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Rapid and efficient removal of boron from deep sea water using synthesized polymer resin

机译:使用合成聚合物树脂快速有效地从深海水中去除硼

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The present investigation aims to remove boron from deep sea water using the n-methyl d-glucamine-modified polymeric resin as synthesized in the laboratory. The resins are characterized by IR analysis and the morphology is discussed with the help of scanning electron microscopic images. Further, the resin is distributed in three different bead sizes i.e. 0.25, 0.5 and 1.0mm, and assessed their removal efficiency for the boron removal under batch and column operations. Batch data show that a very fast uptake of boron took place and within 20min of contact, almost a complete removal of boron occurred. Further, the kinetics of boron uptake is performed using linear equations of pseudo-first-order and pseudo-second-order rate equations. The applicability of pseudo-second-order rate law inferred that the boron is sorbed onto the solid surface by strong chemical forces, forming an inner sphere complexes. The batch and column data obtained for the boron removal is then critically compared with the commercially available resin. Further, reusability of this resin is also obtained taking the repeated operations using the same used resin. These results may, perhaps, enable to reduce the input cost of deep sea water treatment.
机译:本研究旨在使用实验室合成的正甲基d-葡萄糖胺改性的聚合树脂从深海水中去除硼。通过IR分析表征树脂,并借助扫描电子显微镜图像讨论形态。此外,树脂以三种不同的珠粒尺寸(即0.25、0.5和1.0mm)分布,并评估了其在分批和塔操作下除硼的去除效率。批处理数据显示,硼吸收非常快,并且在接触后20分钟内,几乎完全去除了硼。此外,硼的吸收动力学是使用拟一阶和拟二阶速率方程的线性方程进行的。拟二阶速率定律的适用性表明,硼被强化学力吸附在固体表面上,形成一个内球络合物。然后将获得的除硼的批料和塔数据与市售树脂进行严格比较。此外,通过使用相同使用的树脂进行重复操作,也获得了该树脂的可重复使用性。这些结果也许可以降低深海水处理的投入成本。

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