share_log

HPQ PUREVAP QRR Will Usher in Zero CO2 Emission Silicon Metal Manufacturing

HPQ PUREVAP QRR Will Usher in Zero CO2 Emission Silicon Metal Manufacturing

HPQ PUREVAP QRR 將迎來零二氧化碳排放的金屬硅製造
GlobeNewswire ·  2023/06/27 07:30

HPQ's QRR Process Has the Potential to Generate Carbon Credits, Highlighting Its Significant Environmental Advantages for Pivotal Markets

HPQ的QRR流程有可能產生碳信用額度,這凸顯了其對關鍵市場的顯著環境優勢

MONTREAL, June 27, 2023 (GLOBE NEWSWIRE) -- HPQ Silicon Inc. ("HPQ" or the "Company") (TSX-V: HPQ) (OTCQX: HPQFF) (FRA: O08), a technology company specializing in green engineering processes for silica and silicon material production, is pleased to provide shareholders information on the significant environmental benefits of the PUREVAPTM Quartz Reduction Reactor (QRR) process currently being developed in collaboration with technology provider PyroGenesis Canada Inc. (TSX: PYR) (NASDAQ: PYR) (FRA: 8PY) (PyroGenesis).

蒙特利爾,2023 年 6 月 27 日(GLOBE NEWSWIRE)— HPQ Silicon Inc. (“HPQ” 或 “公司”)(TSX-V: HPQ) (OTCQX: HPQFF) (FRA: O08) 是一家專門從事二氧化硅和硅材料生產綠色工程工藝的科技公司,很高興向股東提供有關二氧化硅和硅材料生產的重大環境效益的信息 PUREVAPTM 石英還原反應堆 (QRR) 目前正在與技術提供商合作開發流程 PyroGenesis 加拿大有限公司 (多倫多證券交易所股票代碼:PYR)(納斯達克股票代碼:PYR)(FRA:8PY)(PyroGenesis)。

As the GEN3 QRR pilot plant testing progresses toward commercial validation, HPQ can now highlight a distinctive environmental advantage of its proprietary QRR process. This advantage, combined with recently acquired intellectual property from PyroGenesis, will enable HPQ to achieve more than just the milestone of zero CO2 emissions in silicon metal manufacturing—it will also incorporate a carbon recycling step that should also yield an additional significant reduction in feedstock usage.

隨着第三代QRR中試工廠測試向商業驗證邁進,HPQ現在可以突出其專有的QRR工藝的獨特環境優勢。這一優勢,再加上最近從PyroGenesis獲得的知識產權,將使HPQ能夠實現的不僅僅是零二氧化碳的里程碑2 金屬硅製造業的排放——它還將包括碳回收步驟,這也將進一步顯著減少原料的使用。

These developments will further enhance the sustainability and efficiency of the QRR production process.

這些發展將進一步提高QRR生產過程的可持續性和效率。

"By modernizing the production of high-purity Silicon, our QRR process has the potential to transform a century-old industrial process, known for its significant CO2 emissions, into a carbon credit-generating solution," stated Bernard Tourillon, President & CEO of HPQ Silicon. "Amidst the global focus on reducing carbon emissions and achieving sustainability goals, the advancements of HPQ hold immense significance in driving the transition towards cleaner and more environmentally responsible silicon production."

通過實現高純度硅生產的現代化,我們的QRR工藝有可能改變以其重要的二氧化碳而聞名的已有百年曆史的工業工藝2 排放,轉化爲碳信用生成解決方案,” HPQ Silicon總裁兼首席執行官伯納德·圖裏隆說。 “在全球關注減少碳排放和實現可持續發展目標的背景下,HPQ的進步在推動向更清潔、更環保的硅生產過渡方面具有重要意義。

Silicon Manufacturing is Currently the Largest Emitter of CO2 Among Metals And Non-Ferrous Metals

硅製造業目前是最大的二氧化碳排放國2 在金屬和有色金屬中

In traditional silicon metal manufacturing, a carbothermic process involving the reduction of Silica (SiO2) using carbon sources (Coal, Coke, or Charcoal) as reductant at high temperatures > 1,800o C in Open Electric Arc Furnaces (OEAF) is used to make Silicon metal (Si). The carbothermic process alone results in 5 tonnes (t) of CO2 emissions per tonne (t) of silicon produced [1]. This makes Silicon Metal manufacturing the largest emitter of CO2 among all metals and non-ferrous metals, based on a tCO2/t product basis, as per the Intergovernmental Panel on Climate Change (IPCC), a United Nations body focused on climate change research [2].

