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Explore the Fascinating Full Process of Supercritical Extraction of Sesame Oil! 🌿💧

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  Hello everyone! I am thrilled to share a video showcasing the entire process of supercritical extraction of sesame oil. As a member of the food science community, I had the privilege to be involved in this amazing project, and I would like to use this video to demonstrate the unique production process of sesame oil. In this video, you will witness the essence of supercritical extraction technology. We utilize high pressure and temperature supercritical fluids to transform fresh sesame seeds into pure and natural sesame oil. This method not only maximizes the retention of the aroma and nutritional properties of sesame but also minimizes the environmental impact during the process. Our team maintains strict control over every step of the process to ensure product quality and safety. From the selection of sesame seeds to the operation of the supercritical extraction equipment, and ultimately the extraction of sesame oil, we strive to meet the highest standards. We also employ advanc...

What are the advantages of using supercritical extraction technique to extract sesame oil?

  Supercritical extraction is a technique that uses supercritical fluids, such as carbon dioxide, as solvents to extract desired compounds from a variety of materials, including plant matter. This technique has several advantages over traditional extraction methods, such as steam distillation and solvent extraction. Firstly, supercritical extraction is a more efficient method of extracting desired compounds from materials. Supercritical fluids have unique properties that make them better solvents than traditional solvents. Supercritical fluids have high diffusivity, low viscosity, and high density, which allows them to penetrate materials more deeply and extract more compounds than traditional solvents. Secondly, supercritical extraction is a more environmentally friendly method of extraction. Unlike traditional solvents, supercritical fluids are non-toxic, non-flammable, and do not leave any harmful residues behind. This makes them safer for both the environment and the workers wh...

Low Temeperature Circulating Cooling Chiller

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  Low-temperature Chiller has a cooling temperature range of -150℃~-5℃, fast cooling speed, safe and reliable, and is used for rapid liquid cooling. It adopts secondary subcooling technology, a complete set of imported cold controls, and rapid cooling. We adopt the world famous brand compressor, which can extend the service life of industrial chiller, enhance the refrigeration effect, reduce the energy consumption and noise of industrial chiller. Cooling Chiller Advantages: (1)Air-cooled and hermetically sealed compressor units (import) with dependable quality; (2)The dedicated and high-quality relays, protective devices and capacitors of the refrigerating units; (3)Digital Read Out of temperature and microprocessor controller for temperature is simple and easy to see; (4)It can be matched with a variety of instruments (rotary evaporators, fermentation tanks, chemical reactors, freeze-drying equipment, pharmaceutical reactors, etc.); (5)Bigger cooling capacity and faster cooling s...

Automatic supercritical CO2 equipment has the following advantages

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  Automatic supercritical CO2 equipment has the following advantages: Efficiency: Automatic supercritical CO2 equipment can complete a large amount of chemical reactions in a short period of time. As a solvent, supercritical CO2 has high permeability and diffusion, which can improve reaction rate and efficiency. Environmental friendliness: Using supercritical CO2 as a reaction medium can reduce environmental pollution because it is a non-toxic, tasteless, and colorless gas that does not affect the environment. Additionally, using supercritical CO2 can also reduce waste production. Controllability: Automatic supercritical CO2 equipment can control the rate and efficiency of chemical reactions by adjusting parameters such as temperature, pressure, flow rate, and reaction time, allowing for more precise reaction conditions. Versatility: Supercritical CO2 can be used as a solvent for many different types of chemical reactions, including organic synthesis, chemical separation, solid ext...

Supercritical Fluid Extraction Technology

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Supercritical fluid extraction is the world's most advanced physical extraction technology, referred to as SFE (supercritical fluid extraction). At lower temperatures, when the gas pressure is continuously increased, the gas is converted into a liquid. When the pressure increases, the volume of the liquid increases. There is always a critical temperature (Tc) and critical pressure (for a particular substance). Pc), above the critical temperature and critical pressure, the material does not become liquid or gas, which is the critical point. In the range above the critical point, the matter state is between the gas and the liquid, and the fluid within this range becomes a supercritical fluid (SF). Supercritical fluids have strong penetrability similar to gases and large density and solubility similar to liquids, have good solvent properties, and can be used as solvents for extraction and separation of monomers. Supercritical fluid extraction (SFE) is a high-tech technol...