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The Original Resinator’s Behind the Process: Crop-to-Cure® Part 2

As we discussed in our previous article “How Do You Optimize Botanical Freeze Drying?”, there is more to the process of freeze drying than just a simple project fix to vacuum engineering. It is a science. And part of the science is what is known as the “cold chain”. The cold chain is the process of actions and equipment required to maintain a product within a low temperature range from harvest to consumption. This means reducing the total time required from garden to shelf by leveraging the lyophilization process during harvest. That is why creating a cost and time efficient way to cure, sublimate, and freeze dry cannabis is a priority for DigiVac and The Original Resinator. From freezing conditions and environmental exposure to live buds, the research behind the Crop-to-Cure® technology was challenging because

The Original Resinator is trying to cut back the time and effort required to achieve the same or greater results in less time compared to traditional drying methods.

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The Original Resinator’s Behind the Process: Crop-to-Cure

There is a huge demand for medical and high quality cannabis flower, but the production cycle is long and is subject to human error which can lead to a lower quality product. The Original Resinator (TOR) is a leader in research and development for optimizing post-harvest efforts by manufacturing equipment that is specifically designed for the needs of cultivators and extractors.

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Fraction Finder for Ethanol Extraction Sight Glass on Ethanol Extractor

What Extraction technique is right for you?

The cannabis market uses three main extraction techniques: CO2, liquefied hydrocarbons, and ethanol extraction.  Below explains  each method and how the extraction takes place and who and why some would use one specific method over another.

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Don’t Get Fooled By These Common Vacuum Processing Myths

Rotary evaporators are advanced scientific instruments that are commonly used in chemical laboratories, processing laboratories and in research to facilitate fractionation. This separation process allows the solvents to be removed gently through evaporation and the precise control of the temperature.

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