在傳統的金屬硅製造中,一種碳熱工藝,涉及還原二氧化硅 (SiO)2) 在高溫 > 1,800 時使用碳源(煤炭、可樂或木炭)作爲還原劑o 開放式電弧爐 (OEAF) 中的 C 用於製造金屬硅 (Si)。光是碳熱處理就會產生 5 噸 (t) 的二氧化碳2 每生產一噸 (t) 硅的排放量 [1]。這使得金屬硅製造業成爲最大的二氧化碳排放源2 在所有金屬和有色金屬中,基於 TCo2/t 產品基礎,根據政府間氣候變化專門委員會(IPCC)的說法,政府間氣候變化專門委員會(IPCC)是一個專注於氣候變化研究的聯合國機構 [2]。

Currently, traditional silicon metal manufacturers have only one option to reduce their carbothermic carbon footprint, and this involves replacing fossil-based carbon with an organic carbon source [3]. While adopting this alternative allows manufacturers to effectively mitigate a part of their overall carbon footprint by offsetting the CO2 emissions associated with the organic carbon source, it will never allow them to produce zero CO2 emissions silicon metal.

目前,傳統的金屬硅製造商只有一種選擇來減少碳熱碳足跡,這涉及用有機碳源取代化石基碳 [3]。雖然採用這種替代方案可以讓製造商通過抵消一氧化碳來有效減少部分整體碳足跡2 與有機碳源相關的排放,它永遠不允許它們產生零二氧化碳2 排放硅金屬。

PUREVAPTM QRR Zero CO2 Silicon Metal Advantage: A Closed Electrical Arc Furnace Design

PUREVAPTM QRR Zero CO2 金屬硅的優勢:封閉式電弧爐設計

The QRR, by design, is a Closed Electric Arc Furnace (CEAF) with the ability to operate under controlled atmospheric conditions. This innovative furnace enables the semi-continuous feeding of Silica (SiO2) and a carbon reductant, facilitating the production of 3N+ silicon in a single step. Notably, the QRR's design eliminates air infiltrations within the reactor, ensuring that the CO gas ("Co(g)") generated during the carbothermic reaction remains unoxidized. Consequently, the QRR produces a gas composition enriched with CO(g), which can be readily captured for further utilization.

QRR,從設計上講, 是一種封閉式電弧爐 (CEAF),能夠在受控的大氣條件下運行。這種創新的熔爐可實現二氧化硅 (SiO) 的半連續進料2)和碳還原劑,可促進3N+硅的生產一步到位。值得注意的是,QRR的設計消除了反應器內的空氣滲透,確保碳熱反應過程中產生的CO氣體(“Co (g)”)保持未氧化。因此,QRR 產生的氣體組合物富含 CO (g),可以很容易地捕獲以供進一步利用。

The recently acquired IP from PyroGenesis encompasses a process that involves capturing the CO(g) stream emitted by the QRR. This captured CO(g) is subsequently converted back into a solid carbon form, creating the potential for its reuse in generating the carbothermic process for silicon production once again.

最近從PyroGenesis獲得的知識產權包括一個涉及捕獲QRR排放的CO (g) 流的過程。捕獲的二氧化碳 (g) 隨後被轉化爲固體碳形式,從而有可能再次用於生產硅的碳熱工藝。

By harnessing the unique CO(g) sequestration ability of the QRR in combination with the utilization of an organic carbon source, HPQ is poised to achieve the production of Zero CO2 Silicon Metal. This innovative approach enables carbon-neutral silicon metal production and holds the potential for generating carbon credits. According to management estimates, the QRR potential carbon credits should be between 1.5 tCO2/t product basis and 2.6 tCO2/t product basis [4].

