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Spinning Disc Technology - Residence Time Distribution and Efficiency in Textile Wastewater Treatment Application

机译:纺织盘技术 - 纺织废水处理应用中的停留时间分布和效率

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The spinning disc (SD) technology has received increased attention in the last years due to its enhanced fluid flow features resulting in improved property transfers. The actual study focuses on characterization of the flow within a spinning disc system based on experimental data used to establish the residence time distribution (RTD) and its dependence on the feeding liquid flowrate and the disc rotational speed. To obtain these data, an inert tracer (sodium chloride) was injected as a pulse input in the liquid stream entering the disc and the salt concentration of the liquid leaving the disc was continuously recorded. The obtained data indicate that an increase in the liquid flowrate from 10 L/h to 30 L/h determines a narrower RTD function. Also, at rotational speed of 200 rpm, the residence time distribution is broader than that for 500 rpm and 800 rpm. The RTD data suggest that depending on the needed flow characteristics, one can choose a certain flowrate and rotational speed domain for its application. Also, the SD technology was used to process textile wastewater treated with bentonite (as both coagulation and discoloration agent) in order to investigate whether the quality indicators such as the total suspended solid content, turbidity and discoloration, can be improved. The experimental results are promising since the discoloration and the removals of suspended solids attained values of over 40%, and respectively, 50 %, depending on the effluent flowrate (10 l/h and 30 L/h), and the disc rotational speed (200 rpm, 550 rpm and 850 rpm) without any other addition of chemicals, or initiation of other simultaneous treatment processes (e.g., advanced oxidative, or reductive, or biochemical processes). This recommends spinning disc technology as a suitable and promising tool to improve different wastewater characteristics.
机译:由于其增强的流体流动特征,纺丝盘(SD)技术在过去几年中受到了更高的关注。实际研究专注于基于用于建立停留时间分布(RTD)的实验数据的旋转盘系统内的流动的表征及其对馈送液流量的依赖性和盘转速度。为了获得这些数据,将惰性示踪剂(氯化钠)注射作为进入盘的液体流中的脉冲输入,并且连续记录离开盘的液体的盐浓度。所获得的数据表明,从10L / h至30l / h的液体流量的增加确定了更窄的RTD函数。此外,在200 rpm的转速下,停留时间分布比500rpm和800rpm的升降时间分布更宽。 RTD数据表明,根据所需的流量特性,可以选择某个流量和旋转速度域。此外,SD技术用于处理用膨润土(作为凝固和变色剂)处理的纺织废水,以便研究是否可以改善悬浮的固体含量,浊度和变色等质量指标。实验结果是有前途的,因为悬浮固体的去除率达到40%以上的值,分别为40%,分别为50%,这取决于流出流量(10L / h和30 L / h)和盘转速度( 200 rpm,550 rpm和850 rpm)没有任何其他添加化学品,或引发其他同时治疗方法(例如,晚期氧化或还原或生化过程)。这推荐将旋转光盘技术作为一种合适的和有前途的工具,以改善不同的废水特性。

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