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Mixing and Organic Reactions in the Chemical Industry Mixing is one of the most important unit operations in the chemical industry. In addition to classical mixed vessels, static mixers are often used too. However, for several years now, micro technology is becoming more and more common practice in process development. Especially in chemical engineering micro technology becomes a very valuable tool for research and development. Micro reaction technology is used for the optimization of existing and the development of new processes. Microstructured mixer and heat exchangers are used to overcome heat and mass transfer limitations to show the potential of a chemical reaction. First examples for the application of micro technology beyond the laboratory scale are already know.  相似文献   

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Gas Cleaning Systems of Decentralized Hazardous Waste Incinerators in the Chemical Industry In the chemical industry wet gas cleaning systems are frequently employed for the treatment of exhaust gases emerging from decentralized hazardous waste incinerators. With respect to the extremely high pollutant emissions, multistage gas cleaning processes are used that consist in most cases of a quench, one or more wet scrubbers and an optional aerosol separation stage. In order to select a suitable design of the gas cleaning process and equipment, beside the specific technical performance of each apparatus, particularly economic criteria have to be considered, like maintenance as well as investment costs. Additionally, the choice of the suitable material of construction plays a major role, especially at the transition section of dry to wetted gas in the quench. The present comparison of different process and equipment alternatives indicates that only the consideration of all relevant parameters yields to an optimal solution.  相似文献   

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Rational utilization and supply of thermal energy in the chemical industry . The development of energy consumption since 1960 is considered, paying special attention to the consumption trends in industry and the position and consumption structure of the chemical industry. The need for maximum exergonic utilization in steam supply is clearly seen. The various possibilities of energetic utilization are then illustrated for an example of steam supply. Utilization of steam from process waste heat is considered as an illustration, and some comments on the pertinent engineering are made. The possibilities and dangers of condensate recovery from process heat exchangers are mentioned in conclusion.  相似文献   

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Dia- and ultrafiltration – separation processes in the chemical industry . The use of ultrafiltration membranes for purification and concentration of chemical or biotechnological products has a wide scope of application in industrial practice. Continuing development and improvement of membranes, and especially the increasing availability of favourably priced membranes for these applications, is increasing the use of these separation processes in chemical production. The present contribution deals with theoretical principles, potential applications, and aspects of industrial practice of these separation methods. Above all, the topic is surveyed from an industrial viewpoint.  相似文献   

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Ion exchangers and adsorbers – versatile aids in the chemical industry . Ion exchangers and adsorbers are nowadays available in such a wide range of universally applicable or specialist products that they are widely used in industrial chemistry. New applications are discovered each year. Hence their originally predominant use in water treatment has meanwhile been extended and diversified by numerous further applications.  相似文献   

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Design and construction of plant for the supply of raw materials to the chemical industry . This article presents a brief review of the historical development of the chemical industry in Germany, as dominated by coal chemistry, and of the subsequent use of petroleum as raw material. There follows an account of developments to date regarding the supply of Bayer AG with chemical raw materials in the form of petrochemical feedstocks and petrochemicals and of the plant construction undertaken to this end at the Bayer-BP subsidiary company EC Erdoelchemie GmbH founded in 1957. Particular attention is focussed on the expansion phase of EC involving investment to the tune of DM 900 m in the period of 1975 to 1979. The article closes with an account of international trends in plant construction initiated primarily by the continuous steep rise in oil prices since the first oil crisis of 1973.  相似文献   

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Computer Simulations for the Precise Positioning in Multi‐Product Plants in the Chemical Industry to Determine the Capacity of the Plant The precise positioning even in very complex multi‐product or multi‐line plants can be achieved thanks to the availability of cheap simulation software and PC power for the analysis of the material flows. Whereas mathematical optimization methods for the projection of batch production are limited, simulation models that are specifically cut out for the task can make a very real projection of the complex procedures and goals in multi‐product or multi‐line plants. The use of object‐oriented software for the specific simulation of the material flows in the optimization of a plant at the project funding stage is described.  相似文献   

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Duties, performance, and objectives of maintenance services in the chemical industry . In the West German chemical industry, about DM 5000 million will be spent on maintenance in 1979. This figure is only slightly less than the amount to be spent on reserch or capital investment. The expenditure ensures peak performance from production installations and the infrastructure as a whole and a high level of plant safety. Increasing costs and reduced earnings demand greater efforts on the part of all maintenance services. The remedy in the past lay in preventive maintenance, but much higher targets are being set today: planning of easily maintainable plants, early recognition of damage; rationalisation of maintenance techniques; work preparation and scheduling; quality control; integration of spare parts inventories; standardisation, etc. The difficult task for the future will be to find solutions to the rising labour costs and various human problems.  相似文献   

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Logistics in the manufacture of chemical products. This survery covers the fields of location analysis, organization of operational material flow, and materials management, all of which are interlocked with each other. Logistics problems with location analysis lie in the area of infrastructure, procurement, and distribution. The organization of the operational material flow has to be based on a closed concept, taking simultanously into consideration interests of production techniques and of logistics. Special attention has to be paid to the reciprocal effect of plant and storage capacity. With complex production structures simulation models should be used, including a statistical model of the market demands, systematic variation of material flows, and grouping of technical equipment. Target is a minimization of total cost. For market oriented operation of complex productions, integrated materials management systems have to be employed. The systems supply a transparent material flow starting from the market demands via the control of production up to the procurement of raw materials.  相似文献   

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