CN110407373A - 一种纳米级负氢离子水的制备工艺 - Google Patents

一种纳米级负氢离子水的制备工艺 Download PDF

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CN110407373A
CN110407373A CN201810399421.4A CN201810399421A CN110407373A CN 110407373 A CN110407373 A CN 110407373A CN 201810399421 A CN201810399421 A CN 201810399421A CN 110407373 A CN110407373 A CN 110407373A
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范小平
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Changsha Elite Nanoshi Nanotechnology Co Ltd
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Abstract

本发明公开了一种纳米级负氢离子水的制备工艺,通过将山泉水瀑布似的流经通电的M槽状型齿板,使之变成单个或几个小分子团水,再将小分子团水经过强磁电解装置,采用阴阳两极分离技术调整水的ph值,使阴极流出来的水含有较多的氢氧根离子,即弱碱性离子水;从阳极流出来的水含有较多的氢离子,即酸性离子水;采用孔径小于2纳米的滤膜过滤,得到小分子弱碱性活性饮用水;将小分子弱碱性活性饮用水再次进入电解槽,控制适当的电位差,进行电解分离,从阴极流出来的水含有丰富的负氢离子,负氢离子再经过孔径小于2纳米的纳米膜过滤,得到0.1‑2纳米负氢离子水。

Description

一种纳米级负氢离子水的制备工艺
技术领域
本发明属于水处理领域,尤其涉及一种纳米级负氢离子水的制备工艺。
背景技术
现代人中的部分人群,由于不科学的生活方式和不良的生活习惯,过多的摄入饱和脂肪酸和反式脂肪酸。过氧化脂类物质不断地粘在人体内的心脑血管壁上,心脑血管不断狭窄,不断被堵塞,过剩的脂类物质在体内会产生氧自由基,甚至毒性更强的氢氧自由基,导致诸多疾病,如肥胖症、动脉粥样硬化、脂肪肝、冠心病、高血压、糖尿病、甚至癌症。
饮用负氢离子水,能渗透人体细胞膜2纳米的离子水通道进入细胞核DNA溶解代谢氢氧自由基(所谓人体血管内的垃圾)排除体外,起到清理肠道、血管的作用,预防疾病。调整人体内的pH值,又能调节人体内水分平衡。
负氢离子水最适宜中青年人、中产阶层、高管阶层人群饮用。饮用负氢离子水,是一种最简单的最科学的预防诸多疾病的方法,无副作用。
当今发达国家的制氢离子水都是采用河水、海水,水质受到不同程度的污染,不能实现零污染。
发明内容
为克服现有技术的不足之处,本发明提供一种纳米级负氢离子水的制备工艺,采用强磁场电解处理技术获得的负氢离子水、粒度比光的波长(1m/100亿)还小,故具有超强的活力、渗透力、溶解力、代谢力,能渗透人体内心血管被氧化脂质堵塞的部位和脑屏障。
本发明是通过以下技术方案实现的:
一种纳米级负氢离子水的制备工艺,包括如下步骤:
(1)将山泉水瀑布似的流经通电的强磁场装备内的M槽状型齿板,尖齿放射出强磁力线破坏水的电子云层,断裂水的大分子氢键链,使之变成单个或几个小分子团水;
(2)将步骤(1)中的小分子团水经过强磁电解装置,采用阴阳两极分离技术调整水的ph值,ph值为7.35-7.45,使阴极流出来的水含有较多的氢氧根离子,即弱碱性离子水;从阳极流出来的水含有较多的氢离子,即酸性离子水;
(3)将步骤(2)中的弱碱性离子水经过孔径小于2纳米的纳米滤膜,得到小分子弱碱性活性饮用水;
(4)将步骤(3)过滤后的小分子弱碱性活性饮用水再次进入电解槽,控制适当的电位差,进行电解分离,H++2e=H-,从阴极流出来的水含有丰富的负氢离子,即弱碱性负氢离子水;
(5)小分子弱碱性负氢离子水,再经过孔径小于2纳米的纳米膜过滤,彻底的祛除水中大于2纳米的微生物细菌、病毒、微小颗粒物,使之真正成为0.1-2纳米负氢离子水。
本发明的有益效果是:本发明通过将山泉水瀑布似的流经通电的M槽状型齿板,尖齿放射出强磁力射线破坏水的电子云层,断裂水的大分子氢键链,使之变成单个或几个小分子团水,再将小分子团水经过强磁电解装置,采用阴阳两极分离技术调整水的ph值,使阴极流出来的水含有较多的氢氧根离子,即弱碱性离子水;从阳极流出来的水含有较多的氢离子,即酸性离子水;采用孔径小于2纳米的滤膜过滤,得到小分子弱碱性活性饮用水;将小分子弱碱性活性饮用水再次进入电解槽,在通常情况下,然而由于电场的存在,使带有负电荷的OH-(氢氧根离子)无法进入电解槽的阴极(带负电)区,而H+(氢离子)则由于电场引力作用,会轻易进入带负电场的阴极区;由于阴极板上的双电层作用,存在着大量的负电荷(有过多的电子),故进入阴极区H+易变成H++2e=H-这就是我们需要的负氢离子,负氢离子再经过孔径小于2纳米的纳米膜过滤,彻底的祛除水中大于2纳米的微生物细菌、病毒、微小颗粒物,使之真正成为0.1-2纳米负氢离子水。
具体实施方式
下面将结合具体实施例来详细说明本发明,在此本发明的示意性实施例以及说明用来解释本发明,但并不作为对本发明的限定。
实施例1
一种纳米级负氢离子水的制备工艺,包括如下步骤:
(1)将山泉水瀑布似的流经通电的强磁场装备内的M槽状型齿板,尖齿放射出强磁力线破坏水的电子云层,断裂水的大分子氢键链,使之变成单个或几个小分子团水;
(2)将步骤(1)中的小分子团水经过强磁电解装置,采用阴阳两极分离技术调整水的ph值,ph值为7.35,使阴极流出来的水含有较多的氢氧根离子,即弱碱性离子水;从阳极流出来的水含有较多的氢离子,即酸性离子水;
(3)将步骤(2)中的弱碱性离子水经过孔径小于2纳米的纳米滤膜,得到小分子弱碱性活性饮用水;
(4)将步骤(3)过滤后的小分子弱碱性活性饮用水再次进入电解槽,控制适当的电位差,进行电解分离,H++2e=H-,从阴极流出来的水含有丰富的负氢离子,即弱碱性负氢离子水;
(5)小分子弱碱性负氢离子水,再经过孔径小于2纳米的纳米膜过滤,彻底的祛除水中大于2纳米的微生物细菌、病毒、微小颗粒物,使之真正成为0.1-2纳米负氢离子水。
实施例2
一种纳米级负氢离子水的制备工艺,包括如下步骤:
(1)将山泉水瀑布似的流经通电的强磁场装备内的M槽状型齿板,尖齿放射出强磁力线破坏水的电子云层,断裂水的大分子氢键链,使之变成单个或几个小分子团水;
(2)将步骤(1)中的小分子团水经过强磁电解装置,采用阴阳两极分离技术调整水的ph值,ph值为7.45,使阴极流出来的水含有较多的氢氧根离子,即弱碱性离子水;从阳极流出来的水含有较多的氢离子,即酸性离子水;
(3)将步骤(2)中的弱碱性离子水经过孔径小于2纳米的纳米滤膜,得到小分子弱碱性活性饮用水;
(4)将步骤(3)过滤后的小分子弱碱性活性饮用水再次进入电解槽,控制适当的电位差,进行电解分离,H++2e=H-,从阴极流出来的水含有丰富的负氢离子,即弱碱性负氢离子水;
(5)小分子弱碱性负氢离子水,再经过孔径小于2纳米的纳米膜过滤,彻底的祛除水中大于2纳米的微生物细菌、病毒、微小颗粒物,使之真正成为0.1-2纳米负氢离子水。
实施例3
一种纳米级负氢离子水的制备工艺,包括如下步骤:
(1)将山泉水瀑布似的流经通电的强磁场装备内的M槽状型齿板,尖齿放射出强磁力线破坏水的电子云层,断裂水的大分子氢键链,使之变成单个或几个小分子团水;
(2)将步骤(1)中的小分子团水经过强磁电解装置,采用阴阳两极分离技术调整水的ph值,ph值为7.4,使阴极流出来的水含有较多的氢氧根离子,即弱碱性离子水;从阳极流出来的水含有较多的氢离子,即酸性离子水;
(3)将步骤(2)中的弱碱性离子水经过孔径小于2纳米的纳米滤膜,得到小分子弱碱性活性饮用水;
(4)将步骤(3)过滤后的小分子弱碱性活性饮用水再次进入电解槽,控制适当的电位差,进行电解分离,H++2e=H-,从阴极流出来的水含有丰富的负氢离子,即弱碱性负氢离子水;
(5)小分子弱碱性负氢离子水,再经过孔径小于2纳米的纳米膜过滤,彻底的祛除水中大于2纳米的微生物细菌、病毒、微小颗粒物,使之真正成为0.1-2纳米负氢离子水。