通過利用 QRR 獨特的二氧化碳 (g) 封存能力,再加上有機碳源的利用,HPQ 有望實現零二氧化碳的產生2 金屬硅。這種創新方法可以實現碳中和金屬硅的生產,並有可能產生碳信用額度。根據管理層的估計,QRR的潛在碳信用額度應在1.5 tCo之間2/t 產品基礎和 2.6 tCo2/t 產品基礎 [4]。

HPQ intends to commercialize its Zero+ CO2 Silicon Metal under the brand name SILICIUMX.

HPQ 打算將其的 Zero+ CO 商業化2 品牌名稱下的金屬硅 X

Zero Nitrogen Oxides emission, another environmental advantage of the QRR process

氮氧化物排放爲零,這是另一個環境優勢 QRR 流程

The size, complexity, and open-top nature of Open Electric Arc Furnace facilities contribute to the heating of atmospheric nitrogen, causing it to enter a reactive state and releasing highly reactive and poisonous Nitrogen Oxides (NOx) gases. However, the unique design of the QRR inhibits air infiltrations within the reactor, effectively preventing the formation of NOx. This environmental advantage is another positive aspect of the QRR process.

開放式電弧爐設施的大小、複雜性和開頂性質促成了大氣氮的加熱,使其進入反應狀態並釋放出高活性和有毒的氮氧化物(NOx)氣體。但是,QRR 的獨特設計可抑制反應器內的空氣滲透,有效防止氮氧化物的形成。這種環境優勢是QRR流程的另一個積極方面。

Quantifying the Environmental Benefits of the QRR: A Zero CO2 Emission Process

量化 QRR 的環境效益:零二氧化碳2 排放過程

HPQ's QRR Zero CO2 emission silicon metal manufacturing can have a profound environmental impact, as exemplified by its significance in key markets:

HPQ 的 QRR Zero CO2 排放硅金屬製造會對環境產生深遠的影響,其在關鍵市場的重要性就是例證:

  • Market research indicates a need for 1 million tonnes of additional silicon metal production capacity in the coming decade, exacerbating the carbon emission issue [5]. By fulfilling just 25% of this demand with QRR systems, worldwide CO2 emissions could be reduced by 1.25 million tonnes annually, equivalent to removing 278,163 gasoline-powered passenger vehicles from the road yearly [6], or >50% of the cars produced in Canada in a year.
  • Canada's annual silicon metal production of approximately 50,000 tonnes [7] could see a remarkable reduction of 206,000 tonnes in annual carbon emissions by adopting QRR systems [8].
  • With an annual silicon metal production of around 310,000 tonnes in the United States [9], replacing old legacy plants with QRR systems could lead to a substantial reduction of 1.55 million tonnes of CO2 emissions per year [10].
  • European countries, with an annual silicon metal production of approximately 450,000 tonnes [11], have the potential to achieve an impressive reduction of 2.25 million tonnes of CO2 emissions annually by transitioning to QRR systems [12].
  • 市場研究表明,未來十年需要增加100萬噸的金屬硅產能,這加劇了碳排放問題 [5]。通過使用 QRR 系統僅滿足 25% 的需求,全球 CO2 每年可以減少125萬噸的排放,相當於每年將278,163輛汽油動力乘用車從道路上移走 [6],佔加拿大一年內生產的汽車的50%以上。
  • 加拿大每年的硅金屬產量約爲50,000噸 [7],通過採用QRR系統,每年的碳排放量可以顯著減少20.6萬噸 [8]。
  • 美國的金屬硅年產量約爲31萬噸 [9],用QRR系統取代舊的傳統工廠可以大幅減少155萬噸二氧化碳2 每年的排放量 [10]。
  • 歐洲國家的金屬硅年產量約爲45萬噸 [11],有可能大幅減少225萬噸二氧化碳2 過渡到 QRR 系統每年產生的排放 [12]。

These figures, not including the QRR carbon credit potential, highlight the significant environmental impact that can be realized by implementing QRR systems in these key markets.

