基自由基引发的链式反应机理进行,微波&非热效应&起主要作用。

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This one mode pays close attention to network credence foundation of the businessman very much.

这一模式非常关注商人的网络信用基础。

Cell morphology of bacterial ghost of Pasteurella multocida was observed by scanning electron microscopy and inactivation ratio was estimated by CFU analysi.

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There is no differences of cell proliferation vitality between labeled and unlabeled NSCs.

双标记神经干细胞的增殖、分化活力与未标记神经干细胞相比无改变。