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alkaloids, to unreacted lysergic acid, or lysergic acid hydrazides to iso-
LSD and God knows what substances created by the mishandling of
the raw materials and product, a contaminated product is much easier to
make than a pure one.
The use of large volumes of solvents poses twin problems:
obtaining them and disposing of them. Both problems are made vastly
Practical LSD Manufacture
simpler by recycling the solvents. Just because a solvent has been
used once in a given stage of the process does not mean its useful
lifetime is over. For example, the solvent used for defatting the crop is
easily made as good as new by distilling it to free it of its load of fat.
Other solvents are not so easily recovered for re-use because the
procedure calls for the given solvent to be removed from the product
by vacuum evaporation. In this case, the solvent can be collected in a
cold trap placed along the vacuum line on its way to the vacuum
source. If a pump is used to create the vacuum, such a trap is vital to
prevent solvent vapors from getting into the pump oil, thereby ruining
the lubrication and the vacuum created.
A cold trap can be constructed of either glass or steel; it need only be
large enough to hold the solvent collected, and airtight so as not to ruin
the vacuum with leaks. This cold trap is then cooled down with dry ice
during vacuum evaporations to condense the solvent vapors in the trap.
The solvent recovered in the trap can be re-used in the given stage of
the process from whence it came. I would not co-mingle recovered
solvents from different stages. For example, chloroform from the
alkaloid extraction of the crops should be kept for that usage, and not
be used for LSD crystallization, because it will also contain some
ammonia and methanol.
The recovery of ether, for example, from method 2 of lysergic acid
production, poses a special problem. This problem is the formation of
explosive peroxides in ether during storage. Ether containing water
and alcohol, as would be the case for this recovered solvent, does not
form much peroxide. There is a possibility that dry ether can be made
free of peroxides by shaking the ether with some 5% ferrous sulfate
(FeSO4) solution in water prior to distilling. Failure to do this may
expose the operator to a fiery explosion during distillation. Ice water
flowing through the condenser, and an ice-chilled receiving flask, are
required to get an efficient condensation of the ether during
Keeping Out Of Trouble 71
Keeping Out Of Trouble
The dangers of LSD manufacturing do not end with the possibility
that the cooker may spill some of the stuff on himself and fry his
brain. There is a much more malignant danger facing those who
embark upon this course: Johnny Law.
The conduit through which those shit-eating dogs travel to get to
you is your associates. If you are cooking alone with no partners in
crime, your safety has been impro
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yhs-sgm_ytb Female Aphrodisiac
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The history relating to the female aphrodisiac goes a long way back to the beginning of mankind. Human body odor is the earliest known aphrodisiac. Scent or the sense of smell is closely related to sexual proclivity as most animal species use scent to determine a female's readiness to mate.
When a woman feels sexual attraction she may feel a powerful force that draws her to another person. Passionate feelings begin to arise and a longing for this person begins. Human pheromones, natural female aphrodisiacs, are responsible for this incredible attraction. Animals as well as human beings exude a scent that draws others to them. Pheromones have been referred to as "smell prints," that are unique in everyone. Smell is a sense that goes straight to the brain's limbic lobe creating an immediate emotional reaction.
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c san pedro cactus powder erature reading lesson to those who
have made these claims. See Proceedings of the Royal Society of
London, Series B, Volume 155, pages 26 to 54 (1961). Also see US
Patent 3,219,545. You will note while reading these articles detailing
how to get lysergic amide production in a culture medium that these
guys had to scour the globe to find that rare strain of claviceps fungus
that will cooperate in this manner. The vast majority of claviceps
fungi just will not produce these alkaloids while being cultured. See
the following articles to convince yourself of just how futile it is to
collect a wild strain of claviceps and try to get it to produce lysergic
acid amides in culture: Ann. Rep. Takeda Res. Lab Volume 10, page 73
(1951); and Farmco, Volume 1, page 1 (1946); also Arch. Pharm. Berl.
Volume 273, page 348 (1935); also American Journal of
Practical LSD Manufacture
Botany, Volume 18, page 50 (1931); also Journal of the American
Pharmacy Association Volume 40, page 434 (1951); also US patent
2,809,920; also Canadian Journal of Microbiology, Volume 3, page
55 (1957), and Volume 4, page 611 (1958) and Volume 6, page 355
(1960); also Journal of the American Pharmacy Society Volume 44,
page 736 (1955).
With this matter disposed of, it is time to move on to what
actually are viable sources of lysergic acid amides for the production of
LSD. This is the farming end of the acid business. It is only through
raising ergot-infested rye, or growing morning glories and Hawaiian
baby woodrose that the required feedstocks of lysergic compounds
can be obtained without making a target of oneself. I have for years
seen ads in High Times offering morning glory seeds and Hawaiian
baby woodrose seeds for sale, but these are offered in small amounts at
high prices. I would bet my bottom dollar that these outfits, if they are
not front operations, will at least report to the heat any large orders they
get. To avoid detection, the aspiring LSD manufacturer must be ready
to get his hands dirty, and spend some time as a farmer.
The most difficult farming choice, and as luck would have it, the
one that gives the purest acid, is to grow a patch of ergot-infested rye.
The reason why ergot is superior to growing morning glory seeds or
woodrose seeds is that these seeds have a considerable amount of
another type of alkaloid in them besides the ones that yield lysergic
acid. These other alkaloids are of the clavine type, meaning that they
have the lysergic-acid skeleton, but lack the carboxyl grouping. In its
place will be a methyl grouping, an alcohol grouping, a methyl
alcohol grouping or combinations of the above. These clavine
alkaloids will likely be carried all the way through into the product,
producing both the GIGO situation during the synthetic operations
and a contaminated product when finished. I will present my ideas on
how to remove them, but they are best avoided in the first place.
Ergot is the name given to a dark brow
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