首页> 外文会议>2012 IEEE 4th International Conference on Adaptive Science amp; Technology. >Characterization of solar-powered non-asbestos diaphragm cells for the production of caustic soda
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Characterization of solar-powered non-asbestos diaphragm cells for the production of caustic soda

机译:用于生产苛性钠的太阳能非石棉隔膜电池的特性

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An experimental study was performed using an array of solar panels to power three non-asbestos diaphragm type electrochemical cells whose anodes consisted of carbon rods and cathodes made up of stainless steel plate for the electrolysis of a 25% w/w sodium chloride solution, with the aim of producing caustic soda. The non-asbestos diaphragms served to hinder the formation of unwanted substances as well as permit reasonable production of the desired products. Quantitative analysis showed that the quantity and concentration of caustic soda produced varied with the current and voltage obtained from the solar panels which were dependent upon the intensity of the sun on any particular day and the length of time the panels were exposed to sunlight. The three non-asbestos diaphragm cells exhibited various characteristic performances, which are reflections of their design, fabrication, composition and operational parameters. The non-asbestos diaphragm D3 with composition of 60 % w/w Portland cement, 20 % w/w silica and 20 % w/w polyvinyl chloride (PVC) indicated the highest yield of caustic soda per d.c Watt with specific electrical energy supplied. The research served as an encouraging inquisitive foundation into the possibility of producing caustic soda directly from solar powered electrolytic diaphragm cells as well as investigating key factors that affects cell performance in view of present conventional modes of electrochemical production.
机译:使用太阳能电池板阵列为三个非石棉隔膜式电化学电池提供了动力,该电化学电池的阳极由碳棒组成,阴极由不锈钢板组成,用于电解25%w / w的氯化钠溶液,生产苛性钠的目的。非石棉隔膜可以阻止有害物质的形成,并可以合理地生产所需产品。定量分析表明,所产生的苛性钠的数量和浓度随从太阳能电池板获得的电流和电压而变化,该电流和电压取决于任何特定日期的太阳强度以及太阳能电池板暴露于阳光下的时间长度。这三个非石棉隔膜电池表现出各种特征性能,反映了它们的设计,制造,组成和操作参数。组成为60%w / w的硅酸盐水泥,20%w / w的二氧化硅和20%w / w的聚氯乙烯(PVC)的非石棉隔膜D3表示,在提供特定电能的情况下,每d.c瓦特的苛性钠产量最高。该研究为直接从太阳能电解隔膜电池生产苛性钠的可能性提供了令人鼓舞的好奇基础,并根据当前的常规电化学生产方式,研究了影响电池性能的关键因素。

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