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Colloidal Nano Silver-Its Production Method, Properties, Standards and its Bio-efficacy as an Inorganic Antibiotic

机译:胶态纳米银及其制备方法,性能,标准及其作为无机抗生素的生物功效

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The past 80 years has seen a plethora of different methods used to produce pretend colloidal silver that more often than not, consists mainly of ionic silver and other chemicals. Generally, little or no colloidal material is seen. Normally, only a ratio of Ionic to Colloidal Silver of 85:15% is quoted as the best obtainable result. Colloidal silver generally consists of nanosized clusters of silver atoms in an aqueous solution. We should not refer to them as particles. These atomic clusters are of a neutral polarity, but their suspension in the water causes a highly negative (interfacial) electrostatic charge called the Zeta potential. It is this highly negative Zeta potential of the clusters that causes a mutual repelling action resulting in an almost permanent suspension. This interfacial electrical charge is vulnerable to high temperatures and contamination by ionic substances. Even small amounts of ionic silver can interfere with this normal repelling action. Any of these contaminations may cause a drop in the interfacial charge causing aggregation and the release of attraction forces, such as the Van der Waals force, present in all materials. What follows is an uncontrolled growth of ever larger clusters to a point where gravity takes over and metallic silver drops out of the suspension. It has been determined that Colloidal Silver clusters should not be referred to as metallic, as at 10 nm size and below, they do not behave like a metal or controlled by standard physical laws. Because of this, nano sized silver clusters exhibit characteristics that are not present in bulk metallic silver. Some of these characteristics of nano sized colloidal silver can only be explained as being quantum phenomena. In this paper, we will show by using only the purest water and silver commercially available (99.998%), and by precisely controlling temperature, light and electrical conditions, and stable high grade, colloidal silver can be consistently produced using electrochemical principles. Some of our material has shown little signs of deterioration over many years. By also controlling the actual atomic cluster to a narrow size distribution and concentration, a highly effective antibacterial substance is created. That blue, indigo, violet and UV light plays such a most crucial role in the formation of colloidal silver has only recently been recognised by some scientists. It is ironic to realise that knowledge of the capabilities of short wavelength electromagnetic radiation, over and above 2.64 electron volt (eV), has been known for decades, even for nature and life itself. Few, if any, have paid any attention to the significance of these short wavelengths of light on colloidal silver production. One example of this is the role of UV on the skin promoting the production of Vitamin D. Similarly, UV exposure on silver halide deposited on B&W film produces a latent (photographic) image.
机译:在过去的80年中,已经出现了许多种用于制造假装胶体银的不同方法,这些胶体银主要由离子银和其他化学物质组成。通常,几乎看不到胶体材料。通常,只有离子与胶体银之比为85:15%是可获得的最佳结果。胶体银通常由水溶液中银原子的纳米簇组成。我们不应将它们称为粒子。这些原子簇具有中性极性,但是它们在水中的悬浮会产生称为Zeta电位的高度负(界面)静电荷。正是这些簇的高度负的Zeta电位导致相互排斥,导致几乎永久的悬浮。这种界面电荷容易受到高温和离子物质的污染。即使少量的离子银也会干扰这种正常的排斥作用。这些污染物中的任何一种都可能导致界面电荷下降,从而导致聚集和释放所有材料中都存在的吸引力,例如范德华力。随之而来的是,越来越大的团簇不受控制地生长,直至重力接管,金属银从悬浮液中滴落下来。已经确定,胶体银团簇不应被称为金属团簇,因为在10 nm及以下的尺寸下,它们的行为不像金属或受标准物理定律控制。因此,纳米级银簇具有散装金属银中不存在的特性。纳米胶体银的某些特征只能解释为量子现象。在本文中,我们将显示仅使用市售的最纯净水和银(99.998%),并通过精确控制温度,光照和电条件以及稳定的高品位,可以使用电化学原理始终如一地生产胶体银。多年来,我们的某些材料几乎没有变质的迹象。通过将实际的原子团簇控制在狭窄的尺寸分布和浓度,可以生产出高效的抗菌物质。蓝色,靛蓝,紫色和紫外线在胶体银的形成中起着至关重要的作用,直到最近才被一些科学家所认识。具有讽刺意味的是,认识到短波长电磁辐射(超过2.64电子伏特(eV))的能力的知识已经知道了数十年,甚至是自然界和生命本身。几乎没有(如果有的话)对这些短波长的光对胶体银生产的重要性进行了关注。一个例子是紫外线在皮肤上促进维生素D产生的作用。类似地,紫外线照射在沉积在B&W膜上的卤化银上会产生潜像(照相)。

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