Study on the Possibility of Raw Seawater into Beverage
—Using Ethanol as a Renewable Resource

A. Hiratsuka, Tsutomu Demizu
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引用次数: 1

Abstract

In COVID-19 pandemic in the world, alcohol (ethanol) can be listed as a sterilizing disinfectant. It absolutely played a Messianic function on the sterilization effect. And it is said that it has one more function called "salinity reduction" but that function is not widely known. The two functions (Sterilization & Salinity Reduction) mentioned above are extremely important regarding the theme of "raw seawater into beverage" in this study. It is thought that if the two functions are achieved other water quality items such as NO-2 and other items can be cleared with comparative ease. To put briefly the feature of modern waterworks in a word, it can be said that "source of water is river water and its sterilization is chlorine". In this study, we set up it with a completely new sanitization method (great reset), that is, "source of water is mixtures (seawater and rainwater) and its sterilization is ethanol". And it can be also expected that the capture and storage of ethanol as a renewable resource is basically possible by utilizing sunlight as a natural power. Therefore, we think that this resolves itself into a question of the choice (sense of value/culture) of the users. It means that how users finally balance out with three factors, i.e., cost, risk (safety) and benefit. Based on the viewpoint mentioned above, we examined the possibility of raw seawater into beverage using ethanol as a renewable resource to create humankind's wisdom to the settlement (breakthrough) of the water scarcity in the world including Asia and Africa. As a result, we have obtained the new findings that suggest the possibility of raw seawater into beverage using ethanol as a renewable resource.
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原海水加工饮料的可能性研究——利用乙醇作为可再生资源
在全球新冠肺炎大流行中,酒精(乙醇)可以被列为消毒消毒剂。它在杀菌效果上绝对起到了弥赛亚的作用。据说它还有一个叫做“降低盐度”的功能,但这个功能并不广为人知。以上提到的两个功能(杀菌和降盐)在本研究中对于“原海水变成饮料”的主题是非常重要的。据认为,如果实现了这两个功能,其他水质项目如NO-2和其他项目可以相对容易地清除。用一句话简单概括现代自来水厂的特点,可以说是“水源为河水,杀菌为氯”。在本研究中,我们采用了一种全新的消毒方法(大复位),即“水源为混合物(海水和雨水),灭菌为乙醇”。我们也可以预期,通过利用阳光作为一种自然动力,乙醇作为一种可再生资源的捕获和储存基本上是可能的。因此,我们认为这本身就解决了用户选择(价值感/文化)的问题。它意味着用户最终如何平衡三个因素,即成本、风险(安全)和收益。基于上述观点,我们探讨了利用乙醇作为可再生资源将原海水制成饮料的可能性,为解决包括亚洲和非洲在内的世界水资源短缺问题创造人类的智慧。因此,我们获得了新的发现,提出了利用乙醇作为可再生资源将原海水制成饮料的可能性。
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