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Boron removal from waste water originating in the open pit mines of Bigadic Boron Work by means of reverse osmosis

机译:通过反渗透法从比加迪克硼矿露天矿山产生的废水中去除硼

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摘要

In this study, the base water originating in Simav Open Pit Mine containing the most important reserves of colemanite and ulexite boron minerals, has a boron concentration of 150 ± 50 mg/L, was treated to maximum 2 mg/L with the help of pilot RO system which was designed with two-phase reverse osmosis system. This system was designed and produced by Italian GEL Company. Temperature, pH, pressure and inlet boron concentration were chosen as research parameters in this study and influences of these parameters were analysed. According to the results of test periods; the efficiency of boron removal increases with increasing inlet pH and inlet pressure; the efficiency of boron removal decreases with increasing inlet temperature and inlet boron concentration. According to the economical analysis delivered during research period, the cost of 1 m~3 treated water is 1.21 ? in 2010, the result for the year 2011 is 1.28 ?. According to the cost analysis of the plant over years, energy and caustic consumptions took the biggest parts; it was concluded that the percentage of caustic consumption was 25.93 and the energy consumption was 22.11 in 2010; the percentage of caustic consumption is 21.92 and the energy consumption is 28.40 in 2011.
机译:在这项研究中,源自Simav露天矿的基础水包含最重要的储量为硬锰矿和方钠石的硼矿物质,硼浓度为150±50 mg / L,在试点方法的帮助下被处理至最大2 mg / L采用两相反渗透系统设计的反渗透系统。该系统由意大利GEL公司设计和生产。选择温度,pH,压力和进口硼浓度作为研究参数,并分析了这些参数的影响。根据测试周期的结果;硼的去除效率随着入口pH和入口压力的增加而增加;硼去除效率随入口温度和入口硼浓度的增加而降低。根据研究期间进行的经济分析,处理1 m〜3水的成本为1.21?在2010年,2011年的结果是1.28?。根据工厂多年的成本分析,能源和苛性碱消耗量最大;得出的结论是,2010年苛性碱消耗百分比为25.93,能耗为22.11。 2011年,苛性钠消耗量的百分比为21.92,能耗为28.40。

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