Claims (1)

1.一种纳米级负氢离子水的制备工艺,其特征在于,包括如下步骤:
(1)将山泉水瀑布似的流经通电的强磁场装备内的M槽状型齿板,尖齿放射出强磁力线破坏水的电子云层,断裂水的大分子氢键链,使之变成单个或几个小分子团水;
(2)将步骤(1)中的小分子团水经过强磁电解装置,采用阴阳两极分离技术调整水的ph值,ph值为7.35-7.45,使阴极流出来的水含有较多的氢氧根离子,即弱碱性离子水;从阳极流出来的水含有较多的氢离子,即酸性离子水;
(3)将步骤(2)中的弱碱性离子水经过孔径小于2纳米的纳米滤膜,得到小分子弱碱性活性饮用水;
(4)将步骤(3)过滤后的小分子弱碱性活性饮用水再次进入电解槽,控制适当的电位差,进行电解分离,H++2e=H-,从阴极流出来的水含有丰富的负氢离子,即弱碱性负氢离子水;
(5)小分子弱碱性负氢离子水,再经过孔径小于2纳米的纳米膜过滤,彻底的祛除水中大于2纳米的微生物细菌、病毒、微小颗粒物,使之真正成为0.1-2纳米负氢离子水。
CN201810399421.4A 2018-04-28 2018-04-28 一种纳米级负氢离子水的制备工艺 Pending CN110407373A (zh)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113800705A (zh) * 2021-09-23 2021-12-17 长沙精英军纳米科技有限公司 一种纳米级负氢离子水及生成皿

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