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首页> 外文期刊>Journal of Chemical Engineering of Japan >Crystallization Operation Method for Recovering Mg Resources from the Sea Water Desalination Process
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Crystallization Operation Method for Recovering Mg Resources from the Sea Water Desalination Process

机译:从海水淡化过程中回收镁资源的结晶操作方法

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References(8) In the sea water desalination process, brine is produced as a byproduct. Brine contains several resources which are various valuable ion materials in high concentration. If the sea water desalination process is integrated with a resource recovery process, a reduction in environmental load and production of valuable resources can be achieved. Mg2+ ion is the second most abundant ion in sea water. However, the development of a Mg2+ ion recovery method is not sufficient. The Mg2+ recovering method in magnesium hydroxide (MH) form from brine has been studied. Brine and bittern are produced when the sea water desalination process is integrated with the resource recovery process. When MH is recovered from concentrated sea water, two kinds of raw resource materials, i.e. brine and bittern, can be considered. However, the MH recovery process using brine as a raw resource material is not compared with the recovery process using bittern. This is because there is almost no fundamental data of MH crystals for process comparison, and MH crystals are produced as ultra-fine particles. Therefore, the purpose of this present study is to obtain the fundamental data for development of the MH recovery process in an integrated process. In particular, the prevention method of ultra-fine MH crystal deposition is investigated, and the yield and crystallinity of MH crystals are compared. It is clear that the yield and crystallinity of MH crystals are strongly dependent on temperature and the kind of raw resource material. These results show a strategy for improvement in process efficiency when MH crystals are recovered from the sea water desalination process.
机译:参考文献(8)在海水淡化过程中,盐水是副产品。盐水包含多种资源,这些资源是高浓度的各种有价值的离子材料。如果将海水淡化过程与资源回收过程结合在一起,则可以减少环境负荷并生产有价值的资源。 Mg2 +离子是海水中第二丰富的离子。但是,开发Mg 2+离子回收方法还不够。研究了从盐水中回收氢氧化镁(MH)形式的Mg2 +的方法。当海水淡化过程与资源回收过程相结合时,就会产生卤水和卤水。从浓海水中回收MH时,可以考虑使用两种原料资源,即盐水和盐卤。但是,没有将使用盐水作为原料的MH回收过程与使用卤水的回收过程进行比较。这是因为几乎没有用于比较的MH晶体的基本数据,并且MH晶体是作为超细颗粒生产的。因此,本研究的目的是获得在集成过程中开发MH回收过程的基础数据。特别是,研究了防止超细MH晶体沉积的方法,并比较了MH晶体的产率和结晶度。显然,MH晶体的产率和结晶度强烈依赖于温度和原材料的种类。这些结果表明,当从海水淡化过程中回收MH晶体时,可以提高处理效率。

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