高频电磁场对微生物生命活动的影响及催化剂和油石溶液

V. Sibirtsev, M. A. Chekanov, I. A. Naumov, S.A. Stroyev
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引用次数: 1

摘要

描述了一种生物测试技术,该技术提供了记录弹性光散射强度的变化,以及在存在和不存在各种测试因素的情况下,在液体营养培养基中培养有活力的测试微生物样品的光吸收和固有光荧光。利用该技术分析了不同量的阳极电解液和阴极电解液(NaCl和Na2SO4的水溶液电解得到)以及不同强度(U)和变化频率(ν)和不同暴露方式的外部高频电磁场(EHFEF)对微生物(如大肠杆菌、粘红酵母和普通小球藻)的生命活性动态的影响。提出了。结果表明,即使是相当简单的电解处理常见的无机盐的水溶液,也可以用来制备有效和安全的防腐剂(电解质溶液)和益生菌(阴极电解质溶液)剂。兆赫范围内的弱EHFEF,根据其频率的不同,可以显著抑制和激活TM的生命活动。定期接触超高频电磁场对TM的影响大于长期接触超高频电磁场。在EHFEF和阳极液或阴极液溶液的共同作用下,它们可以相互增强对TM生命活性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence on microorganisms’vital activity of high frequency electromagnetic fields and solutions of catolytes and anolithes
A biotesting technique is described, which provides for recording changes in the intensities of elastic light scattering, as well as light absorption and intrinsic photofluorescence of the protein component of samples with viable test microorganisms incubated in a liquid nutrient medium in the presence and absence of various test factors. The results of the analysis using this technique of the influence on the dynamics of vital activity of microorganisms (such as Escherichia coli, Rhodotorula glutinis and Chlorella vulgaris) of various amounts of anolyte and catholyte (obtained by electrolysis of aqueous solutions of NaCl and Na2SO4), as well as external high-frequency electromagnetic fields (EHFEF) with different intensity (U) and frequency of its change (ν) and with different modes of exposure to test microorganisms (TM), are presented. On the basis the results it has been shown that even a fairly simple electrolysis treatment of aqueous solutions of commonly available non-organic salts can be used to prepare effective and safe antiseptic (solutions of anolytes) and probiotic (solutions of catholytes) agents. Weak EHFEF of the megahertz range, depending on their frequency, can significantly inhibit and activate the vital activity of TM. Periodic exposure to EHFEF has a greater effect on TM than permanent one. With the combined action of EHFEF and solutions of anolytes or catholytes, they can mutually reinforce their influence on the vital activity of TM.
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