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Nanocomposite Electrospun Nanofiber Membranes for Environmental Remediation

机译:用于环境修复的纳米复合电纺纳米纤维膜

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摘要

Rapid worldwide industrialization and population growth is going to lead to an extensive environmental pollution. Therefore, so many people are currently suffering from the water shortage induced by the respective pollution, as well as poor air quality and a huge fund is wasted in the world each year due to the relevant problems. Environmental remediation necessitates implementation of novel materials and technologies, which are cost and energy efficient. Nanomaterials, with their unique chemical and physical properties, are an optimum solution. Accordingly, there is a strong motivation in seeking nano-based approaches for alleviation of environmental problems in an energy efficient, thereby, inexpensive manner. Thanks to a high porosity and surface area presenting an extraordinary permeability (thereby an energy efficiency) and selectivity, respectively, nanofibrous membranes are a desirable candidate. Their functionality and applicability is even promoted when adopting a nanocomposite strategy. In this case, specific nanofillers, such as metal oxides, carbon nanotubes, precious metals, and smart biological agents, are incorporated either during electrospinning or in the post-processing. Moreover, to meet operational requirements, e.g., to enhance mechanical stability, decrease of pressure drop, etc., nanofibrous membranes are backed by a microfibrous non-woven forming a hybrid membrane. The novel generation of nanocomposite/hybrid nanofibrous membranes can perform extraordinarily well in environmental remediation and control. This reality justifies authoring of this review paper.
机译:全球快速的工业化和人口增长将导致广泛的环境污染。因此,目前有许多人由于各自的污染而导致缺水,空气质量差,并且由于相关问题,每年在世界上浪费大量资金。环境修复需要采用新颖的材料和技术,这些材料和技术既经济又节能。纳米材料具有独特的化学和物理特性,是一种最佳解决方案。因此,在寻求基于纳米的方法来以节能,从而廉价的方式减轻环境问题的强烈动机。由于高孔隙率和表面积分别呈现出非凡的渗透性(从而提高了能源效率)和选择性,因此纳米纤维膜是理想的选择。当采用纳米复合材料策略时,甚至可以提高其功能性和适用性。在这种情况下,在电纺丝过程中或在后处理过程中会掺入特定的纳米填料,例如金属氧化物,碳纳米管,贵金属和智能生物制剂。此外,为了满足操作要求,例如增强机械稳定性,降低压降等,纳米纤维膜由形成混合膜的微纤维非织造布作为背衬。新一代的纳米复合/混合纳米纤维膜可以在环境修复和控制方面表现出色。这种现实证明撰写本评论论文是合理的。

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