家电科技 ›› 2018, Vol. 0 ›› Issue (7): 42-45.

• 论文 • 上一篇    下一篇

基于酸性抗菌机理的安必洁表面抗菌技术及应用研究

林玉平1, 程斌2, 林春平3, 孙卓然3   

  1. 1.廊坊市表面抗菌技术研发中心 河北廊坊 000625;
    2.北京化工大学材料学院 北京 100029;
    3.三河市安霸生物技术有限公司 河北廊坊 000625
  • 出版日期:2018-07-01 发布日期:2019-07-08

Anbage surface antimicrobial technology based on acid-surface antimicrobial mechanism and its applications

LIN Yuping1, CHENG Bin2, LIN Chunping3, SUN Zhuoran3   

  1. 1. Langfang Research Center of Surface Antimicrobial Technology Langfang 000625;
    2. Beijing University of Chemical Technology Institute of Materials Science Beijing 100029;
    3. Sanhe Anbatec Biotechnology Co., Ltd. Langfang 000625
  • Online:2018-07-01 Published:2019-07-08

摘要: 空调、冰箱、智能马桶盖和空气净化器等家用电器在日常使用中不可避免的会遇到持久抗菌洁净的问题,而常规的杀菌技术一般不能满足“广谱性、耐久性、效率高、无副产物、绿色安全、低成本、无需消耗电能或光能激发”的综合要求。使用基于酸性抗菌机理的表面抗菌技术可以有效解决现有家电产品的抗菌洁净问题,提供安全持久的洁净无菌表面。本文介绍了酸性表面抗菌技术的机理和在家电领域中的可能的应用方案,在实验研究和第三方认证的基础上,提供了解决家电抗菌洁净可行的优化方案。对提高家电自身的抗菌杀毒性能具有积极的意义。

关键词: 酸性表面抗菌技术, 酸性抗菌表面, 环氧抗菌涂料, 丙烯酸酯抗菌涂料

Abstract: :The need for long-lasting germicidal condition of microbe-hosting appliances, such as airconditioners, refrigerators, smart toilet seats and air purifiers, inevitably becomes a real concern in our daily life. Unfortunately, regular antimicrobial technologies fail to solve the pain point, as they do not meet the comprehensive requirements for “broad-spectrum, durable, efficient, free of by-product, eco-friendly, harmless, cost-efficient, free of electric or light power” properties. The antimicrobial technology based on acid-surface mechanism creates harmless and long-lasting sterile conditions on surfaces, and consequently solves the problem. This study is to introduce the mechanism of the acidsurface antimicrobial technology and its feasible applications in appliances, and to provide optimized solutions for appliance sanitation and disinfection based on laboratory researches and third-party certification. It is hoped that the research contributes to the improvement of the self-disinfecting property of appliances.

Key words: Acid-surface antimicrobial technology, Acidic antimicrobial surface, Epoxy-resin-based antimicrobial paint, Acrylic antimicrobial paint