Description and formation of CO2 Extracted Cannabis Oil
CO2 Extracted Cannabis Oil is produced by using CO 2 to extract the oil from the plant. Many medical and recreational cannabis consumers prefer to inhale a cool, instantly-rejuvenating, cannabinoid-infused vapor as opposed to the comparably harsh combusted cannabis smoke.
However, many health-conscientious cannabis concentrate consumers—you included, perhaps—prefer to avoid all together inhaling residual petroleum particles from butane hash oil into their lungs. We couldn’t agree more.
So are you ready for a cleaner, purer, tastier, safer and overall truly higher-quality cannabis concentrate? Well, have we got a treat for you: supercritical CO2 extraction!
That’s not actually the treat, though. Rather, it’s a really awesome way to remove all the stuff that makes ganja great from the plant matter on which it resides. That way, you don’t have to burn your marijuana to reap all the mind-altering and medicinal benefits.
And best of all for those health-conscious cannasseurs out there, this extraction method won’t leave behind trace amounts of toxins in the finished product. Now that’s something to sit up and take notice of.
This post will break down a bit of the basics behind supercritical fluid extraction and the biochemical benefits of CO2 extracted cannabis concentrates. We’ll also leave you with some simple steps for extracting your own concentrated kief crystals at home using dry CO2 ice.
The CO2 Cannabis Extraction Method
This form of CBD extraction is actually divided into supercritical, subcritical and ‘mid-critical’ categories but supercritical is by far the most commonly used. In fact, it is the most regularly used extraction method of all because it is safe and provides a pure end product.
In simple terms, CO2 cannabis extraction uses pressurized carbon dioxide (CO2) to pull CBD (and other phytochemicals) from the plant. CO2 acts like a solvent at certain temperatures and pressures but possesses none of the dangers. While it is safe and effective, it also involves extremely expensive equipment. The rather sophisticated machines used for the purpose work to freeze the CO2 gas and compress it into a supercritical cold liquid state.
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