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Induction time measurements in two brackish water reverse osmosis plants for calcium carbonate precipitation

机译:两个微咸水反渗透装置中碳酸钙沉淀的诱导时间测量

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In this research work, the induction time of two brackish water reverse osmosis (BWRO) plants was measured with and without antiscalant (AS) operation with focus on calcium carbonate precipitation. This study focused on two BWRO plants in the Netherlands. The scaling potential of RO concentrate in the plant at recovery of 80% was calculated using the PHREEQC program. Induction times in RO concentrates were measured by collecting RO concentrates directly from the plants, with and without an AS dose in an air-tight glass reactor. The solution was continuously stirred for homogenization and maintained at room temperature using a thermostat. The change in pH of the solution over time was monitored. The time required to change the nucleation phase to just the start of the crystal growth was noted from the pH versus time graph, which was defined as induction time. At the end of the experiments, precipitate with RO concentrate with and without AS dose (plant B) were collected and an X-ray powder diffraction (XRD) and scanning electron microscope (SEM) analysis were performed. The results showed that the measured induction times for RO concentrate with AS dose in the two plants were longer than 100 and 280 h, respectively. The plants were operated at the same recovery (80%) but with different types of feed water and different types of AS. In a plant where the induction time could be measured without AS, the induction time turned out to be short namely about 4 h. The XRD results of this plant with and without an AS dose revealed calcite as the exclusive precipitate. The shapes of the crystals obtained with AS, shown by SEM images, were smaller, less clustered, and had more rounded edges than crystals without AS. The results suggested that the measured induction times of 100-280 h in both plants are much higher since the detention time in RO systems is just 1-1.5 min and even seconds in the last membrane. Therefore, for safe operation, induction time lower than what we measured in two BWRO plants might be needed.
机译:在这项研究工作中,测量了两个咸水反渗透(BWRO)植物在有无防垢剂(AS)操作下的诱导时间,重点是碳酸钙沉淀。这项研究的重点是荷兰的两家BWRO工厂。使用PHREEQC程序计算了回收率达到80%时工厂中RO精矿的规模规模潜力。通过在密闭玻璃反应器中直接收集有或没有AS剂量的RO精矿直接从工厂中收集RO精矿的诱导时间。连续搅拌溶液以进行均质化,并使用恒温器保持在室温下。监测溶液的pH随时间的变化。从pH与时间的关系图可以看出将成核相改变为晶体生长开始所需的时间,该时间定义为诱导时间。在实验结束时,收集具有和不具有AS剂量的RO浓缩物的沉淀物(植物B),并进行X射线粉末衍射(XRD)和扫描电子显微镜(SEM)分析。结果表明,在两株植物中,AS剂量的RO精矿的诱导时间分别长于100 h和280 h。这些工厂以相同的回收率(80%)运行,但使用不同类型的给水和不同类型的AS。在无需使用AS即可测量诱导时间的工厂中,诱导时间很短,大约为4 h。不论是否使用AS剂量,该植物的XRD结果均显示方解石为唯一的沉淀物。由SEM图像显示,与没有AS的晶体相比,由AS获得的晶体的形状更小,更不聚集并且具有更圆的边缘。结果表明,在两种植物中测得的诱导时间为100-280小时要高得多,因为反渗透系统中的滞留时间仅为1-1.5分钟,在最后一个膜中甚至为数秒。因此,为了安全操作,可能需要比我们在两个BWRO工厂中测量的感应时间短的感应时间。

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