Graphjet Technology Achieves Technological Breakthroughs with Green Graphite Production
Graphjet Technology (Nasdaq:GTI) has achieved significant technological breakthroughs in green graphite production, reaching 99.99% graphite purity and 98.8% graphitization levels. The company's patented technology produces graphite directly from palm kernel shells, achieving the highest purity and graphitization among all biomass graphite production processes. Their facility in Malaysia has an annual capacity of 3,000 metric tons of battery-grade graphite, enough to support approximately 40,000 electric vehicles annually. The process generates only 2.95 kg CO2 emissions per kg of graphite, significantly lower than traditional production methods.
Graphjet Technology (Nasdaq:GTI) ha raggiunto notevoli traguardi tecnologici nella produzione di grafite verde, raggiungendo una purezza della grafite del 99,99% e livelli di grafitizzazione del 98,8%. La tecnologia brevettata dell'azienda produce grafite direttamente da gusci di semi di palma, ottenendo la massima purezza e grafitizzazione tra tutti i processi di produzione di grafite da biomassa. Il loro stabilimento in Malesia ha una capacità annuale di 3.000 tonnellate metriche di grafite di grado batteria, sufficiente a supportare circa 40.000 veicoli elettrici all'anno. Il processo genera solo 2,95 kg di emissioni di CO2 per kg di grafite, notevolmente inferiore rispetto ai metodi di produzione tradizionali.
Graphjet Technology (Nasdaq:GTI) ha logrado avances tecnológicos significativos en la producción de grafito verde, alcanzando una pureza de grafito del 99,99% y niveles de grafitización del 98,8%. La tecnología patentada de la empresa produce grafito directamente de cáscaras de nuez de palma, logrando la mayor pureza y grafitización entre todos los procesos de producción de grafito a partir de biomasa. Su instalación en Malasia tiene una capacidad anual de 3.000 toneladas métricas de grafito de grado para baterías, suficiente para apoyar aproximadamente 40.000 vehículos eléctricos al año. El proceso genera solo 2,95 kg de emisiones de CO2 por kg de grafito, considerablemente menor que los métodos de producción tradicionales.
Graphjet Technology (Nasdaq:GTI)는 녹색 흑연 생산 분야에서 중요한 기술 혁신을 이루었으며, 99.99% 흑연 순도와 98.8% 흑연화 수준에 도달했습니다. 이 회사의 특허 기술은 야자 씨앗 껍질에서 직접 흑연을 생산하며, 모든 바이오매스 흑연 생산 과정 중 가장 높은 순도와 흑연화 수준을 자랑합니다. 말레이시아에 위치한 그들의 시설은 연간 3,000 미터톤의 배터리 등급 흑연을 생산할 수 있는 능력을 가지고 있으며, 이는 매년 약 40,000 대의 전기차를 지원할 수 있는 양입니다. 이 과정에서 발생하는 CO2 배출량은 kg당 2.95 kg으로, 전통적인 생산 방식에 비해 상당히 낮습니다.
Graphjet Technology (Nasdaq:GTI) a réalisé des avancées technologiques significatives dans la production de graphite vert, atteignant une pureté du graphite de 99,99% et des niveaux de graphitisation de 98,8%. La technologie brevetée de l'entreprise produit du graphite directement à partir des coques de noyau de palmier, atteignant la plus haute pureté et graphitisation parmi tous les processus de production de graphite à partir de biomasse. Leur installation en Malaisie a une capacité annuelle de 3.000 tonnes métriques de graphite de qualité batterie, suffisant pour soutenir environ 40.000 véhicules électriques par an. Le processus génère seulement 2,95 kg d'émissions de CO2 par kg de graphite, ce qui est considérablement inférieur aux méthodes de production traditionnelles.
Graphjet Technology (Nasdaq:GTI) hat bedeutende technologische Durchbrüche in der Produktion von grünem Graphit erzielt und eine Graphitreinheit von 99,99% sowie 98,8% Graphitisierung erreicht. Die patentierte Technologie des Unternehmens produziert Graphit direkt aus Palmkerne-Schalen und erzielt die höchste Reinheit und Graphitisierung unter allen Biomasse-Graphitproduktionsprozessen. Ihre Anlage in Malaysia hat eine jährliche Kapazität von 3.000 metrischen Tonnen batterietauglichem Graphit, was ausreichend ist, um jährlich etwa 40.000 Elektrofahrzeuge zu unterstützen. Der Prozess erzeugt nur 2,95 kg CO2-Emissionen pro kg Graphit, was erheblich niedriger ist als bei herkömmlichen Produktionsmethoden.
- Achieved industry-leading 99.99% graphite purity and 98.8% graphitization levels
- Production capacity of 3,000 metric tons annually, sufficient for 40,000 EVs
- Lowest carbon footprint in the industry at 2.95 kg CO2/kg vs 16.8-17 kg CO2/kg for traditional methods
- Successfully commissioned world's first and largest green graphite facility
- None.
Insights
This technological breakthrough represents a significant advancement in sustainable graphite production. Achieving
The production capacity of 3,000 metric tons of battery-grade graphite annually positions GTI as a significant player in the EV supply chain. The reduced carbon footprint of 2.95 kg CO2 per kg of graphite produced, compared to 16.8-17 kg CO2 for traditional methods, offers a compelling environmental value proposition that could attract ESG-focused customers and investors.
The validated high purity and graphitization levels make this graphite suitable for high-value applications in semiconductors and EV batteries, potentially commanding premium pricing in these growing markets.
The environmental metrics here are game-changing for the graphite industry. A
The third-party validation of the technology's performance metrics reduces technology risk and strengthens GTI's market position. The company's location in Malaysia provides strategic advantages in terms of feedstock access and proximity to major battery manufacturers in Asia. This breakthrough could accelerate the adoption of green graphite in the EV supply chain, particularly as automakers face pressure to reduce scope 3 emissions.
