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Materials and Applications for Low-Cost Ceramic Membranes

机译:低成本陶瓷膜的材料和应用

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摘要

In water treatment applications, the use of ceramic membranes is associated with numerous advantages relative to polymer-based filtration systems. High-temperature stability, fouling resistance, and low maintenance requirements contribute to lower lifecycle costs in such systems. However, the high production costs of most commercially available ceramic membranes, stemming from raw materials and processing, are uneconomical for such systems in most water treatment applications. For this reason, there is a growing demand for new ceramic membranes based on low-cost raw materials and processes. The use of unrefined mineral feedstocks, clays, cement, sands, and ash as the basis for the fabrication of ceramic membranes offers a promising pathway towards the obtainment of effective filtration systems that can be economically implemented in large volumes. The design of effective ceramic filtration membranes based on low-cost raw materials and energy-efficient processes requires a balance of pore structure, mass flow, and robustness, all of which are highly dependent on the composition of materials used, the inclusion of various pore-forming and binding additives, and the thermal treatments to which membranes are subjected. In this review, we present recent developments in materials and processes for the fabrication of low-cost membranes from unrefined raw materials, including clays, zeolites, apatite, waste products, including fly ash and rice husk ash, and cement. We examine multiple aspects of materials design and address the challenges relating to their further development.
机译:在水处理应用中,相对于基于聚合物的过滤系统,陶瓷膜的使用具有许多优势。高温稳定性,耐污垢性和较低的维护要求有助于降低此类系统的生命周期成本。然而,对于大多数水处理应用中的此类系统而言,源自原材料和加工的大多数市售陶瓷膜的高生产成本是不经济的。因此,对基于低成本原材料和工艺的新型陶瓷膜的需求不断增长。使用未精制的矿物原料,粘土,水泥,沙子和灰烬作为制造陶瓷膜的基础,为获得可经济地大量实施的有效过滤系统提供了一条有希望的途径。基于低成本原材料和节能工艺的有效陶瓷过滤膜的设计要求在孔隙结构,质量流量和坚固性之间取得平衡,所有这些都高度取决于所用材料的组成以及各种孔隙的包含-形成和结合添加剂,以及膜要经受的热处理。在这篇综述中,我们介绍了由未精制原料(包括粘土,沸石,磷灰石,废品,包括粉煤灰和稻壳灰)以及水泥制造低成本膜的材料和工艺的最新进展。我们研究材料设计的多个方面,并解决与材料进一步开发相关的挑战。

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