這些數字,不包括QRR碳信用潛力,凸顯了在這些關鍵市場實施QRR系統可以實現的重大環境影響。

Quantifying the Economic Impact of the QRR: A Zero CO2 Emission Process

量化 QRR 的經濟影響:零二氧化碳2 排放過程

Silicon metal manufacturing incurs significant carbon taxes in numerous markets, calculated based on the per-tonne price of CO2 emissions. The deployment of each 2,500t/y system utilizing the innovative and proprietary design of the QRR process, along with the recently acquired Intellectual Property (IP) from PyroGenesis, will result in substantial cost savings.

根據每噸一氧化碳的價格計算,金屬硅製造業在許多市場都需要繳納大量的碳稅2 排放。利用QRR工藝的創新和專有設計,以及最近從PyroGenesis收購的知識產權(IP),部署每套2500噸/年的系統將節省大量成本。

HPQ management has calculated the Net Present Values of carbon tax savings for each 2,500t/y system over a 25-year period to estimate the potential cost savings. This analysis considers a projected 5% compounded increase in the carbon tax and applies discount rates of 7.5%, 10%, and 12%. The results provide an order of magnitude for the potential financial benefits in different markets.

HPQ管理層計算了25年內每個2500噸/年碳稅節省的淨現值,以估計潛在的成本節約。該分析考慮了碳稅的預計複合增長5%,並適用7.5%、10%和12%的折扣率。這些結果爲不同市場的潛在財務收益提供了一個數量級。

  • For a Quebec-based operation, with a carbon tax of $27 per tonne of CO2 emissions [13], the Net Present Values of potential savings range from $4 million (12% discount rate) to $6.5 million (7.5% discount rate).
  • In a ROC (Rest of Canada) based operation, with a carbon tax of $50 per tonne of CO2 emissions [14], the Net Present Values of potential savings range from $5.1 million (12% discount rate) to $8.5 million (7.5% discount rate).
  • For a European-based operation, with a carbon tax of 90 € ( C$126) per tonne of CO2 emissions [15], the Net Present Values of potential savings range from 9.3 million € (or C$13 million) (12% discount rate) to 15.3 million € € (or C$21 million) (7.5% discount rate).
  • 對於總部位於魁北克的企業,每噸一氧化碳徵收27美元的碳稅2 排放 [13],潛在節省的淨現值從400萬美元(折扣率爲12%)到650萬美元(折扣率爲7.5%)不等。
  • 在以ROC(加拿大其他地區)爲基地的業務中,每噸一氧化碳徵收50美元的碳稅2 排放 [14],潛在節省的淨現值從510萬美元(折扣率爲12%)到850萬美元(折扣率爲7.5%)不等。
  • 對於以歐洲爲基地的企業,每噸一氧化碳徵收90歐元(126加元)的碳稅2 排放 [15],潛在節省的淨現值從930萬歐元(或1300萬加元)(折扣率爲12%)到1,530萬歐元(或2100萬加元)(折扣率7.5%)不等。

These significant potential carbon tax savings highlight the substantial financial advantages and environmental benefits of adopting the QRR, a Zero CO2 Emission Process, in these markets.

這些可觀的碳稅節省潛力凸顯了在這些市場採用QRR(零二氧化碳排放工藝)所帶來的巨大財務優勢和環境效益。

HPQ Acquisition of New Intellectual Property From PyroGenesis

HPQ 收購新的 PyroGenesis 的知識產權

HPQ has acquired a new intellectual property from PyroGenesis for $3,600,000. This significant IP pertains to a "Low Carbon Emission Process for the production of Silicon," which holds the potential to achieve zero CO2 emissions and introduce a circular carbon usage approach through carbon recycling. By incorporating this IP, HPQ strengthens its QRR patent portfolio and gains a unique competitive advantage over traditional silicon metal manufacturers.

