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盆栽植物能捕捉蚊子吗?将稀土发光材料与植物能量应用于创新型捕蚊盆栽植物的开发。

Can Potted Plants Catch Mosquitoes? Applying Rare-Earth Luminescent Materials and Plant Energy to the Development of Innovative Mosquito-Trapping Potted Plants.

机构信息

Department of Industrial Design, National Kaohsiung University of Science and Technology, No.1, University Rd., Yanchao Dist., Kaohsiung City 82445, Taiwan.

Department of Business Administration, National Taichung University of Science and Technology, No. 129, Sec. 3, Sanmin Rd., North Dist., Taichung City 404, Taiwan.

出版信息

Int J Environ Res Public Health. 2023 Feb 14;20(4):3368. doi: 10.3390/ijerph20043368.

Abstract

Due to the global warming crisis, the spread of various infectious diseases is worsening, with mosquito-borne contagious diseases posing a significant threat. While many residential and public spaces contain plants, often for greening the environment and improving mental and physical well-being, the carbon dioxide released by these plants produces ideal habitats for mosquitoes. Considering the quality of life of urban residents and the development of health-related products simultaneously is an important topic. This study used diverse complementary techniques, such as energy-storing rare-earth luminescent materials, sustainable power generation using plant energy, blue light-emitting diodes, and environmentally friendly fermentation formula, to develop planting products with potential mosquito control functionality. The prototype design for this mosquito-trapping potted plant has been patented. The aim of this paper is to discuss the design principles adopted to improve the defects of existing mosquito-trapping designs, the green energy materials and techniques employed, the architecture configuration of the product prototype, and the test results. By integrating green materials and technology, the prototype can be self-powered without being plugged in to yield conspicuous energy savings. The results showed that the developed multi-function products, combined with the concept of energy sustainability, can improve global public health as well as individuals' physical and mental health.

摘要

由于全球变暖危机,各种传染病的传播情况正在恶化,其中蚊媒传染病构成了重大威胁。虽然许多住宅和公共空间都有植物,通常是为了绿化环境和改善身心健康,但这些植物释放的二氧化碳为蚊子创造了理想的栖息地。同时考虑城市居民的生活质量和健康相关产品的发展是一个重要的课题。本研究使用了多种互补技术,如储能稀土发光材料、利用植物能源的可持续发电、蓝光发光二极管和环保发酵配方,开发了具有潜在驱蚊功能的种植产品。这种诱蚊盆栽的原型设计已经获得专利。本文旨在讨论所采用的设计原则,以改进现有诱蚊设计的缺陷,所采用的绿色能源材料和技术,产品原型的建筑结构配置以及测试结果。通过整合绿色材料和技术,原型可以自行供电而无需插电,从而显著节省能源。结果表明,所开发的多功能产品结合了能源可持续性的概念,可以改善全球公共卫生以及个人身心健康。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a158/9962482/8033092b9866/ijerph-20-03368-g001.jpg

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