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Development of Treatment and Prophylactic Means with Selenium Nanoparticles on the Basis of Mineral Water of the Krasnoarmeysk Source for Application in Balneology

机译:基于KrasnoArmeysk源的矿泉水矿泉水治疗和预防性手段的治疗和预防性手段进行薄膜

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The purpose of the study is development technology of receiving mineral waters with nanoparticles of selenium and studying of their stability. The studied samples - the concentrated solution of nanoparticles of selenium contens selenium about 1,4 mg/ml, mineral water of the Krasnoarmeysky source. The expediency, reliability and informational content of a method of photon correlation spectroscopy are shown for assessment of changes in system mineral water - nanoparticles on a nanolevel. Results of researches on studying of aggregate stability of nanoparticles of selenium with a hydrodynamic radius - 37,5-38 nanometers by mixing with mineral water of the Red Army source are presented in article. The stability of the mixtures was evaluated by the size of dispersed particles. In particular stability of particles directly after mixing and under the influence of various physical factors - ultrasonic radiation, an exposition by direct sunlight, the lowered temperature and room temperature is studied. After of storage, the parameters of each of the solutions were studied. As a result of the conducted research the conclusion is drawn that the sample has the maximum stability which prepared by simple mixing at the same time at storage him at the lowered temperature of a particle have the smallest diameter and least are exposed to stratification on fraction.
机译:该研究的目的是接受矿泉水的开发技术,培养硒纳米粒子和稳定性。所研究的样品 - 硒的浓缩溶液对硒的甲醛溶液约为1,4mg / ml,克拉斯诺·甲骨酱源的矿泉水。光子相关光谱方法的权宜之计,可靠性和信息含量被示出用于评估纳米叶螺纹系统矿泉粒子的变化。文章介绍了通过与红军源矿泉水混合的流体动力半径 - 37,5-38纳米烯型硒稳定性研究的研究结果。通过分散颗粒的尺寸评价混合物的稳定性。在混合后直接颗粒的稳定性,并且在各种物理因素的影响下 - 超声波辐射,通过直接阳光,降低的温度和室温进行阐述。储存后,研究了每个溶液的参数。由于进行了研究的结果,得出的结论是,样品具有通过简单混合制备的最大稳定性,同时在储存时在颗粒的降低的温度下具有最小的直径并且至少暴露于级分的分层。

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