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Produces temperatures to 9000°C without damage to the containing equipment. A magnetic field
is formed, compressed, and modulated by radio-frequency signals to maintain the integrity of
the way the plasma confirms with control and precision, to the magnetic vector potentials in the
field.
How it works:
Solid matter is allowed into the field via a strong magnetic “trap door”. The large version of this
device accepts 55-gallon barrels full of any toxic waste. A proprietary process detonates the
drum within the field as the initial stage of the disintegration. In a short time, all speeches of
molecules are ionized. A smaller version of this process accepts compressed parcels of
municipal solid waste, rather than the larger drums.
A pre-processing unit used for both large and smaller plasma disintegrators, such that bulk solids
are received of their valence boning, which allows a high degree of packing by a small applied
mechanical compressive force. The parcels resulting from the packing process, become the
feedstock for the disintegrator.
The novel aspect of Langenburg plasma disintegrators is:
- Unusually high heat field that will not harm the nacelle of the enclosing device
- Magnetic field density via compression
- Nature and operation of the magnetic trap door
- Method of internal detonation as initial stage prior to full plasma ionization
- RF-modulated precision and control of the boundary layer physics of the field’s vector
potentials
Separately, the Langenburg wastewater system can further process and leftover residues or
recombination of materials from either/both the thermal plasma disintegrators. The same pre-
processing unit can also be used directly with the wastewater (non-thermal) process, in such
cases that larger chunks of stone, concrete, metals, etc… are mixed with a flowing liquid
feedstock stream, as the larger chunks can be separated using a vortex device.
List of Common Langenburg Components
• Small Thermal Plasma Disintegrator
• Large Thermal Plasma Disintegrator
• Pre-Processing Unit