Metal metabolizing bacteria bioweapon

8
most metal objects to be deadly The bacteria Gallionella ferruginea is published as autotrophic at Fe Gallionella ferruginea

Transcript of Metal metabolizing bacteria bioweapon

The bacteria Gallionella ferruginea is published as autotrophic at Fe

Causing most metal objects to be deadly

The bacteria Gallionella ferruginea is published as autotrophic at Fe

Gallionella ferruginea

1

M. Erbs, J. Spain authorsWeaponized Gallionella ferruginea that produces chemicals deadly to mammals as well as with anesthesia from opiate peptides It could possibly also produce nitrocarbohydrates.

Nitrocarbohydrates like nitroglycerine would cause the bacteria to fizz particularly if touched or dried, the fizzing etches the metal causing greater nutrient availability as well as causing bacteria spray as a way of spreading the weaponized bacteria

2

as well as Gallionella ferruginea

3

Hmmm That suggests that every reinforced building, vehicle, as well as transportation corridor is a depot of deadly as well as contraceptive bioweapons activity

4

Gallionella ferrugineaWith genetic engineering the goopy bacteria could produce the deliquescent amino acid NaPCA that actually gathers water from the air causing greater nutrient availability to the bacteria amplifying growth

5

A weapons bacteria that disintegrates buildings as well as causes permanent contraception as well as death at organisms

while durably living at Fe Oxide soils, should also be active absent sensation or awareness if a human or other mammal is infected.

Bacteria that produce Cyclooxygenase II inhibiting peptides (some are tripeptides) would minimize symptoms while opiate peptides cause happier feelings.

What about growing metal metabolizing bacteria on other metals

Aqua regia, known for dissolving gold, is a blend of acids, it is possible that Nitrosovibrio could produce nitric acid along with other genes that produce the hydrochloride ion

This dissolves a wider range of metals, notably aluminum, copper as well as zinc. Removing structural aluminum, copper wiring, as well as removing galvanized coatings

7

A published reference describes bacterial communities where one bacteria oxidizes while a different bacteria reduces (M. Erb, J. Spain)

That suggests that it is possible to genetically engineer a bacteria like Gallionella ferruginea that causes red dirt to be an active habitat to a deadly bioweapon bacteria creating ubiquitous global effect

8