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HPQ Silicon Inc V.HPQ

Alternate Symbol(s):  HPQFF

HPQ Silicon Inc. (HPQ) is a Canada-based technology company specializing in green engineering of silica and silicon-based materials. The Company is engaged in developing, with the support of technology partners PyroGenesis Canada Inc. (PyroGenesis) and Novacium SAS, new green processes to make the critical materials needed to reach net zero emissions. Its activities are centered around the three pillars: becoming a green low-cost (Capex and Opex) manufacturer of Fumed Silica using the Fumed Silica Reactor, a proprietary technology owned by HPQ being developed for HPQ by PyroGenesis; becoming a producer of silicon-based anode materials for battery applications with the assistance of Novacium SAS, and Novacium SAS is engaged in developing a low carbon, chemical base on demand and high-pressure autonomous hydrogen production system. The Company operates in a single operating segment, segment, being the sector of the transformation of quartz into silicon materials and derivative products.


TSXV:HPQ - Post by User

Post by Tcheckon Sep 18, 2023 11:48pm
447 Views
Post# 35642717

Nothing new under the sun i guess

Nothing new under the sun i guessThey tried their hand at it in 1978
maybe this rime it will work
something is off .:)

Powder Technology

Volume 20, Issue 1, May–June 1978, Pages 15-20

 

 

The industrial application of plasma technology for the production of fumed Silica

Author links open overlay panel

C.R. Schnell 1, S.M.L. Hamblyn 2, K. HengartnerM. Wissler

Lonza Ltd., CH-3930 Visp Switzerland

 

Abstract

The industrial application of plasma chemistry is restricted for the time being to the use of a plasma torch as an efficient heat source for the production of existing chemicals. The techno-economic requirements for products suitable for plasma processing are outlined. There are only very few such processes at or near industrialization, such as the Tafa process for ZrO2, the Noranda MoS2 process and the Lonza process for fumed silica.

Various types of plasma torches are evaluated according to such criteria as investment cost, efficiency, availability in industrial size, suitability for continuous operation and scale-up etc. The liquid-stabilized torch used in this work is described.

The Lonza process for surface-active silica is based on the reduction of sand to silicon monoxide gas in a specially designed reactor, fired by a 200 kW alcohol-stabilized plasma torch. By direct oxidation of the SiO gas in a quench system it is possible to produce a surface-active product.

At present the process has reached pilot plant scale and is being optimized.

In comparison with the conventional process, based on the gas phase hydrolysis of silicon tetrachloride, the use of cheaper raw materials and the elimination of hydrogen chloride from the process lead to a cheaper process without ecological problems.

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