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Treatment of RO brine-towards sustainable water reclamation practice

机译:反渗透盐水的处理,朝着可持续的水再生实践

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Treatment and disposal of RO brine is an important part in sustaining the water reclamation practice. RO brine generated from water reclamation contains high concentration of organic and inorganic compounds. Cost-effective technologies for treatment of RO brine are still relatively unexplored. Thus, this study aim to determine a feasible treatment process for removal of both organic and inorganic compounds in RO brine generated from NEWater production. The proposed treatment consists of biological activated carbon (BAC) column followed by capacitive deionization (CDI) process for organic and inorganic removals, respectively. Preliminary bench-scale study demonstrated about 20% TOC removal efficiency was achieved using BAC at 40 mins empty bed contact time (EBCT) while the CDI process was able to remove more than 90% conductivity reducing it from 2.19 mS/cm to only about 164mS/cm. More than 90% cations and anions in the BAC effluent were removed using CDI process. In addition, TOC and TN removals of 78% and 91%, respectively were also attained through this process. About 90% water recovery was achieved. This process shows the potential of increased water recovery in the reclamation process while volume for disposal can be further minimized. Further studies on the sustainable operation and process optimization are ongoing.
机译:RO盐水的处理和处置是维持水回收实践的重要部分。水再生产生的反渗透盐水含有高浓度的有机和无机化合物。用于RO盐水处理的具有成本效益的技术仍相对未开发。因此,本研究旨在确定一种可行的处理方法,以去除NEWater生产中产生的RO盐水中的有机和无机化合物。拟议的处理方法包括生物活性炭(BAC)柱,然后分别进行有机和无机去除的电容去离子(CDI)工艺。初步的规模研究表明,在40分钟的空床接触时间(EBCT)下,使用BAC可达到约20%的TOC去除效率,而CDI工艺能够去除90%以上的电导率,将其从2.19 mS / cm降至仅约164mS /厘米。使用CDI工艺去除了BAC废水中90%以上的阳离子和阴离子。此外,通过该工艺还可以分别去除78%和91%的TOC和TN。回收了约90%的水。此过程显示出在回收过程中提高水回收率的潜力,同时可以进一步减少处理量。关于可持续运营和流程优化的进一步研究正在进行中。

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