Jia XiaoQi, Yuan Sheng, Li Bo, Miu HongJiang, Yuan Jing, Wang CanFei, Zhu ZuChao, Zhang YuLiang
Key Laboratory of Fluid Transmission Technology of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou, China.
Key Laboratory of Air-Driven Equipment Technology of Zhejiang Province, Quzhou University, Quzhou, China.
Front Chem. 2020 Nov 12;8:600594. doi: 10.3389/fchem.2020.600594. eCollection 2020.
Environmental pollution as a result of urban and industrial wastewater has become an increasingly prominent issue. Rivers, lakes, and oceans that have become eutrophicated or polluted by suspended solids and hazardous substances in wastewater have endangered the environment. A root cause of this is the discharge of untreated urban and industrial wastewater into the ecosystem. As a solution to the pollution, wastewater treatment facilities have seen increasingly rapid development. Sewage pumps are designed to transport urban and industrial wastewater containing solid particles or hazardous substances to water treatment centers for purification and treatment. Sewage pumps are of great importance in the entire wastewater treatment system. Sewage in the environment where sewage pumps work usually contains sands, suspended particles, and plenty of saline ions. Flow passage components and sealing elements of the pump become vulnerable to abrasion and chemical corrosion, which further challenges operational stability of the pump. Research has remained focused on how to improve reliability of sewage pumps under severe conditions. Because of advances in materials science, the application of an increasing number of new materials has been witnessed, such as carbon-based composite materials and carbon nanomaterials, thanks to their fine self-lubrication performance, heat resistance, thermal and electrical conductivity, chemical stability, heat and seismic resistance, as well as plasticity. These properties contribute to enormous potential that new carbon-based composite materials and carbon nanomaterials have to offer in terms of corrosion resistance. This paper outlines application scenarios, research progress, and the prospect of new materials in sewage pumps.
城市和工业废水造成的环境污染已成为一个日益突出的问题。因废水中的悬浮固体和有害物质而变得富营养化或受到污染的河流、湖泊和海洋危及了环境。其根本原因是未经处理的城市和工业废水排放到生态系统中。作为解决污染问题的方法,废水处理设施得到了越来越迅速的发展。污水泵旨在将含有固体颗粒或有害物质的城市和工业废水输送到水处理中心进行净化和处理。污水泵在整个废水处理系统中至关重要。污水泵工作环境中的污水通常含有沙子、悬浮颗粒和大量盐离子。泵的流道部件和密封元件容易受到磨损和化学腐蚀,这进一步挑战了泵的运行稳定性。研究一直聚焦于如何在恶劣条件下提高污水泵的可靠性。由于材料科学的进步,人们见证了越来越多新型材料的应用,如碳基复合材料和碳纳米材料,这得益于它们良好的自润滑性能、耐热性、导热导电性、化学稳定性、耐热抗震性以及可塑性。这些特性使得新型碳基复合材料和碳纳米材料在耐腐蚀方面具有巨大潜力。本文概述了新材料在污水泵中的应用场景、研究进展及前景。