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MKX-H5C1 Large Volume Microwave Synthetic Extractor

Product ID:SYHCwbhc020

Price: Please inquire PDF Format
Supply Ability:50 SETS/MON
Port:SHENZHEN
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  • Product Introduction
  • Consulting
  • Model NumberMKX-H5C1
    Brand NameMAIKEWEI
    Payment TermsTT,PAYPAL
    MKX-H5C1 Large Volume Microwave Synthetic Extractor
     
    Introduction:
    Microwave chemical synthesis extraction reactor, suitable for chemical synthesis extraction reaction in microwave environment under normal pressure; suitable for chemical research (organic synthesis chemistry, inorganic chemistry, analytical chemistry, medicinal chemistry, military chemistry), biomedicine, Materials science, food science, inspection and quarantine, petrochemical industry, and agriculture, forestry and fishery testing fields; the physical and chemical processes in the synthesis and extraction process are accelerated by microwave energy. In many application fields, microwave energy can greatly improve the reaction speed and reduce At the same time, it is easy to complete the synthesis process that the traditional synthesis reaction method is relatively difficult to complete.
    Features:
    1. The open 120L large-capacity atmospheric pressure microwave chemical reactor process platform is suitable for synthesis, extraction and other disciplines
    2. Support 30L reaction flask reaction system within 300˚C
    3. Support condensation reflux process
    4. Support mechanical and electromagnetic double stirring
    5. Support the recycling process
    6. Support the uninterrupted sampling process of the process
    7. Intelligent control system, temperature and power closed-loop controllable
    8. The experimental data curve is displayed and the data can be exported
    9. Support internal lighting and video surveillance process
    10. User-customized and expandable functions: For larger volume reactions, please refer to "Microwave Chemical Reactor Technology"
    Technical parameter:
    Microwave power: rated power 4000W/2450MHz, stepless non-pulse continuous microwave power output
    Microwave reaction chamber design: 304 stainless steel welded together, solid and reliable
    The inner surface is coated with multi-layer Teflon anti-corrosion coating, which is suitable for use in acid-base corrosion and high-temperature environments, and is easy to wipe and clean
    Inner cavity size: about 120L, suitable for process assembly of multiple containers
    Reaction system: 30L glass flask, open reaction system, supports temperature measurement, stirring, condensation and reflux functions
    Temperature control: temperature range: common working temperature 0 ~ 300
    Adopt infrared and optical fiber dual temperature measurement mode
    Mixing control: mechanical stirring plus airflow stirring double stirring mode
    Mechanical stirring: Teflon anchor stirrer is used, driven by a speed-adjustable motor, and the speed is adjustable
    Air agitation: using nozzle-type air agitation mode
    Equipment power supply: 380Vac / 50Hz, whole machine energy consumption: 11kW
    Equipment water supply: cold water system (condensation recovery process)
    Equipment air supply: air compressor, providing airflow agitation
    Appearance dimensions: (1) Approx. main body: 880×650×550mm (W×H×D), (2) Approx. top bracket: 500mm
    Equipment weight: 120kg
  • Introduction:
    Microwave chemical synthesis extraction reactor, suitable for chemical synthesis extraction reaction in microwave environment under normal pressure; suitable for chemical research (organic synthesis chemistry, inorganic chemistry, analytical chemistry, medicinal chemistry, military chemistry), biomedicine, Materials science, food science, inspection and quarantine, petrochemical industry, and agriculture, forestry and fishery testing fields; the physical and chemical processes in the synthesis and extraction process are accelerated by microwave energy. In many application fields, microwave energy can greatly improve the reaction speed and reduce At the same time, it is easy to complete the synthesis process that the traditional synthesis reaction method is relatively difficult to complete.
     
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