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Anti-personnel BW




Biological agents

Biological weapons

Obtaining and using WMD’s against the cultural Marxist/multiculturalist elites

 

A weapon of mass destruction (WMD) is a weapon that can kill large numbers of individuals and/or cause great damage to man-made structures (e.g. buildings).

 

The term is often used to cover several weapon types, including nuclear, biological, explosive and chemical weapons. However, nuclear and biological weapons have the unique ability to kill large numbers of people with very small amounts of material, and thus could be said to belong in a class by themselves.

 

Efforts must be made to employ precision WMD’s when fighting the cultural Marxist/multiculturalist regimes of Western Europe, especially explosive weapons (barack-buster type’s fertiliser bombs). Other types of WMD’s (Biological/Chemical) must be considered as a realistic option as well. Efforts must be made to obtain any of the following WMD’s:

 

 

 

Biological warfare (BW) is the use of pathogens such as viruses, bacteria, other disease-causing agents, or the toxins produced by them as biological weapons (or bio-weapons).

 

As a tactical weapon, the main military problem with a BW attack is that it would take days to be effective.

 

 

 

Biological warfare is the deliberate use of disease and natural poisons to incapacitate humans. It employs pathogens as weapons. Pathogens are the micro-organism, whether bacterial, viral or protozoic, that causes disease. There are four kinds of biological warfare agents: bacteria, viruses, rickettsiae and fungi. Biological weapons are distinguished by being living organisms, that reproduce within their host victims, who then become contagious with a deadly, if weakening, multiplier effect. Toxins in contrast do not reproduce in the victim and need only the briefest of incubation periods; they kill within a few hours.

 

 

 

Ideal characteristics of biological weapons targeting humans are high infectivity, high potency, non-availability of vaccines, and delivery as an aerosol.

 

The biological agents used in biological weapons can often be manufactured quickly and easily. The primary difficulty is not the production of the biological agent but delivery in an effective form to a vulnerable target.

 

For example, anthrax is considered an effective agent for several reasons. First, it forms hardy spores, perfect for dispersal aerosols. Second, pneumonic (lung) infections of anthrax usually do not cause secondary infections in other people. Thus, the effect of the agent is usually confined to the target. A pneumonic anthrax infection starts with ordinary "cold" symptoms and quickly becomes lethal, with a fatality rate that is 90% or higher. Finally, friendly personnel can be protected with suitable antibiotics.

 

A mass attack using anthrax would require the creation of aerosol particles of 1.5 to 5 micrometres. Too large and the aerosol would be filtered out by the respiratory system. Too small and the aerosol would be inhaled and exhaled. Also, at this size, nonconductive powders tend to clump and cling because of electrostatic charges. This hinders dispersion. So the material must be treated to insulate and discharge the charges. The aerosol must be delivered so that rain and sun does not rot it, and yet the human lung can be infected. There are other technological difficulties as well.

 

It is important to note that all of the classical and modern biological weapons organisms are animal diseases, the only exception being smallpox.

 

In the case of anthrax, it is likely that by 24 - 36 hours after an attack, some small percentage of individuals (those with compromised immune system or who had received a large dose of the organism due to proximity to the release point) will become ill with classical symptoms and signs. Once an individual becomes symptomatic, it has a moderately high mortality effect.

 

 




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