装有水回收装置的可持续自动洗手系统的评估

K. Bello, M. Kanakana-Katumba, Rendani Mahadhzi, Thomas. O Ayeye, O. Adeniran, Bukola Olalekan Bolaji
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引用次数: 0

摘要

定期洗手以防止covid-19和其他病毒在我们社会的传播已成为一种新常态。因此,由于需要遵守世界卫生组织(WHO)关于定期洗手以减少感染风险的指导方针,因此开发了一种自动洗手系统,并安装了水回收装置。循环水的引入是为了保证能源资源的有效管理和减少环境污染。借助AutoCAD软件,结合Arduino单片机,进行了系统的概念架构设计。同时,运用理工科的理论知识,设计、建造和组装了自动洗衣机系统,安装了废水处理反应器、皂液分配器、传感器、水泵、水位表、水箱、s和微控制器。通过装配相关传感器的工作操作,使液体肥皂的分配时间为1秒,用户可以搓手20秒,水的分配时间为21秒,用户可以洗手。用过的水在过滤反应器的帮助下被过滤成清水。净化后的水流入下水箱,再由下水箱的潜水泵送回上水箱再利用。水处理是在180g废水中加入13g碳酸钙和MgSo4。然后在实验室对水样进行分析以确定其纯度。对50人进行了一个简短的采访,以确定他们对使用自动洗手系统的满意度。并对系统进行了性能评价。调查结果如下,98%的受访者对自动洗手系统表示满意。处理后的水的化学需氧量(COD)纯度为98.9%,总氮(TN)纯度为99.6%。微控制器成功地协调了自动化系统的各种活动。综上所述,所开发的机器满足了covid-19协议的要求,并有效地减少了水的浪费。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of a Sustainable Automated Hand Washing System Equipped with a Water Recycling Device
The need for regular hand washing to prevent the spread of covid-19 and other viruses in our society has become a new normal. Therefore, due to the need to comply with the World Health Organisation (WHO), guidelines of washing hands regularly to reduce the risk of contracting infections an automated hand washing system was developed with an installed water recycling device. The incorporation of recycling water is to guarantee effective management of energy resources and to reduces environmental pollution. The conceptual architectural design with the aid of AutoCAD software and the incorporation of an Arduino micro controller unit was established. Also, the theoretical knowledge of science and engineering was used to design, construct, and assembled the automated washing machine system with an installed reactor for wastewater treatment, soap dispensers, sensors, water pump, water gauge, water tank,s and micro controller. The working operations with the assembling of relevant sensors enabled liquid soap to be dispensed for 1 second to allow the users to rub their hands for 20 seconds and dispense water for 21 seconds to wash their hands. The used water was filtered to clean water with the aid of a filtration reactor. The clean water then flows into the lower tank and is sent back to the upper tak for reuse by the submersible pump in the lower tank. The water treatment was achieved by adding 13g of aqueous $CaCo_{3}$ and MgSo4 into 180g of used water. The water sample was then analysed in the laboratory to ascertain its purity. A short interview was conducted with fifty people to determine their level of satisfaction with the use of an automated hand-washing system. The performance evaluation was also carried out on the system. The following results were obtained, 98% of the respondents expressed satisfaction with the automated hand washing system. The purity of the treated water was 98.9% for the chemical oxygen demand (COD) and 99.6% for total nitrogen (TN). The microcontroller was successful in coordinating the various activities of the automated system. Conclusively, the developed machine satisfactorily meets the need of covid-19 protocol and effectively reduces the wastage of water.
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