Electric Rotary Evaporator Advanced
RE Series Laboratory Rotary Evaporators are high-efficiency separation and concentration devices widely used in chemistry, biology, pharmaceuticals, and other fields. The core function is to gently remove solvents from solutions via reduced-pressure distillation. Motor-driven flasks rotate at constant speeds, forming uniform liquid films on flask walls to maximize evaporation surface area. Heating baths (water or oil) provide precise thermal control, while vacuum systems lower pressure to reduce solvent boiling points. Evaporated solvent vapor is liquefied in condensers via coolants and collected in receiving flasks. Designed for easy operation and sample protection, they are ideal for heat-sensitive compounds, enabling rapid solvent removal without thermal degradation.
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High Pressure Reaction Kettle Intelligent Magnetic Stirring
The HPT Magnetic Stirring Series high-pressure reactors feature quick-opening closures, touchscreen controls, and benchtop designs. With their compact structures, minimal footprints, and easy disassembly, these systems excel in petroleum, chemical, pharmaceutical, materials, and metallurgical applications—including catalytic reactions, polymerization, supercritical processes, high-temperature/pressure synthesis, and hydrogenation.
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The MCR Series Microwave Chemical Reactors integrate microprocessor control and advanced microwave modulation technology to provide continuously adjustable microwave power with real-time power output display. Engineered for microwave-assisted reactions requiring precise low-power irradiation control, they deliver user-friendly operation and high reproducibility in chemical synthesis workflows.
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Homogeneous reactors accelerate chemical reactions by mixing reactants in solution with catalysts. Widely used in chemical processes, they enable efficient reaction kinetics through optimized solution-phase catalysis.
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RN Series Rotary Evaporators utilize stepless speed regulation to maintain constant rotation speeds of glass rotary flasks, forming large-area uniform thin films of material on the flask walls. Paired with intelligent thermostatic water baths for uniform heating and high-speed evaporation under vacuum, solvent vapor is condensed via high-efficiency glass condenser and collected in receiving flask. Engineered for vacuum operation, all material-contact components are constructed from high-temperature-resistant borosilicate glass (GG-17) and PTFE(polytetrafluoroethylene), making them ideal for the concentration and purification of heat-sensitive biological samples.
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Double-layer glass reactors utilize constanttemperature heating and constant-speed stirring under vacuum conditions to ensure uniform mixing of raw materials, facilitating full reaction, evaporation, separation, and solvent recovery within the reactors. All material-contact components are constructed from high-temperature and corrosion-resistant borosilicate glass (GG-17) and polytetrafluoroethylene (PTFE), making them ideal for reactions involving thermolabile biological products prone to decomposition or denaturation.
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Hydrothermal Synthesis Reactor
LC-KH Series Hydrothermal Synthesis Reactors (also known as polymerization reactors, high-pressure digestion tanks, pressure dissolution bombs, digestion tanks, or hydrothermal synthesis autoclaves) are sealed containers designed for decomposing refractory substances. They serve as sample preparation devices for atomic absorption spectroscopy (AAS), ICP-OES/ICP-MS, and other analytical techniques. Suitable for small-scale synthesis and rapid digestion of insoluble materials in strong acid/alkali environments under high temperature/pressure.
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