Analyze the prospect of domestic vacuum drying equipment market
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When the freeze dryer is drying, it is necessary to maintain the good quality of the product while achieving a faster drying rate. The latent heat required for sublimation must be transferred from the heat source through the external heat transfer process to the surface of the material to be dried, and then transferred through the internal heat transfer process to the actual occurrence of ice sublimation within the material. The generated water vapor must reach the surface of the material through an internal mass transfer process and be transferred to a vapor trap (cold trap) through an external mass transfer process. Any one process or several processes together may become the “bottleneck†of the drying process, which depends on the design of the freeze drying equipment, the operating conditions, and the characteristics of the material being dried. Only at the same time improve the heat transfer, mass transfer efficiency, increase the surface area per unit volume of freeze-dried material, can achieve faster drying rate.
China's vacuum freeze-drying technology has achieved better development
In recent years, the technological development of the domestic vacuum freeze dryer industry has always been behind the world level. With the continuous advancement of various technologies and rising investment in R&D and innovation, technological development will undoubtedly require greater attention. However, China’s core technology areas are heavily dependent on imports, which has led to the vacuum freeze-dryer industry always following other countries, unable to achieve overtaking.
Vacuum freeze dryer is a high-tech product integrating electronics, vacuum science, mechanics, thermodynamics, program control and many other disciplines. It is the seven advantages of material microwave vacuum freeze-drying equipment in the drying process. A new technology and new process have been developed based on the analysis of the theoretical changes, the exchange of internal and external heat and mass, and the process of moisture migration under vacuum freezing conditions.
Experts said that in exploring the new development path of drying technology, comprehensive consideration must be given to energy efficiency, environmental protection, and product quality in order to achieve comprehensive, coordinated, and sustainable development. To implement the development strategy of high efficiency and green drying, we must first take the path of resource-saving development, and change the single extensive drying into a combination and intelligent drying. It is necessary not only to fundamentally transform the drying process, but also to carry out comprehensive and multi-level energy-saving technological transformations and vigorously develop drying technologies that apply renewable energy and industrial waste heat.
Vacuum freeze dryer still needs to improve technical innovation
Insiders pointed out that domestic companies have accelerated the study of vacuum freeze-drying technology, which has reduced energy consumption to a certain extent, reduced pollution, brought more benefits and value to the society, and made it necessary to achieve green production and low-carbon production. Contributions. But at this stage, the vacuum freeze dryer revolution in China has not yet been successful. Vacuum freeze-drying equipment manufacturers generally have low innovation capability. Poor enterprises that can introduce new technologies and new products with independent intellectual property rights have led to slow development of drying technology. Knowledge achievements have not been effectively translated into actual productivity. At present, the R&D and innovation of technologies in the field of drying equipment mainly rely on universities and research institutes. Due to the disconnection of companies, it is difficult to effectively turn knowledge achievements into productivity.
It can thus be seen that relevant companies should carry out comprehensive and multi-level energy-saving technological transformations and vigorously develop drying technologies that apply renewable energy and industrial waste heat. However, domestic companies have accelerated the study of vacuum freeze-drying technology and are gradually building up the advantages of domestically produced equipment, and have basically achieved a leading position in the domestic market. Vacuum freeze-drying equipment will become the mainstream of market demand. The domestic industry must significantly improve the technical level, improve the drying efficiency, reduce energy consumption, and contribute its own strength to achieve green production.