Technological Approaches for the Reduction of Microplastic Pollution in Seawater Desalination Plants and for Sea Salt Extraction

Katrin Schuhen, M. Sturm, Adrian Frank Herbort
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引用次数: 12

Abstract

An increasingly serious and widespread problem is the introduction of plastics into the water cycle. The poor degradability leads to the plastic waste remaining in water for a long time and over time it fragments into smaller and smaller plastic particles. Both the visible plastic parts and in particular their decomposition products and functionalized plastic particles are an enormous burden. Seawater desalination and sea salt extraction are highly dependent on the quality of the seawater in terms of process utilization and cost structures, i.e., on the level of pollution. Especially microparticles represent a significant potential for blocking the microfiltration membranes (pore size > 100 nm) in the pretreatment and the very costly reverse osmosis (RO) membranes (pore size > 5 nm). An innovative approach for the removal of microplastics from industrially used seawater combines a chemically induced agglomeration and a new technological implementation step. The particular challenge in removing the synthetic impurities is not only their small size but also their inert properties against most of the physical and chemical additives for flocculation. With an easy implementation to existing systems, an economic aspect and a strong impact on the maritime ecological balance will be expected.
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减少海水淡化厂微塑料污染及海盐提取的技术途径
一个日益严重和普遍的问题是塑料进入水循环。可降解性差导致塑料垃圾在水中停留很长时间,随着时间的推移,它会分解成越来越小的塑料颗粒。可见的塑料部件,特别是它们的分解产物和功能化塑料颗粒都是一个巨大的负担。海水淡化和海盐提取在工艺利用和成本结构方面高度依赖于海水的质量,即污染程度。特别是微颗粒在预处理微滤膜(孔径> 100 nm)和非常昂贵的反渗透(RO)膜(孔径> 5 nm)中具有重要的阻断潜力。一种从工业用海水中去除微塑料的创新方法结合了化学诱导团聚和新的技术实施步骤。去除合成杂质的特殊挑战不仅在于它们的体积小,而且在于它们对大多数絮凝用物理和化学添加剂的惰性。随着现有系统的轻松实施,预计将产生经济方面的影响,并对海洋生态平衡产生强烈影响。
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