HPQ以360萬美元的價格從PyroGenesis手中收購了新的知識產權。這一重要知識產權涉及 “生產硅的低碳排放工藝”,該工藝有可能實現零二氧化碳2 排放,並通過碳回收引入循環碳使用方法。通過整合該IP,HPQ增強了其QRR專利組合,並獲得了與傳統金屬硅製造商相比的獨特競爭優勢。

Under the agreement, the parties are currently negotiating a complementary agreement focusing on the research and development phases necessary for implementing this IP. This collaboration will propel HPQ's capabilities in implementing the low carbon emission process, further solidifying its position as an industry leader in sustainable silicon production and PyroGenesis' position as a world leader in innovative industrial technologies.

根據該協議,雙方目前正在談判一項補充協議,重點是實施該知識產權所必需的研發階段。此次合作將推動HPQ實施低碳排放工藝的能力,進一步鞏固其作爲可持續硅生產行業領導者的地位以及PyroGenesis作爲創新工業技術全球領導者的地位。

SOURCE

來源

  1. Gudrun Saevarsdottir, Thordur Magnusson & Halvor Kvande. (2021) Reducing the Carbon Footprint: Primary Production of Aluminum and Silicon with Changing Energy Systems. Journal of Sustainable Metallurgy, 7, 846-857.
  2. Bernstein L, Roy J, Delhotal KC, Harnisch J, Matsuhashi R, Price L, Tanaka K, Worrell E, Yamba F, Fengqi Z (2007) Industry. In: Climate change 2007: Mitigation. Contribution of working group III to the fourth assessment report of the intergovernmental panel on climate change. Cambridge University Press, Cambridge, UK and New York, USA
  3. FerroQuébec Inc. Empreinte carbone du silicium métal, Usine de Port-Cartier, Rapport d'empreinte carbone, 25 mars 2015, Ernst & Young, Groupe – Changements climatique et développement durable.
  4. Since the report listed under point [3] is related to a Quebec based operations, management used the life cycle carbon footprint numbers found in table 5.2 on page 30 of the Ernst & Young report and from TM-2016-708 on the QRR Carbon footprint to calculate two different reference scenarios that would incorporate the effect of the QRR CO(g) capture capability. Under HPQ reference scenario #1, (using FerroQuebec data with a carbon capture efficiency of 95%) HPQ could generate a carbon credit of 2.6 tCO2/t product basis. Under HPQ reference scenario #2, (using the information from PyroGenesis TM-2016-708 on the QRR Carbon footprint, with a carbon capture efficiency of 95%) HPQ could generate a carbon credit of 1.5 tCO2/t product basis.
  5. Data compiled from information found in the presentations made by CRU International Limited ("CRU"), a world leading metal market research firm, during their Silicon Market Outlook conferences of November 2018, November 2020, and October 2022.
  6. The 1.25 M t in annual CO2 emission reduction was calculated by management which took 25% of 1 M t of additional demand of Silicon described under point [5] and multiplied it by 5, which is the quantity of CO2 emissions per t of silicon produced described under point [1]. (250,000 t * 5). The estimate of the equivalent number of ICE passenger vehicles reduced from the roads was calculated by using the EPA Greenhouse Gas Equivalencies Calculator.
  7. Data for silicon production in Canada from the web site
  8. Annual reduction of CO2emissions for Canada was calculated by management at 206,000 t by multiplying the 50K t of annual production by 4.12, the CO2emission number for Canada as per the information found in the report described under point [3].
