Since the establishment of the company, we have been constantly exploring new product development strategies with high starting points, strict requirements, new ideas and development. We have hired many experts to develop and produce a series of cooling tower heat exchanger, heat exchanger hot water heater, shell and tube type heat exchanger with high practical performance and high quality. Our super industrial layout and excellent business decisions promote the continuous improvement of the core competitiveness of enterprises, so that we stay far ahead in the same industry. Our aim is 'blazing new ground, Passing Value', in the future, we sincerely invite you to grow up with us and make a bright future together! Our modern management model, unity and progressive spirit, and tireless dedication are a powerful guarantee for the development of our company.
Introduction of Air heat exchanger
Waste heat recovery heat exchanger, its working principle is that the cold and hot two fluids flow through the same heat exchange surface in turn, and try to avoid mixing with each other. When the hot fluid flows through, the heat exchange surface to absorb and accumulate heat released from the hot fluid; when the cold fluid flows through, the heat exchange surface and heat release to the cold fluid, through the heat exchange surface of this alternating heat absorption, heat release process to achieve cold, hot fluids ask the heat exchange.
In this type of heat exchanger, heat transfer surface periodically absorb and release heat, so this heat exchanger in the heat address transfer process is non-stationary. Such as power plant boilers in the rotary air preheater is this type.
The finned-tube air heat exchanger is designed with a set of parallel tubes arranged in a rectangular array. Each tube is equipped with a series of fins, which greatly increase the surface area available for heat transfer. The hot gas stream from the ammonia synthesis process flows through the inner tubes, while the cold air stream flows over the external fins. Heat is transferred from the hot gas stream to the cold air stream, raising the outlet temperature of the air and reducing the temperature of the hot gas stream.

Application
Most of the organic waste gas from the DC system of grain and oil companies is directly discharged after passing through Shakron.
The waste gas from the first and second stage Shakron is about 80-70°C, with high temperature, high humidity and high VOC content.
The exhaust gas from the third and fourth stage Shakron is about 50-60°C, with high temperature, low humidity, and low VOC content.
The exhaust of DC exhaust gas not only causes greater pollution to the environment, but also a great waste of energy.

This company makes full use of Flue Gas Desulfuration Ggh Heat Exchanger Made by Carbon Silicon advantages in technology, management, capital, and advanced marketing services. In order to achieve the goals and requirements of professional business management, we have developed and implemented a professional talent development plan. We dig deep into the potential needs of our customers, pioneer innovation, and open cooperation with our partners to provide systematic solutions, products and services to create big value for our customers.

