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电渗析倒极(EDR)性能用于反渗透海水淡化系统浓盐水处理。

Electro dialysis reversal (EDR) performance for reject brine treatment of reverse osmosis desalination system.

机构信息

Department of Environmental Science, Faculty of Natural Resources and Environment, Science and Research Branch, Islamic Azad University, Tehran, Iran.

Department of Water and Wastewater Engineering, Faculty of Civil, Water and Environmental Engineering, Shahid Beheshti University, Tehran, Iran.

出版信息

PLoS One. 2022 Aug 24;17(8):e0273240. doi: 10.1371/journal.pone.0273240. eCollection 2022.

Abstract

In this study, the performance of bench-scale EDR was evaluated using the samples taken from the 1st and the 2nd stage RO from the Brackish Water Reverse Osmosis (BWRO) plant in Eshtehard, Iran. The measurements indicated that original TDS of the aquifer brackish water was equal to 3,229-3,664 mg/L, whereas TDS of the 1st stage RO brine was between 5,500 and 7,700 mg/L, that TDS of the 2nd stage RO brine was in the range of 9,500-10,600 mg/L. A batch bench-scale EDR system of 12 l/h was used with a direct electric current at three different scenarios. In the first, the brine was fed at 20°C (as a reference regulated point). In the second, temperature (14, 20, 26.5°C), and in the third, voltage were changed (6, 12, 18, 24 V) to investigate their influences on performance of the EDR process, while the other operational parameters (feed flow rate, recovery ratio, quality of feed brine)were kept constant. Based on the data analysis using the ANOVA and DUNCAN tests for the second and third scenarios, it was observed that the optimum TDS removal efficiency of the EDR process can be at temperature of 26.5°C and voltage of 18 V. On the other hand, the successful performance of the bench-scale EDR in reducing the 29,000 mg/L TDS and the 45,000 μmhos/cm EC of the 2nd stage brine to 1,716 mg/L (TDS) and 2,640 μmhos/cm (EC) (at 26.5°C and 24V) could be considered as the main achievement of this research. Overall, the hybrid process RO-EDR-RO can be considered as the best technical, environmental and economical scenario for the development of Eshtehard Desalination Plant phase 2 at full scale.

摘要

在这项研究中,使用来自伊朗埃斯塔哈德咸水反渗透(BWRO)工厂第一级和第二级反渗透(RO)的样品评估了台式电去离子(EDR)的性能。测量结果表明,含水层咸水的原始总溶解固体(TDS)等于 3229-3664mg/L,而第一级 RO 盐水的 TDS 在 5500 至 7700mg/L 之间,第二级 RO 盐水的 TDS 在 9500-10600mg/L 范围内。使用 12L/h 的批处理台式 EDR 系统,在三种不同情况下施加直流电。在第一种情况下,将盐水以 20°C 进料(作为参考调节点)。在第二种情况下,改变温度(14、20、26.5°C),在第三种情况下改变电压(6、12、18、24V),以研究它们对 EDR 过程性能的影响,同时保持其他操作参数(进料流量、回收率、进料盐水质量)不变。根据第二种和第三种情况下的 ANOVA 和 DUNCAN 测试数据分析,观察到 EDR 过程的最佳 TDS 去除效率可以在温度为 26.5°C 和电压为 18V 时达到。另一方面,台式 EDR 成功地将第二级盐水的 29000mg/L TDS 和 45000μmhos/cm EC 降低到 1716mg/L(TDS)和 2640μmhos/cm(EC)(在 26.5°C 和 24V 时),可以被认为是这项研究的主要成果。总的来说,RO-EDR-RO 混合工艺可以被认为是埃斯塔哈德海水淡化厂第二期全面投产的最佳技术、环境和经济方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3864/9401187/205b03f69707/pone.0273240.g001.jpg

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