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Acceleware Ltd V.AXE

Alternate Symbol(s):  ACWRF

Acceleware Ltd. is an advanced electromagnetic (EM) heating company with highly scalable EM solutions for large industrial applications. Its segments include High-Performance Computing (HPC) and RF Heating. The HPC segment sells proprietary high-performance computing software and related consulting services and training programs to the oil and gas industry. The RF Heating segment is engaged in research, development, and commercialization activities related to advanced electromagnetic heating using radio frequency (RF) energy. It is piloting RF XL, its patented low-cost, low-carbon EM thermal production technology for heavy oil and oil sands. It is also working with a consortium of potash partners on a pilot project using its patented and field proven Clean Tech Inverter (CTI) to decarbonize drying of potash ore and other minerals. It is actively developing partnerships for EM heating of other industrial applications in mining, steel, agriculture, cement, hydrogen and other clean fuels.


TSXV:AXE - Post by User

Comment by Whampoaon Apr 11, 2024 5:42pm
108 Views
Post# 35984349

RE:RE:4 PHASE Project ROUTE To COMMERCIAL-SCALE POTASH DRYING

RE:RE:4 PHASE Project ROUTE To COMMERCIAL-SCALE POTASH DRYING I believe the radiated energy / electromagnetic waves will seek out the bi-polar H2O molecules surrounding the ore particles and vaporizing it to its gas form and then air blowing/turbo flowing  into the dryer will remove the water vapour.

Commercial dryers I've seen are rolling cylinders, on a decline slope. Cylindars come in many sizes, just long. Ore enters the higher end and egress, due to rotation and gravity, out the lower end onto a conveyer. Heated Air enters one end out the other.  Ore is churned in this manner for greater air contact. Some cylinder are shaped, I believe to help air flow (like turbo) better.

But with CTI, I am guessing a simple way to agitate the ore on a conveyer with CTI transmission lines above the conveyer would also work. Air does not need to be heated (?).

IMO I don't think the potash ore needs to capture any energy. If potash ore is transparent to the electromagnetic waves, then all much better.




it is HOW the RADIATED ENERGY is CAPTURED and TRANSFERRED to the POTASH ORE in an ENERGY EFFICIENT and EXPENSE-SENSITIVE WAY that will DETERMINE the COMMERCIAL FEASIBILITY and SUCCESS of the project  
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