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电解质

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Liquidus temperature is one of important parameters of production of aluminum electrolyze.

铝电解生产过程中电解温度是一个非常重要的工艺参数,电解温度与铝电解质初晶温度之间的差值称之为过热度。

In this invention polymer electrolyte membrane device is used to electrolyze organic compounds with low decomposition voltage and meanwhile air is input into the anode loop reduce the residence time of intermediate product on catalyst surface, reducing the over-potential in anode reaction, increasing the anodic oxidation rate and maintaining the electrolytic solution potential below 1V, which decreases the power consumption and provides considerable economic benefit.

本发明利用聚合物电解质膜装置电解具有低分解电压的有机化合物,同时,在阳极回路中加入空气,减少电化学反应中间产物在催化剂表面的停留时间,降低阳极反应的过电位,加速阳极氧化速度,使得电解电位始终在1V以下,大大降低了电解制氢的耗电量,节约了能源,预计会有可观的经济效益。

The company focuses on utilizing Solid Polymer Electrolyte—SPE positive ion exchange membrane to electrolyze pure water, carrying on R&D, producing and selling of hydrogen generator, hydrogen fuel batteries, etc.

本公司着重利用固体聚合物电解质(Solid Polymer Electrolyte—SPE)阳离子交换膜,进行纯水电解及燃料电池等产品的研发、生产、销售。

Through dynamic examination of electrolyses, this paper research on treatment efficiency of bipolar packed bed cell under different voltage, electrolyses time, PH value andThe experimental results show that the decompounding speed of phenol decrease with the electrolyze time increasing. With the cells voltage augment the decompounding rate of phenol increase also. But when the voltage exceed 10V, the increasing speed of decompounding rate decrease.

BPBC处理苯酚废水的实验研究结果表明,苯酚的降解速率与酚浓度呈一级反应关系,即随着实际电解时间的增加苯酚降解速率逐渐减小;随着槽电压的增大,苯酚的去除率也随之增大,但是槽电压超过10V后,苯酚去除率增加趋势减缓;在碱性条件下,pH值的变化对苯酚的去除率有一定的影响,随着pH值的增大,去除率逐渐的降低;空床流速过大时,苯酚去除率有一定的下降;投加电解质后,苯酚的去除率增加,而就投加NaCl和NaNO_3的情况下,投加等摩尔浓度的NaCl和NaNO_3,投加NaCl的效果要优于投加NaNO_3的效果;提高废水中的溶解氧有利于苯酚的去除。

The toxicity of spent potliner is discussed in this paper according to the research on main constitutes,microstructure,tiny section components,ash content and hydrating reactivity of SPL. The result indicates that the toxicity of SPL mostly rests with its leaching toxicity,contaminates in SPL are mainly dissolving fluorides and cyanides,these contaminates mostly come from electrolyze which infiltrate into the potliner and cause erosion,contents of dissolving F— and CN— in SPL are far more than the permitted discharge in national standard. SPL, which seriously does harm to eco-environment is classified as hazardous solid waste and should be detoxified as soon as possible.

本文从废槽内衬的物相组成、微观形貌、微区成分、灰分、水化反应性五方面研究了废槽内衬的危害性,结果表明,废槽内衬的危害性主要在于其浸出毒性,毒害物质主要是可溶氟化物和氰化物,毒害物质主要来自于电解质对内衬的渗透、侵蚀,废槽内衬中可溶F—和CN—的浓度远远高于国家标准规定的允许排放量,因此废槽内衬被认定为固体危险废弃物,严重危害生态环境,必须进行无害化处理。

The invention relates to an electrochemical method for preparing ultra-fine tantalum powder, wherein it uses the mixture slat flux with CaCl2 or CaCl2 as electrolyte; composites Ta2O5 powder/block with metal collector as solid cathode; uses graphite or inertia anode as anode; uses reference polar to control the electrolysis level, under inertia gas to electrolyze at 500-1000Deg. C; and the electrolysis time should make electrolysis electricity reach needed amount; reduces Ta2O5 into ultra-fine metal tantalum powder.

本发明涉及一种超细钽粉的电化学制备方法,以CaCl2或者含有CaCl2的混盐熔体为电解质,将Ta2O5粉末或块与金属集流体复合作为固态阴极,以石墨或惰性阳极作为阳极,用参比电极控制电解电位在惰性气氛保护下进行电解,电解温度控制在500-1000℃,控制电解时间使电解电量到达到理论所需电量及以上,将五氧化二钽电化学还原为超细金属钽粉。

The addition of 0.2 mmol/L of cetyltrimethylammonium bromide could change the direction of electroosmotic flow.

由于在背景电解质中加入了0.2 mmol/L十六烷基三甲基溴化铵,因而电渗流的方向与传统的毛细管区带电泳中电渗流的方向相反。

Electrostriction and electrocoagulation promote condensation,rapid precipitation and dewatering so as to avoid using costly macromolecular electrolyte and chemicals.

电压缩和电絮凝促进凝结、快速沉淀及脱水,且不使用昂贵的高分子电解质和化学药品,也不需使用复杂且易于被超细微粒堵塞的过滤系统。

Startum lucidum: between horny layer and stratum granulosum, is made up of 2-3 layers of flat enucleated and vaguely bounded hyaline cells, the eleidin in them has a natural barrier action of preventing water and electrolyte pass through .

透明层:位于角质层和颗粒层之间,由2-3层扁平无核而界线不清的透明细胞组成,内含角母蛋白,有防止水及电解质通过的天然屏障作用。

Innovativeink emulsive over-changed of many factors, such as often occurs emulsifers, paper surface of active substances in solid powder, fillers, electrolyte and acid-base of paper etc.

油墨乳化过度的因素有很多,如常常出现的乳化剂,有纸张表面的活性物质固体粉末,一填充料、电解质、纸张的酸碱性等。

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这一模式非常关注商人的网络信用基础。

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