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OP-II-3

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PP-<strong>II</strong>-12Testing the pilot variant of the vibrating multifunctional chemical reactor in volumeof 40 litres were carried our under production conditions the chemical-pharmaceuticalenterprise at separate stages of chemical synthesis of substances of medicalproducts. It has been shown that application of low-frequency vibrations allows tointensify considerably all without an exception listed above technological processes.Especially filtering and drying processes – as it is known, it is "bottlenecks" of anywork cycle. Influence of each of vibration parameters (frequency, amplitude,acceleration of vibrations) on character of processes has been established.On the basis of vibrating multifunctional chemical reactors the automated flexiblesystem can be created, that allows the following: - the control and maintenance ofdemanded technological and time parameters at each stage of realized technologicalprocesses with a conclusion of the information to the display and the printer; - worksin an automatic or dialogue mode; - tasks of an order and optimum sequence ofactions of the operator at each stage of the process; - automatic blocking of notprocedural actions of the operator. Transition to output of a new product on FCTSdoes not exceed 1 hour.Almost all groups of products of small-scale chemistry can be an area of practicalapplication of vibrating multifunctional chemical reactors: first of all, manufactures ofthe most difficult in technology hormonal, endocrine, anti-tumor, etc. substances ofsynthetic medical products, and also - chemicals and especially pure substances, -organic pigments and semi-products, - stabilizers, -fire-retardants, - toxic, especiallydangerous and poison substances. The overall amounts of products of these groupsexceeds 50 000 names, the majority of them are not made in Russia and areimported from abroad.References[1]. Chistovalov S.M., Chernov A.N. J. Chemical and Petroleum Engineering, 1996, #3, P35[2]. Chistovalov S.M. , Chernov A.N. J. Chemical Industry 1997, #8, p.563-567[3]. Chistovalov S.M., Chernov A.N. Patent RF # 2042373, 1995[4]. Chistovalov S.M., Chernov A.N. Patent RF# 2089258, 1997[5]. Chistovalov S.M., Chernov A.N. Patent RF # 2293594, 2007[6]. Chistovalov S.M. Patent RF # 2290245, 2006[7]. Chistovalov S.M. Patent RF # 2287354, 2006[8]. Chistovalov S.M Patent RF # 2340382, 2008[9]. Chistovalov S.M. Patent RF# 2367495, 2009355

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