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Titanate Fibroin Nanocomposites: A Novel Approach for the Removal of Heavy-Metal Ions from water

机译:钛酸纤维素纳米复合材料:一种从水中除去重金属离子的新方法

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摘要

In this study, we report the fabrication of nanocomposites made of titanate nanosheets immobilized in a solid matrix of regenerated silk fibroin as novel heavy-metal ion removal systems. The capacity of these nanocomposite films to remove lead, mercury, and copper cations from water was investigated, and as shown by the elemental quantitative analysis performed, their removal capacity is 73 mmol/g for all of the ions tested. We demonstrate that the nanocomposites can efficiently retain the adsorbed ions, with no release of titanate nanosheets occurring even after several exposure cycles to ionic solutions, eliminating the risk of release of potentially hazardous nanosubstances to the environment. We also prove that the introduction of sodium ions in the nanocomposite formulation makes the materials highly selective toward the lead ions. The developed biopolymer nanocomposites can be potentially used for the efficient removal of heavy-metal-ion pollutants from water and, thanks to their physical and optical characteristics, offer the possibility to be used in sensor applications.
机译:在该研究中,我们报告了由固定在再生丝素蛋白的固体基质中固定的钛酸酯纳米蛋白制成的纳米复合材料的制备,作为新型重金属离子去除系统。研究了这些纳米复合膜以除去铅,汞和来自水的铜阳离子的能力,并且如通过进行元素定量分析所示,它们的去除能力为73mmol / g,用于所有测试的离子。我们证明纳米复合材料可以有效地保留吸附离子,即使在几次暴露循环到离子溶液之后,也没有释放钛酸纳米片,从而消除了对环境释放出潜在危险的纳米术的风险。我们还证明,纳米复合配合物中的钠离子引入使材料具有高度选择性朝向铅离子。开发的生物聚合物纳米复合材料可以有可能用于从水中有效去除重金属离子污染物,并且由于其物理和光学特性,提供了在传感器应用中使用的可能性。

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