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叶蜡石粉吸附污水中有害物质原理研究

Study on the Principle of Pyrophyllite Powder Adsorbing Harmful Substances in Sewage
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摘要 随着全球水污染问题的日益严重,寻找有效且经济的水处理技术成为了环境科学领域的重要研究方向之一。叶蜡石粉,作为一种天然硅酸盐矿物,因其独特的物理和化学性质,被认为是一种具有潜力的吸附材料。本文深入探讨了叶蜡石粉吸附污水中有害物质的原理,包括其基本特性、吸附机理以及对特定污染物的吸附特性。通过理论分析,应用Langmuir和Freundlich等温模型对其吸附行为进行了描述,并通过吸附动力学和热力学分析进一步验证了其吸附效果。研究发现,叶蜡石粉对重金属离子如铅和镉以及某些有机污染物如染料和农药显示出良好的吸附性能。此外,本文还讨论了影响吸附效率的因素,包括pH值、温度、初始浓度和接触时间,并对叶蜡石粉在污水处理中的应用前景和未来研究方向进行了展望。本研究为叶蜡石粉在环境保护和水资源管理中的应用提供了理论支持和技术参考,展示了其作为一种高效、经济的吸附材料的潜力。With the increasingly serious problem of global water pollution, the search for effective and economical water treatment technology has become one of the important research directions in the field of environmental science. Pyrophyllite powder, as a natural silicate mineral, is considered as a potential adsorption material because of its unique physical and chemical properties. In this paper, the principle of pyrophyllite powder adsorbing harmful substances in sewage is discussed, including its basic characteristics, adsorption mechanism and adsorption characteristics of specific pollutants. Through theoretical analysis, we applied Langmuir and Freundlich isothermal models to describe the adsorption behavior, and further verified the adsorption effect through adsorption kinetics and thermodynamics analysis. It was found that pyrophyllate powder showed good adsorption properties for heavy metal ions such as lead and cadmium and some organic pollutants such as dyes and pesticides. In addition, the factors affecting the adsorption efficiency, including pH value, temperature, initial concentration and contact time, are discussed. The application prospect and future research direction of pyrophylla powder in wastewater treatment are also discussed. This study provides theoretical support and technical reference for the application of pyrophylla powder in environmental protection and water resource management, and demonstrates its potential as an efficient and economical adsorption materia.
作者 白佳怡
出处 《水污染及处理》 CAS 2024年第4期94-102,共9页 Water Pollution and Treatment
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