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首页> 外文期刊>International Journal of Semiconductor Science & Technology >NON CHEMICAL WATER TREATMENT PROCESS FOR TDS REDUCTION IN COOLING TOWER - SPECIFIC STUDY ON ELECTRICAL CONDUCTIVITY AND TURBIDITY
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NON CHEMICAL WATER TREATMENT PROCESS FOR TDS REDUCTION IN COOLING TOWER - SPECIFIC STUDY ON ELECTRICAL CONDUCTIVITY AND TURBIDITY

机译:冷却塔降低TDS的非化学水处理工艺-电导率和浊度的具体研究。

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Water is an important natural resource which is the key essential for life and livelihood. While the agricultural sector consumes a major portion of the available water resources, the growing urbanization demands more water resources for industrial and domestic use. The availability of fresh water for industrial utility purposes is the growing challenge in the recent past[1]. With the ongoing water scarcity challenges globally, it has become inevitable for industries to look alternative methods to replenish and reuse water [2]. The chemical and Non chemical methods of water treatment are gaining importance for effective water reuse in the industrial and domestic sector. The chemical water treatment methods are effective but at the same time are expensive in utility and maintenance. The non chemical water treatment methods such as filtration, membrane activation, ultrasonic treatment, magnetic separation and mechanical separation are commonly used in the industrial sector. This research investigates the pressure drop chamber system of non chemical water treatment which is unique and effective. The pressure drop created in a closed chamber enhances the precipitate formation which results in the reduction of the Total Dissolved Salts (TDS), hardness, pH and many other associated parameters. The effect of the Pressure drop chamber working parameters on the electrical conductivity and turbidity of water is studied. The differential inlet supply air pressure is tested for increasing settling time of30, 60, 90,120 and ISO minutes for a pressure drop chamber length of 300 mm, Nozzle inlet diameter of 35 mm, exit diameter of 16 m and nozzle length of 50 mm. The electrical conductivity and turbidity decreases with the decreases in TDS over increasing settling time [12]. A non linear but directly proportional correlation exists between the TDS and the Electrical conductivity and turbidity.
机译:水是重要的自然资源,对生命和生计至关重要。尽管农业部门消耗了可利用的水资源的很大一部分,但不断发展的城市化需要更多的工业和家庭用水。用于工业用途的淡水供应是近来日益严峻的挑战[1]。随着全球水资源短缺的持续挑战,行业已不可避免地寻求替代方法来补充和再利用水[2]。化学和非化学水处理方法对于工业和家庭用水的有效回用正变得越来越重要。化学水处理方法是有效的,但同时在实用和维护上很昂贵。非化学水处理方法,例如过滤,膜活化,超声处理,磁分离和机械分离,通常用于工业领域。本研究研究了非化学水处理的压降室系统,该系统独特且有效。在密闭室中产生的压降会增加沉淀物的形成,从而导致总溶解盐(TDS),硬度,pH值和许多其他相关参数的降低。研究了压降室工作参数对水的电导率和浊度的影响。测试了压差入口供气压力,以便在压降室长度为300 mm,喷嘴入口直径为35 mm,出口直径为16 m和喷嘴长度为50 mm的情况下,增加30、60、90,120和ISO分钟的稳定时间。随着稳定时间的增加,电导率和浊度随TDS的降低而降低[12]。 TDS与电导率和浊度之间存在非线性但直接成比例的关系。

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