In recent years, the drying equipment industry has developed rapidly. However, as far as China's current drying technology is concerned, the overall level of technology is still lagging behind. It is difficult to meet the requirements of related industries due to economic development, product optimization, and new product development. Therefore, the requirements for new drying technologies are increasing.
Over the years, the processing methods and processing equipment of domestic drying machinery have also taken more traditional manual manufacturing, which has been affected by the function and appearance of the equipment. Not only that, the manual single-piece manufacturing can not guarantee the good interchangeability of the parts' dimensions, and brings a lot of inconvenience to the maintenance of the drying machine and the exchange of the wearing parts. It is understood that most of the pharmaceutical, biochemical, and fine chemical industries in China continue to produce vacuum-entrained, heated, gap-free operations for the drying of liquid materials that are easily oxidized and contain organic solvents.
Experts believe that if we want to shorten the gap with foreign countries, we can only improve the intelligence, processing methods, and processing quality of the equipment.
In this environment, airflow spray drying machines will stand out in the pharmaceutical industry. Because of its innovative application of nitrogen as a conductive heat transfer medium, simultaneous closed-loop technology and continuous spray-dried spray drying are used to solve the technical problems of containing liquid organic solvents and drying refractory materials. In the continuous drying process, condensate cooling technology is used to achieve the recycling of organic solvents. Based on the reduction of industrial production, the circular economy of maximizing resource utilization is demonstrated.
The future development of the spray dryer will be in-depth study of the drying mechanism and material drying characteristics, master the optimum operating conditions for different materials, develop and improve the spray dryer. In addition, large-scale, high-strength, high-economy, and improved adaptability to raw materials and product quality are the basic trends in the development of spray dryers. At the same time, the development of spray dryers should also pay attention to energy-saving and energy comprehensive utilization, as well as the development of automatic dryer control technology to ensure the realization of optimal operating conditions.
Nowadays, the environmental protection industry is continuously advancing, and improving the environmental protection measures of spray dryers to reduce the leakage of dust and exhaust gases will be the direction that the industry needs to study in depth, and it will also become the key factor for the equipment to win the competition.
Over the years, the processing methods and processing equipment of domestic drying machinery have also taken more traditional manual manufacturing, which has been affected by the function and appearance of the equipment. Not only that, the manual single-piece manufacturing can not guarantee the good interchangeability of the parts' dimensions, and brings a lot of inconvenience to the maintenance of the drying machine and the exchange of the wearing parts. It is understood that most of the pharmaceutical, biochemical, and fine chemical industries in China continue to produce vacuum-entrained, heated, gap-free operations for the drying of liquid materials that are easily oxidized and contain organic solvents.
Experts believe that if we want to shorten the gap with foreign countries, we can only improve the intelligence, processing methods, and processing quality of the equipment.
In this environment, airflow spray drying machines will stand out in the pharmaceutical industry. Because of its innovative application of nitrogen as a conductive heat transfer medium, simultaneous closed-loop technology and continuous spray-dried spray drying are used to solve the technical problems of containing liquid organic solvents and drying refractory materials. In the continuous drying process, condensate cooling technology is used to achieve the recycling of organic solvents. Based on the reduction of industrial production, the circular economy of maximizing resource utilization is demonstrated.
The future development of the spray dryer will be in-depth study of the drying mechanism and material drying characteristics, master the optimum operating conditions for different materials, develop and improve the spray dryer. In addition, large-scale, high-strength, high-economy, and improved adaptability to raw materials and product quality are the basic trends in the development of spray dryers. At the same time, the development of spray dryers should also pay attention to energy-saving and energy comprehensive utilization, as well as the development of automatic dryer control technology to ensure the realization of optimal operating conditions.
Nowadays, the environmental protection industry is continuously advancing, and improving the environmental protection measures of spray dryers to reduce the leakage of dust and exhaust gases will be the direction that the industry needs to study in depth, and it will also become the key factor for the equipment to win the competition.
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