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Preparation of potassium ionic sieve membrane and its application on extracting potash from seawater

机译:钾离子筛膜的制备及其在海水萃取钾中的应用

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摘要

Potash has been extensively used as fertilizers and industrial materials. To utilize the potassium resources in the seawater effectively, a potassium ionic sieve membrane was synthesized on α-Al2O3 ceramic tube by the hydrothermal synthesis method. Then it was characterized by SEM photos, which showed that it was closely combined with the support and there were no obvious intracrystalline pores or Assures. Afterwards, the separation selectivity of the potassium ionic sieve membranes to IC, Na+, Ca~(2+) and Mg~(2+) was determined to evaluate the potential of its application on extracting potash from seawater. The results showed that the separation factors ofK~+/Na~+, K~+/Mg~(2+) and K~+/Ca~(2+) were equal to 93.5,161.4, 1185.7 respectively, which indicated that the potassium ionic sieve membranes had much higher selectivity to K~+. Further studies on the continual ionic exchange experiments using the potassium ionic sieve membrane proved that the flux of K~+ across the potassium ionic sieve membrane increased with the increasing of flow rate, and higher temperature was benefit to the separation of K~+ in K~+/Mg~(2+) mixed solutions. The continual ionic exchange process can proceed on the potassium ionic sieve membrane spontaneously without any external power. Furthermore, a mechanism based on the channel diameter of the potassium ionic sieve membrane was proposed to explain its higher selectivity to K~+.
机译:钾肥已被广泛用作肥料和工业原料。为了有效利用海水中的钾资源,通过水热合成法在α-Al2O3陶瓷管上合成了钾离子筛膜。然后用SEM照片表征,表明它与载体紧密结合,没有明显的晶内孔或Assures。然后,测定了钾离子筛膜对IC,Na +,Ca〜(2+)和Mg〜(2+)的分离选择性,以评价其在从海水中提取钾盐中的应用潜力。结果表明,K〜+ / Na〜+,K〜+ / Mg〜(2+)和K〜+ / Ca〜(2+)的分离系数分别等于93.5、161.4、1185.7。钾离子筛膜对K〜+的选择性更高。通过使用钾离子筛膜进行连续离子交换实验的进一步研究表明,钾离子穿过钾离子筛膜的通量随着流速的增加而增加,并且较高的温度有利于钾在钾离子中的分离〜+ / Mg〜(2+)混合溶液。连续的离子交换过程可以在没有任何外部能量的情况下自发地在钾离子筛膜上进行。此外,提出了基于钾离子筛膜通道直径的机理来解释其对K +的更高选择性。

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