  9. Data for silicon production in United States from the web site
  10. Annual reduction of CO2emissions for United States was calculated by management at 1.55 M t by multiplying the 310K t of annual production by 5.
  11. Data for silicon production in Europe extracted from the following quote from CRU analyst Jorn de Linde that estimates that Europe accounts for 13%-15% of global silicon production, or about 3 million tonnes.
  12. Annual reduction of CO2emissions for Europe was calculated by management at 1.55 M t by multiplying the 410K t of annual production by 5.
  13. Quebec Government: The Carbon Market: Auctions
  14. Government of Canada: The Federal Carbon polluting pricing benchmark
  15. The Wall Street Journal article, April 18, 2023, "World's First Carbon Import Tax Approved by EU Lawmakers"
  1. Gudrun Saevarsdottir、Thordur Magnusson & Halvor Kvande。(2021)減少碳足跡:隨着能源系統的變化,鋁和硅的初級生產。 可持續冶金學報7,846-857。
  2. Bernstein L、Roy J、Delhotal KC、Harnisch J、Matsuhashi R、Price L、Tanaka K、Worrell E、Yamba F、Fengqi Z (2007) Industry。載於:《2007年氣候變化:緩解》。第三工作組對政府間氣候變化專門委員會第四次評估報告的貢獻。劍橋大學出版社,英國劍橋和美國紐約
  3. Ferroquebec Inc. Empreinte carbone du Silicium metal,卡地亞工廠,Rapport d'empreinte carbone,2015 年 3 月 25 日,安永會計師事務所,Groupe — Changements carbone 和耐用發展。
  4. 由於第 [3] 點下列出的報告與位於魁北克的運營有關,因此管理層使用安永會計師事務所報告第30頁表5.2和QRR碳足跡的 TM-2016-708 中的生命週期碳足跡數字來計算兩種不同的參考情景,這些情景將納入QRR CO (g) 捕獲能力的影響。在 HPQ 參考情景 ****1 下,(使用碳捕集效率爲 95% 的 FerroQuebec 數據)HPQ 可以產生 2.6 tCo 的碳信用額2/t 產品基礎。在 HPQ 參考情景 ****2 下,(使用 PyroGenesis TM-2016-708 中關於 QRR 碳足跡的信息,碳捕集效率爲 95%)HPQ 可以產生 1.5 tCo 的碳信用額度2/t 產品基礎。
  5. 數據彙編自世界領先的金屬市場研究公司CRU International Limited(“CRU”)在2018年11月、2020年11月和2022年10月的《硅市場展望》會議上發表的演講中的信息。
  6. 每年減少的125萬噸二氧化碳排放量是由管理層計算得出的,管理層從第 [5] 點所述的100萬噸額外硅需求中提取了25%,然後乘以5,即第 [1] 點所述每生產一噸硅的二氧化碳排放量。(25萬噸* 5)。使用美國環保局溫室氣體當量計算器計算了從道路上減少的等效ICE乘用車數量的估計值。
  7. 來自網站的加拿大硅產量數據
  8. 每年減少一氧化碳2加拿大的排放量是管理層計算得出的,爲20.6萬噸,將年產量5萬噸乘以4.12,CO2根據第 [3] 點所述報告中提供的信息,加拿大的排放量。
  9. 來自網站的美國硅產量數據
  10. 每年減少一氧化碳2管理層將310萬噸的年產量乘以5,計算出美國的排放量爲155萬噸。
  11. 歐洲硅產量數據摘自CRU分析師Jorn de Linde的以下引文,該引述估計,歐洲佔全球硅產量的13%-15%,約合300萬噸。
  12. 每年減少一氧化碳2管理層將41萬噸的年產量乘以5,計算出歐洲的排放量爲155萬噸。
  13. 魁北克政府:碳市場:拍賣
  14. 加拿大政府:聯邦碳污染定價基準
  15. 《華爾街日報》的文章,2023年4月18日,”歐盟立法者批准的世界上第一個碳進口稅”

About PyroGenesis Canada Inc.

關於 PyroGenesis 加拿大公司

PyroGenesis Canada Inc., a high-tech company, is a leader in the design, development, manufacture and commercialization of advanced plasma processes and sustainable solutions which reduce greenhouse gases (GHG) and are economically attractive alternatives to conventional "dirty" processes. PyroGenesis has created proprietary, patented, and advanced plasma technologies that are being vetted and adopted by multiple multibillion dollar industry leaders in three massive markets: iron ore pelletization, aluminum, waste management, and additive manufacturing. With a team of experienced engineers, scientists and technicians working out of its Montreal office, and its 3,800 m2and 2,940 m2R&D and manufacturing facilities, PyroGenesis maintains its competitive advantage by remaining at the forefront of technology development and commercialization. The operations are ISO 9001:2015 and AS9100D certified, having been ISO certified since 1997. For more information, please visit:

