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Luminescent Properties of Natural Substances in Solutions under Low-Dose Radiation Exposure

机译:低剂量辐照下溶液中天然物质的发光特性

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Humic substances or natural organic materials recently have they attracted steady attention as promising biologically active substances. These compounds are widely distributed in natural waters and soils, and have a wide range of chemical and physical properties. Their structure includes a large number of diverse functional groups, which determines their complex-forming, surface-active and redox properties, as well as contributes to their biological activity and possess detoxifying properties. Using humic substances, it is possible to reduce the toxicity of an important class of toxicants - radionuclides. Technogenic pollution by radioactive elements is a consequence of the extraction and processing of radioactive materials, the operation of nuclear power stations, the placement of radioactive waste, accidents at nuclear enterprises, etc. In most cases, technogenic radioactive contamination is caused by isotopes of uranium, thorium, etc., as well as tritium, which is one of the most common decay products of radioisotopes used in the nuclear industry. As a rule, enterprises control discharges, conduct wastewater treatment, reducing the content of radionuclides to an acceptable limit. Moreover, even residual radioactivity can lead to disruption of the physiological functions of aquatic microorganisms, which are the initial link in the food chain for all organisms. The influence of biologically active nanostructures is able to correct the state of aquatic microorganisms. In the presence of humic substances under the influence of radiation, organic molecules are transformed by the mechanisms of direct and indirect photolysis. However, experiments show that the addition of a humic fraction containing both humic and fulvic acids to an aqueous solution of phenol leads to a decrease in the efficiency of phenol decomposition. We managed to find the conditions and fix the effective decomposition of phenol in an aqueous solution when exposed to radiation with a wavelength of 222 nm from an excilamp in the presence of fulvic acid.
机译:最近,腐殖质或天然有机材料作为有前途的生物活性物质受到了人们的持续关注。这些化合物广泛分布在天然水和土壤中,并具有广泛的化学和物理性质。它们的结构包括大量不同的官能团,这些官能团决定了它们的复合物形成,表面活性和氧化还原特性,并有助于其生物活性并具有排毒特性。使用腐殖质,有可能降低重要一类毒物-放射性核素的毒性。放射性元素引起的技术污染是放射性物质的提取和加工,核电站的运行,放射性废物的放置,核企业的事故等的结果。在大多数情况下,技术放射性污染是由铀同位素引起的,or等以及tri,后者是核工业中使用的放射性同位素最常见的衰变产物之一。通常,企业控制排放,进行废水处理,将放射性核素的含量降低到可接受的限度。此外,甚至残留的放射性也可能导致水生微生物的生理功能受到破坏,这是所有生物在食物链中的最初纽带。生物活性纳米结构的影响能够纠正水生微生物的状态。在辐射作用下存在腐殖质的情况下,有机分子通过直接和间接光解的机理进行转化。然而,实验表明,将含有腐殖酸和富里酸的腐殖级分添加到苯酚水溶液中会导致苯酚分解效率的降低。当存在富里酸时,当暴露于来自exilamp的波长为222 nm的辐射中时,我们设法找到条件并固定了水溶液中苯酚的有效分解。

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