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A new, energy-efficient approach for boron removal from SWRO plants

机译:一种从SWRO装置中除硼的节能新方法

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A different approach for the operation of seawater reverse osmosis desalination plants, in which the boron concentration in the product water should not exceed 0.3mgB/L, was recently introduced. The new approach is based on strong acid (either H_2SO_4 or HC1) dosage to the feed seawater to attain pH ~ 4.3, followed by almost complete CO_2 stripping and subsequently strong base addition to pH 9.0-9.25. At this high pH range, a high B removal efficiency can be attained even by the new generation of ultra-low energy (high-flux) membranes. This paper addresses the energy saving potential stemming from the elimination or size reduction of the 2nd reverse osmosis (RO) pass and from the use of high-flux elements, both made possible by the new approach. Additionally, total dissolved solids removal from the 1st RO pass permeate can be obtained by operating a smaller, more energy efficient, 2nd RO pass.
机译:最近引入了一种操作海水反渗透淡化厂的不同方法,其中产品水中的硼浓度不应超过0.3mgB / L。新方法是基于在进料海水中加入强酸(H_2SO_4或HCl)达到pH〜4.3,然后几乎完全汽提CO_2,随后加入强碱至pH 9.0-9.25。在如此高的pH范围内,即使使用新一代的超低能量(高通量)膜,也可以获得很高的B去除效率。本文探讨了通过消除或减小第二次反渗透(RO)通道以及使用高通量元素而产生的节能潜力,这两种新方法均使之成为可能。另外,可以通过操作更小,更节能的第二次RO通过来获得从第一次RO通过渗透物中除去的总溶解固体。

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