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优化温和表面清洁方法:水纯度和pH值的影响

Optimizing mild surface cleaning methods: influence of water purity and pH.

作者信息

Tsompou Andriani, Kocherbitov Vitaly

机构信息

Department of Biomedical Science, Malmö University, Malmö, SE-20506, Sweden.

Biofilms research center for Biointerfaces, Malmö University, Malmö, Sweden.

出版信息

Sci Rep. 2025 Aug 14;15(1):29815. doi: 10.1038/s41598-025-15143-0.

Abstract

Due to growing concerns about the environmental impact of detergents, there has been a notable shift towards researching eco-friendly washing methods, such as using purified water for washing and cleaning. It has been shown that purified water can remove olive oil from hydrophilic surfaces but removing it from hydrophobic surfaces is still a challenge. In this work we studied the removal of olive oil from hydrophobic and hydrophilic surfaces using different water alkalinity, different salt solutions, multiple washing cycles and temperatures. For the hydrophobic surface, gravimetric analysis data demonstrated that non-purified water grades can outperform purified ones, but this effect is due to slight variations of pH. Increasing the pH of purified water by addition of tiny amounts of NaOH (that would not have any environmental impact) significantly enhances cleaning efficiency. For the hydrophilic surfaces, water with increased alkalinity completely removes the oil from the surface in most cases. The study reveals that adjusted pH of otherwise pure water promotes deprotonation of fatty acids in olive oil and facilitates oil removal from surfaces through roll up and interfacial tension reduction mechanisms. Increased temperatures further improve cleaning efficiency. These findings highlight the potential of pH-adjusted purified water as an effective and eco-friendly alternative to conventional cleaning methods. Future research should explore similar techniques on complex materials such as textiles.

摘要

由于对洗涤剂环境影响的担忧日益增加,人们显著转向研究环保型洗涤方法,例如使用纯净水进行洗涤和清洁。研究表明,纯净水可以从亲水性表面去除橄榄油,但从疏水性表面去除橄榄油仍然是一个挑战。在这项工作中,我们研究了使用不同水碱度、不同盐溶液、多次洗涤循环和温度从疏水性和亲水性表面去除橄榄油的情况。对于疏水性表面,重量分析数据表明,非纯净水等级的表现可能优于纯净水等级,但这种效果是由于pH值的轻微变化。通过添加少量不会对环境产生任何影响的NaOH来提高纯净水的pH值,可显著提高清洁效率。对于亲水性表面,在大多数情况下,碱度增加的水可完全从表面去除油污。该研究表明,经过调节pH值的纯净水可促进橄榄油中脂肪酸的去质子化,并通过卷起和降低界面张力机制促进油污从表面去除。提高温度可进一步提高清洁效率。这些发现突出了pH值调节后的纯净水作为传统清洁方法的有效且环保替代品的潜力。未来的研究应探索在纺织品等复杂材料上的类似技术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c4bc/12354923/540f9408ca77/41598_2025_15143_Fig1_HTML.jpg

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