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Tamisium extractors automation pressure check revealed 3 года назад

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Tamisium extractors automation pressure check revealed

I have heard attempts to define Tamisium Extractors so I thought it best if I set the record straight. A Tamisium Extractor was defined inaccurately by the Rand Corporation in a study performed for Washington, as a plural word deriving form the word Tamisua. Brings up the point do you really want to place your trust in a corporation that just makes up their facts. Tamisium is a latin word meaning " to Filter or Sieve " (Herman, p. 308). It was a neuter noun without gender and possibly plural but once adopted as the name of an extractor it became a proper noun and has no other spelling. Tamisium being defined as to Filter or Sieve is therefore chosen as the appropriate name for an extractor that places a medium in a liquid solution and then filters that medium out. It is a closed passive solvation extractor that extracts by filtration. It is not exclusive to butane. A tamisium can effectively use any liquid solvent with a higher boiling point that the pressure rating for the tank can hold. Tamisium incorporates distillation to recover the solvent meaning it uses temp drop to condense the solvent. It can use any solvent with a practical condensation temperature. An impractical solvent would use a recovery pumping process instead of distillation because its condensing temp is impractical to achieve and hold. Propane would be an example of an impractical solvent with a condensing temp too low to achieve easily. All that being said does not mean you cannot use propane or cannot use a recovery pump but why would you if propane and butane is the same polarity and dissolve the same array. You would choose butane because it can be recovered with a safe recovery process that is entirely closed within the tank. Temp change alone is all you need to recovery it. Whereas with propane and pumps you exit the tanks into a pump compressor that can fail or leak and the do leak. This egress of solvent into the room makes the process unsafe or hazardous when it is not necessary. At the time of this writing there is currently no Sanitary Rating on Recovery Machines rated for flammable solvents. Various pieces of knowledge were learned during the creation of the Tamisium Extractor and process such as how much solvent is required to perform a complete extraction on all plant materials. How combining solvents is useful. How different solvents conduct temp changes. How solvents of similar polarities combine and separate during extraction and recovery. How temperature and contact time enables or disables a solvents effectiveness at dissolving compounds from plant matter and how adding co solvents can widen the target band of desired or undesired chemicals and oils. We learned that there are 7 total variables that one can control in extraction and if you can control them all to the limit of effectiveness you can create a map to find that array again. A formula to repeat. As we learn more about how plants are useful laws will change to allow more to be used for medicinal application. A formulation to extract from GM or Hydridized strains will allow easier access to consumers through regulatory conformation. After researching various methods of recovery of the solvents used any idea of ever using a pump safely was completely dropped and a whole design was created around the concept of using distillation to recover the solvent. All the controls one could ever want were allowed after the pump was removed and after building large enough tanks allowing adequate amount of solvent to perform a complete extraction. Removing the pumps and compressors was the key to gaining all this control. The Tamisium Extractor is not a closed loop extractor. It is a closed passive extractor that uses an adequate amount of solvent which allows the extraction to be completed without the need to recover and loop solvent over and over again through plant material. An adequate solvent is a larger volume of solvent with a larger thermal mass. With more solvent you use the correct amount to become more efficient. A loop extractor can only loop because it does not have the capacity to hold the correct volume of solvent to prevent the need to repeatedly loop. These two factors, adequate volumes of solvent and removal of the need to use a solvent recovery pump are what allow so much control over the solvent during the extraction process. It is imperative that the extraction process be isolated from the solvent recovery process to enable these controls. The two must work in series WITHOUT the need to repeat.

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