Achieved
Technology delivers the highest purity and graphitization of all biomass graphite production processes
KUALA LUMPUR, Malaysia, Dec. 03, 2024 (GLOBE NEWSWIRE) -- Graphjet Technology (“Graphjet” or “the Company”) (Nasdaq:GTI), a leading developer of patented technologies to produce graphite and graphene directly from agricultural waste, today announced that it has achieved key breakthroughs in catalyzing graphitization to produce high quality synthetic graphite with its patented green graphite production technology.
“Graphjet's artificial green graphite, produced from palm-based biomass residues, has been tested by an authoritative third-party agency, resulting in a purity level of
Graphjet’s green graphite technology is the first in the world to produce artificial graphite directly from palm kernel shells, a widely available waste product in Malaysia and Indonesia. Pilot-scale testing has demonstrated that Graphjet’s artificial graphite can achieve purity levels of up to
In addition to the high purity levels achieved, Graphjet’s production technology boasts a
“Throughout Graphjet’s process, our core differentiator is our proprietary catalysts formula, which enables us to cost-effectively produce graphite of the highest quality,” continued Aiden Lee. “Maintaining high temperature graphitization for extended periods requires high-quality equipment to control parameters such as temperature, pressure, time and graphitization gas. These factors are critical in determining the graphitization degree and properties of artificial graphite.”
Graphjet has achieved the highest levels of both purity and graphitization among all biomass graphite production technologies, which further demonstrates its suitability for the production of semiconductors and anode materials for high-performance electric vehicle batteries. Notably, the Company’s technological achievements have been validated by third-party labs in China.
Higher graphitization levels signify a higher percentage of graphite crystal formation within a graphite sample. The graphitization level will depend on key factors during graphitization process such as temperature, pressure, time and graphitization gas.
Artificial graphite with favorable heat conductivity properties, stability and chemical properties can be applied in the production of lithium-ion batteries, graphite electrodes, heat management and high-performance porcelain industries. With the continuous advancement of science and technology, the application fields of artificial graphite will be further expanded and demand will continue to increase. Graphjet’s artificial graphite is a high-performance raw material, and its graphitization degree is an important factor affecting its properties and applications. Graphjet’s high-performance artificial graphite will enable the market to foster breakthrough technologies and new applications, signifying a wider range of applications.
Graphjet recently commissioned the world’s first and largest green graphite facility in Malaysia, with an annual production capacity of up to 3,000 metric tons of battery-grade graphite. This level of production is sufficient to support battery production for approximately 40,000 electric vehicles per year. Per kg of graphite produced, Graphjet’s patented technology produces only 2.95 kg CO2 emissions, compared to 16.8 kg CO2 emissions and 17 kg CO2 emissions from natural and synthetic graphite production, respectively, in China. Graphjet’s technology is expected to have the lowest carbon footprint of any graphite production process in the world.
About Graphjet Technology Sdn. Bhd.
Graphjet Technology Sdn. Bhd. (Nasdaq: GTI) was founded in 2019 in Malaysia as an innovative graphene and graphite producer. Graphjet Technology has the world’s first patented technology to recycle palm kernel shells generated in the production of palm seed oil to produce single layer graphene and artificial graphite. Graphjet’s sustainable production methods utilizing palm kernel shells, a waste agricultural product that is common in Malaysia, will set a new shift in graphite and graphene supply chain of the world. For more information, please visit https://www.graphjettech.com/.
Cautionary Statement Regarding Forward-Looking Statements
The information in this press release contains certain “forward-looking statements” within the meaning of the “safe harbor” provisions of the Private Securities Litigation Reform Act of 1995. These forward-looking statements generally are identified by the words “believe,” “project,” “expect,” “anticipate,” “estimate,” “intend,” “strategy,” “aim,” “future,” “opportunity,” “plan,” “may,” “should,” “will,” “would,” “will be,” “will continue,” “will likely result” and similar expressions, but the absence of these words does not mean that a statement is not forward-looking. Forward-looking statements are predictions, projections and other statements about future events that are based on current expectations and assumptions and, as a result, are subject to risks and uncertainties. Actual results may differ from their expectations, estimates and projections and consequently, you should not rely on these forward-looking statements as predictions of future events. Many factors could cause actual future events to differ materially from the forward-looking statements in this press release, including but not limited to: (i) changes in the markets in which Graphjet competes, including with respect to its competitive landscape, technology evolution or regulatory changes; (ii) the risk that Graphjet will need to raise additional capital to execute its business plans, which may not be available on acceptable terms or at all; (iii) Graphjet is beginning the commercialization of its technology and it may not have an accurate estimate of future capital expenditures and future revenue; (iv) statements regarding Graphjet’s industry and market size; (v) financial condition and performance of Graphjet, including the anticipated benefits, the implied enterprise value, the financial condition, liquidity, results of operations, the products, the expected future performance and market opportunities of Graphjet; (vi) Graphjet’s ability to develop and manufacture its graphene and graphite products; and (vii) those factors discussed in our filings with the SEC. You should carefully consider the foregoing factors and the other risks and uncertainties that will be described in the “Risk Factors” section of the documents to be filed by Graphjet from time to time with the SEC. These filings identify and address other important risks and uncertainties that could cause actual events and results to differ materially from those contained in the forward-looking statements. Forward-looking statements speak only as of the date they are made. Readers are cautioned not to put undue reliance on forward- looking statements, and while Graphjet may elect to update these forward-looking statements at some point in the future, they assume no obligation to update or revise these forward-looking statements, whether as a result of new information, future events or otherwise, unless required by applicable law. Graphjet does not give any assurance that Graphjet will achieve its expectations.
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