PyroGenesis Canada Inc. 是一家高科技公司,在先進等離子體工藝和可持續解決方案的設計、開發、製造和商業化方面處於領先地位,這些工藝和解決方案可減少溫室氣體 (GHG),是傳統 “骯髒” 工藝具有經濟吸引力的替代方案。PyroGenesis創造了專有、專利和先進的等離子體技術,這些技術正在三個龐大的市場(鐵礦石造粒、鋁、廢物管理和增材製造)中被多家價值數十億美元的行業領導者審查和採用。擁有一支由經驗豐富的工程師、科學家和技術人員組成的團隊,在蒙特利爾辦公室及其3,800米的辦公場所工作2還有 2,940 m2在研發和製造設施中,PyroGenesis一直處於技術開發和商業化的最前沿,從而保持其競爭優勢。這些運營已獲得 ISO 9001:2015 和 AS9100D 認證,自 1997 年以來一直獲得 ISO 認證。欲瞭解更多信息,請訪問:

About HPQ Silicon

關於 HPQ Silicon

HPQ Silicon Inc. (TSX-V: HPQ) is a Quebec-based TSX Venture Exchange Tier 1 Industrial Issuer.

HPQ Silicon Inc.TSX-V: HPQ) 是一家總部位於魁北克的多倫多證券交易所風險交易所一級工業發行人。

HPQ is developing, with the support of world-class technology partners PyroGenesis Canada Inc. (TSX: PYR) (NASDAQ: PYR) and NOVACIUM SAS, new green processes crucial to make the critical materials needed to reach net zero emissions.

在世界一流的技術合作夥伴的支持下,HPQ 正在發展 PyroGenesis 加拿大有限公司 TSX:PYR)納斯達克:PYR) 還有NOVACIUM SAS,新的綠色工藝對於製造實現淨零排放所需的關鍵材料至關重要。

HPQ activities are centred around the following five (5) pillars:

HPQ 活動圍繞以下五 (5) 個支柱展開:

1) Becoming the only Zero CO2Emission, low-cost (Capex and Opex) producer of High Purity Silicon (2N+ to 4N) using our proprietary PUREVAPTM"Quartz Reduction Reactors" (QRR) being developed by PyroGenesis.

1) 成爲唯一的零二氧化碳2排放,使用我們專有的高純度硅(2N+ 到 4N)的低成本(資本支出和運營支出)生產商 PUREVAPTM“石英還原反應器” (QRR) 由 PyroGenesis 開發。

2) Becoming a producer of micron size High Purity Silicon (3N & 4N) powders for high value applications.

2) 成爲用於高價值應用的微米級高純度硅(3N 和 4N)粉末的生產商。

3) Working to become the first producer of nano silicon materials from High Purity Silicon chunks using our proprietary PUREVAPTMNano Silicon Reactor (NSiR) being developed by PyroGenesis.

3) 努力成爲第一家使用我們的專有技術從高純度硅塊生產納米硅材料的生產商 PUREVAPTM納米硅反應器 (nSiR)) 由 PyroGenesis 開發。

4) Becoming a green low-cost (Capex and Opex) producer of Fumed Silica using our proprietary FUMED SILICA REACTOR being developed by PyroGenesis.

4) 使用我們的專有技術,成爲氣相二氧化硅的綠色低成本(資本支出和運營支出)生產商 氣相二氧化硅反應器 由 PyroGenesis 開發。

5) Developing a small and compact process for the on-demand production of green hydrogen via hydrolysis of Silicon and other materials, in cooperation with Novacium SAS.

5) 與Novacium SAS合作,開發一種小巧緊湊的工藝,通過硅和其他材料的水解按需生產綠色氫氣。

For more information, please visit HPQ Silicon web site.

