Used PARR INSTRUMENT 4563N #9168969 for sale

PARR INSTRUMENT 4563N
Manufacturer
PARR INSTRUMENT
Model
4563N
ID: 9168969
Pressure Reaction Apparatus 600ML-MAG.
PARR INSTRUMENT 4563N is a high pressure stirred reactor designed for performing a variety of chemistry reactions in the laboratory with greater efficiency and convenience than traditional batch reactors. It has an internal pressure rating of up to 10,000 PSI and an internal volume of 500 mL, making it suitable for a wide variety of reactions. The reactor is constructed of corrosion-resistant stainless steel and has a patented baffle equipment to facilitate vigorous stirring of the reactor contents. It features built-in temperature sensing and control as well as an optional external pressure control. The reactor has a unique modular design which allows for easy installation of additional components. For example, it can be easily converted to a Microwave Reactor or Flow Reactor by adding the appropriate accessory modules. In addition, a range of different reactor vessels, sizes, and materials can be used in the reactor, providing great flexibility for a variety of reactions. In order to ensure safety of the user and the reactor contents, 4563N has several safety features including a pressure safety relief system and overpressure protection. It also has a wide range of temperature monitoring and control options, allowing for precise control of temperature and reaction times. In addition, PARR INSTRUMENT 4563N features a built-in automatic shut down unit which will shut down the reactor if the safety limits are exceeded. 4563N is also equipped with an integrated drainage machine, allowing easy removal of reaction products from the reactor. The reactor is compatible with a range of different liquid and gas-phase feedstock and product delivery systems. In addition, PARR INSTRUMENT 4563N features advanced control software for tracking and monitoring reactions, with data logging capabilities. This reactor is ideal for laboratory chemistry research, as it can easily scale up to production-scale reactions.
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