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首页> 外文期刊>International Journal of African and Asian Studies >Microorganisms in the Presence of D2O and IR spectra in Hot Mineral Water with More Deuterium Atoms for Origin of Life and Living Matter
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Microorganisms in the Presence of D2O and IR spectra in Hot Mineral Water with More Deuterium Atoms for Origin of Life and Living Matter

机译:具有更多氘原子的热矿泉水中存在的D2O和IR光谱中的微生物,这些物质可用于生命和生命物质的起源

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In the present paper the isotopic composition of water and its temperature is analyzed. It was proposed an assumption, that under conditions of the primary O2 free atmosphere, under influence of short-wave solar radiation, geothermal energy and powerful spark discharges, HDO could be collected in hydrosphere, which physical-chemical properties differ from those of H2O. It were obtained adapted to the maximal concentration D2O cells of various microorganisms realizing methylotrophic, chemoheterotrophic, photoorganotrophic, and photosynthetic pathways of assimilation of carbon substrata, all biological material of which instead of hydrogen contains deuterium. Their studying will allow giving the answer as to function of deuterated macromolecules in conditions of primary hydrosphere and hot D2O-solutions. Also were performed experiments for the research of hot mineral, sea and mountain water from Bulgaria with IR spectroscopy. Key words: deuterium, heavy water, hot mineral water, hydrosphere, evolution
机译:本文分析了水的同位素组成及其温度。提出了一个假设,即在主要的不含氧气的大气条件下,在短波太阳辐射,地热能和强大的火花放电的影响下,HDO可以收集在水圈中,其物理化学性质不同于H2O。它获得了适应各种微生物最大浓度的D2O细胞的能力,实现了碳基质吸收的甲基营养,化学营养,光有机营养和光合途径,所有生物材料都用氢代替了氘。他们的研究将给出氘化大分子在主要水圈和热D2O溶液条件下的功能的答案。还进行了红外光谱法研究保加利亚热矿物质,海水和山区水的实验。关键词:氘重水热矿泉水水圈演化

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