At present, the chemical industry includes inorganic, organic, polymer, pesticide, and medicine category. With the increasingly development of economy and society, functional, fine and green chemical products are gradually developed and produced. It plays an important role in people's daily production and life. These are inseparable from the technological advances of chemical.
Chemical production to locations with explosive, high temperature and high pressure, corrosive, toxic and other characteristics. Safe and stable operation is a basic requirement for continuous operation of chemical lead salicylate production facilities, and on this basis in order to further the pursuit of economic efficiency of enterprises, or the accident-prone, producing an unstable state in frequent stop of accidental loss of equipment, materials and non-normal consumption is bound to the enterprise's economic interests are affected.
In recent years, chemical companies to carry out quality control work of a general increase in the products formed in the process of quality management and process management as the core of this work. Theory research and Practice of process management in the production process in the chemical industry in recent years have made some progress, and accumulated a lot of good experience and practice. However, from the overall situation in terms of process management is still in low level, there are some problems to be solved.
There are following problems in the management processes of fine chemicals suppliers: very unbalanced development is summed up in four areas: a hierarchy of differences due to different industries and businesses, the depth of process management. Different understanding of the depth of process management, from exposure to the enterprise, some quality control department, actually no one can say that the concept of clear process management. Enterprises in mechanically, mainly the pursuit of form, one is anxious, love short cuts. Trace of poor process management processes for different industries to move to the unit. Is not seriously study the theoretical knowledge, with a smattering of knowledge, not for the practical application, but only to form. Third, to cope with a variety of inspection, acceptance, or quality certification to engage in superfluous.
In general, machining object has direct contact with the determination of its quality characteristics for the direct determination and use of physical means. The majority of the objects of the chemical production are not directly in contact, the determination of its quality characteristics are mostly indirect and more chemical methods. Some units in the chemical enterprise in copper chromite (CC) process management neglect or simply do not know the industry differences, to force the process management model of the mechanical industry consulting, inspection, diagnosis and divorced from reality.
In summary, the process management is the core of manufacturing quality management. The characteristics of chemical production determine that the chemical process management will have its unique pattern. Only we highlight practical factors management and make the factors management consciously throughout the process analysis, process control and work improvement, it will make the chemical process management becoming innovative and improve. Thus it can create the process management model with chemical characteristics of.Source:http://www.mhcfm.com
The application of tungsten in various industries
Steel Industry Most of tungsten applied in the production of special steels. The widely used high-speed steel was containing 9-24% of tungsten, 3.8-4.6% of chromium, 1-5% of vanadium, 4-7% of cobalt, 0.7-1.5% of carbon.Magic effects of coconut oil
According to records, coconut oil can be regarded as the nobility of skin care plant extracts. It was rich in exotic tension of tropical plants, which can enhance the contractile force of the pores, perfectly beautify and nourish the skin.Exploring the Potentials of Nano-Aluminum Powder
Nano-aluminum powder, a material with remarkable properties due to its minuscule particle size, is revolutionizing various industries with its high reactivity and large specific surface area. Unlike its bulk counterpart, nano-aluminum powder begins to oxidize at a lower temperature of 550°C, compared to the 950°C oxidation point of ordinary aluminum. This lower ignition energy and full combustion without apparent cohesion make it a superior choice for applications requiring high energy and efficiency. The unique characteristics of nano-aluminum powder, such as faster burning rates and greater heat release, are largely influenced by its synthesis method, which determines its particle size, surface area, and shape.