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通过选择性离子交换树脂从海水淡化浓盐水中回收硼

Boron recovery from desalination seawater brines by selective ion exchange resins.

作者信息

Figueira Mariana, Reig Mònica, Fernández de Labastida Marc, Cortina José Luis, Valderrama César

机构信息

Chemical Engineering Department, Escola d'Enginyeria de Barcelona Est (EEBE), Universitat Politècnica de Catalunya (UPC)-BarcelonaTECH, C/ Eduard Maristany 10-14, Campus Diagonal-Besòs, 08930, Barcelona, Spain; Barcelona Research Center for Multiscale Science and Engineering, Campus Diagonal-Besòs, 08930, Barcelona, Spain.

Chemical Engineering Department, Escola d'Enginyeria de Barcelona Est (EEBE), Universitat Politècnica de Catalunya (UPC)-BarcelonaTECH, C/ Eduard Maristany 10-14, Campus Diagonal-Besòs, 08930, Barcelona, Spain; Barcelona Research Center for Multiscale Science and Engineering, Campus Diagonal-Besòs, 08930, Barcelona, Spain.

出版信息

J Environ Manage. 2022 Jul 15;314:114984. doi: 10.1016/j.jenvman.2022.114984. Epub 2022 Apr 14.

Abstract

The European Union (EU) depends on third markets to supply many important raw materials. Increasing the circularity of critical raw materials within the EU is important not only from an environmental perspective, but also as a competitive advantage for the EU economy. In the case of boron, the EU's import dependency is about 100%. This work aims to evaluate the boron recovery from seawater desalination plants (SWDP) brines using ion-exchange resins in a circular economy approach. Commercial boron selective resins Purolite S108, DIAION CRB03 and CRB05 were tested and compared on batch and dynamic experiments. Thermodynamic and kinetic experiments were performed, and results were fitted by linear and non-linear models. After a comparison, results showed a good fit to the Langmuir isotherm and the pseudo-second order model, respectively, for all the commercial resins tested. The DIAION CRB03 resin presented higher sorption capacity and percentage of boron sorbed than the other resins and was selected as the best option for boron recovery from SWDP brine. Dynamic experiments in fixed bed column using DIAION CRB03 resulted in a sorption capacity of 13 mg/g of resin, a boron recovery of 98% and a concentration factor of 30, for an initial boron concentration of 50 mg/L. In addition, an economic analysis was carried out as a preliminary estimate of the revenues obtained from the production of boric acid from the brine produced by El Prat desalination plant.

摘要

欧盟依赖第三方市场供应许多重要原材料。提高欧盟内部关键原材料的循环利用率不仅从环境角度来看很重要,而且对欧盟经济而言也是一种竞争优势。就硼而言,欧盟的进口依存度约为100%。这项工作旨在采用循环经济方法,评估利用离子交换树脂从海水淡化厂(SWDP)卤水中回收硼。对商业硼选择性树脂Purolite S108、DIAION CRB03和CRB05进行了批次和动态实验测试及比较。进行了热力学和动力学实验,并通过线性和非线性模型对结果进行拟合。经过比较,结果表明,对于所有测试的商业树脂,分别与朗缪尔等温线和伪二级模型拟合良好。DIAION CRB03树脂的吸附容量和硼吸附百分比高于其他树脂,被选为从SWDP卤水中回收硼的最佳选择。使用DIAION CRB03在固定床柱中进行的动态实验,对于初始硼浓度为50 mg/L的情况,树脂的吸附容量为13 mg/g,硼回收率为98%,浓缩系数为30。此外,还进行了经济分析,作为对从埃尔普拉特海水淡化厂产生的卤水中生产硼酸所获收入的初步估计。

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