欲瞭解更多信息,請訪問 HPQ Silicon 網站

Disclaimers:

免責聲明:

This press release contains certain forward-looking statements, including, without limitation, statements containing the words "may", "plan", "will", "estimate", "continue", "anticipate", "intend", "expect", "in the process" and other similar expressions which constitute "forward-looking information" within the meaning of applicable securities laws. Forward-looking statements reflect the Company's current expectation and assumptions and are subject to a number of risks and uncertainties that could cause actual results to differ materially from those anticipated. These forward-looking statements involve risks and uncertainties including, but not limited to, our expectations regarding the acceptance of our products by the market, our strategy to develop new products and enhance the capabilities of existing products, our strategy with respect to research and development, the impact of competitive products and pricing, new product development, and uncertainties related to the regulatory approval process. Such statements reflect the current views of the Company with respect to future events and are subject to certain risks and uncertainties and other risks detailed from time-to-time in the Company's ongoing filings with the security's regulatory authorities, which filings can be found at . Actual results, events, and performance may differ materially. Readers are cautioned not to place undue reliance on these forward-looking statements. An investment in the Company is speculative due to the nature of its business. The ability of the Company to carry out its plans depends on obtaining the required capital. Investors must rely upon the ability, expertise, judgment, discretion, integrity and good faith of the management and Board of the Company. The Company undertakes no obligation to publicly update or revise any forward-looking statements either as a result of new information, future events or otherwise, except as required by applicable securities laws.

本新聞稿包含某些前瞻性陳述,包括但不限於包含 “可能”、“計劃”、“將”、“估計”、“繼續”、“預期”、“打算”、“期望”、“進行中” 等詞語的陳述,以及其他構成適用證券法所指的 “前瞻性信息” 的類似表達。前瞻性陳述反映了公司當前的預期和假設,並存在許多風險和不確定性,這些風險和不確定性可能會導致實際業績與預期存在重大差異。這些前瞻性陳述涉及風險和不確定性,包括但不限於我們對市場接受我們產品的預期、我們開發新產品和增強現有產品能力的戰略、我們的研發戰略、競爭產品和定價的影響、新產品開發以及與監管批准程序相關的不確定性。此類陳述反映了公司當前對未來事件的看法,並受某些風險和不確定性以及其他風險的影響,這些風險和不確定性以及公司正在向證券監管機構提交的文件中不時詳述,這些文件可在以下網址找到。實際結果、事件和表現可能存在重大差異。提醒讀者不要過分依賴這些前瞻性陳述。由於公司的業務性質,對該公司的投資是投機性的。公司執行其計劃的能力取決於獲得所需的資金。投資者必須依靠公司管理層和董事會的能力、專業知識、判斷力、自由裁量權、誠信和誠信。除非適用的證券法要求,否則公司沒有義務因新信息、未來事件或其他原因公開更新或修改任何前瞻性陳述。

Neither the TSX Venture Exchange nor its Regulation Services Provider (as that term is defined in the policies of the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this release.

多倫多證券交易所風險投資交易所及其監管服務提供商(該術語在多倫多證券交易所風險投資交易所的政策中定義)均不對本新聞稿的充分性或準確性承擔責任。

This News Release is available on the company's CEO Verified Discussion Forum, a moderated social media platform that enables civilized discussion and Q&A between Management and Shareholders.

本新聞稿可在公司的網站上查閱 首席執行官認證討論論壇,一個經審覈的社交媒體平臺,允許管理層和股東之間進行文明的討論和問答。

Source: HPQ Silicon Inc.
For further information contact:
Bernard J. Tourillon, Chairman, President, and CEO Tel +1 (514) 846-3271
Patrick Levasseur, Director Tel: +1 (514) 262-9239
Email: Info@hpqsilicon.com

來源: HPQ Silicon Inc.
欲瞭解更多信息,請聯繫:
Bernard J. Tourilon,董事長、總裁兼首席執行官電話 +1 (514) 846-3271
Patrick Levasseur,導演電話:+1 (514) 262-9239
電子郵件: Info@hpqsilicon.com


声明:本內容僅用作提供資訊及教育之目的,不構成對任何特定投資或投資策略的推薦或認可。 更多信息
    搶先評論