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Vibrated Fluid Bed Dryers: INR   0 INR  0
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Vibrated Fluid Bed Dryers:

Vibratory Fluidized Bed (VFB) is another type of fluidized bed where the mechanical vibration, enhance the performance of fluidization process. Since the first discovery of vibratory fluidized bed, its vibration properties proves to be more efficient in dealing with fine particles which appears to be very difficult to achieve with normal fluidized bed. Even though numerous publications and its popularity in industrial applications, the knowledge about vibratory dynamics and properties are very limited. Future research and development are needed to further improve this technology to bring it to another level. Standard type of vibratory fluidized dryer consist of vibrating tray conveyor where hot gases from the chamber will flow through the holes within the tray and come in contact with the materials to be dried. The tray area is big enough to tolerate constant flow of material through the bed and passed along the deck with a low depth on the tray. The vibrations to the deck are directed in vertical component to assist in fluidization of the material whereas the horizontal component of the vibration, support in transporting materials along the tray. Some of the advantages of vibratory fluidized beds include: Continuous drying throughout the unit. Handle products with a wide range of particle size and shape. Minimal fluidization velocity and pressure drop due to the vibration energy being transferred along the bed. Increase efficiency of gas to solid contact. Mechanical vibration enhances homogeneity and stability of fluidized bed layers. Easier to control the residence time distribution of processed material by manipulating the intensity of amplitude and frequency of vibration. Limitations of vibratory fluidized bed are as follow The inlet air temperature to the dryer process is limited. Climate condition can affect the unit’s thermal efficiency. Build-up of local expansion region lead to unstable behavior to the bed structure

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Drying Plants: INR   0 INR  0
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Drying Plants:

Capacity : 50 kg / hr water evaporation and above as per customer requirements. Drying plants are customized for each specific purpose and are available in a wide range of sizes and configurations; Total control over a wide range of critical process parameters and product properties such as temperatures, holding times, solid contents and critical powder characteristics; Variable atomizer speed and temerature adjustment; Controlled flow nozzles enabling precision control of particle size; Energy-efficient technology ensuring very low energy consumption per product unit produced; Plant designs capable of handling a variety of applications and ensuring very high yields; Top quality and reliable components for prolonged service life; Complete and efficient CIP systems; Automated process control to ensure long and reliable production runs with constant product quality.

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Laboratory Spray Dryers : INR   0 INR  0
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Laboratory Spray Dryers :

Used for spray drying & encapsulation and others; Designed for solvent and aqueous feeds; Visible process due to glass assembly; Easy to handle glassware High performance cyclone; High yields; Self contained and supplied complete and ready for immediate operation; Compact design and easy to move around; Fast drying process [up to 1000 ml / hr]; Shorter times to optimize formulations. Reproducible powder production at lab scale; Ideal for scale up to pilot or production; All units feature a simple and intuitive touch screen opration system with recipe funtions and USB data logger. One of the reasons for the reproducibility of the Lab 1 Glass Laboratory Spray Dryer is the durable and precise nozzle technology. The nozzle comes with a de blocker needle which can be pushed through the nozzle in case of clogging. The de blocker frequency is user selectable. Optional, nozzle cooling is available. The nozzle can be cooled with regular tap water. Spraying of heat sensitive product is possible. The touch panel PLC operating system allows the user to control all the system parameters with the touch of a finger. The blower, air heater and feed liquid pump are operated from this panel. The system parameters such as inlet hot air temperature, outlet exhaust air temperature, feed and blower frequency are set by touching the corresponding displayed value and entering the new value in the set screen that appears. A data trend screen shows a record of the air temperatures. heater output and feed liquid pump output during the experiment. The user can visually see the temperature record and quickly understand it. For data analysis, a daily report screen and experiment data can be viewed with option to save to an USB flash drive for use in a PC computer. Access to only two sides of the spray dryer is required for normal operation. The touch panel and product collection pot are located so that all operations are performed from one operating point.

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