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EPC Energy Technology Showcases Green Energy Solutions at China's Oil and Petrochemical Technology I

2023-11-27

Recently, EPC Energy Technology was honored to attend the China Oil and Petrochemical Technology Innovation Conference, a grand event focusing on the cutting-edge technology in the oil and petrochemical industry. The core topics of the conference included technological research and development, key technological breakthroughs, construction of technology innovation platforms, innovation in scientific and technological management systems, transformation and large-scale application of new technological achievements, digital transformation of the industry, and green and low-carbon development. The event attracted many industry experts and corporate representatives for in-depth exchanges and discussions.

As a company dedicated to green energy solutions, EPC Energy Technology showcased its latest achievements in PEM/AEM electrolysis hydrogen production, 3D structured microfluidics/microreactors/heat exchangers at the conference. These innovative technologies not only represent the company's deep exploration in sustainable energy solutions but also demonstrate its commitment to environmental protection and green development.

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EPC Energy Technology offers PEM (Proton Exchange Membrane) hydrogen production and AEM (Alkaline Exchange Membrane) hydrogen production, the two most advanced water electrolysis hydrogen production technologies. Each has its unique features and application areas.

Features and Application Areas of PEM Hydrogen Production:

1. High Efficiency: PEM hydrogen production uses proton exchange membranes as electrolytes, efficiently decomposing water into hydrogen and oxygen.

2. Pure Hydrogen Output: Due to the excellent sealing performance of PEM electrolyzers, they can produce high-purity hydrogen.

3. High Power Density: PEM hydrogen production systems can operate at higher current densities, suitable for large-scale commercial production.

4. Application Areas: PEM hydrogen production technology is widely used in industrial hydrogen production, energy storage, fuel cell vehicle hydrogenation stations, and other fields.

Features and Application Areas of AEM Hydrogen Production:

1. Cost-Effectiveness: Compared to PEM, AEM hydrogen production uses cheaper electrolytes and electrocatalysts, reducing hydrogen production costs.

2. Environmental Friendliness: AEM hydrogen production uses an alkaline environment, with lower corrosiveness to materials, benefiting environmental protection.

3. Compatibility: AEM technology is compatible with existing alkaline electrolysis equipment, facilitating technological transformation.

4. Application Areas: AEM hydrogen production is suitable for medium and small-scale hydrogen production, such as in the chemical industry, food processing, power balancing, and renewable energy storage.

By using clean electricity (such as wind or solar energy) for water electrolysis through PEM/AEM technology, hydrogen is produced. This process generates no byproducts other than oxygen and hydrogen, which is extremely environmentally friendly. The entire process produces almost no carbon emissions, thereby producing green hydrogen. In contrast, traditional hydrogen production methods, such as grey hydrogen and blue hydrogen, usually rely on fossil fuels, generating significant carbon emissions during production. Green hydrogen produced using PEM/AEM technology can store excess renewable energy, helping to solve the intermittency issues of wind and solar energy, and improving the flexibility and stability of the entire energy system. With technological advancements and cost reductions, green hydrogen is expected to become a key element in the global energy structure transformation.

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At the conference, EPC Energy Technology's display attracted widespread attention from participants. Its products and technologies not only provide clean energy but also offer practical solutions for the green transformation of the oil and petrochemical industry. This not only reflects the company's status as a leader in technological innovation but also highlights its important role in promoting green and low-carbon development in the industry.

EPC Energy Technology also showcased another corporate R&D achievement: 3D structured microreactors/heat exchangers. Using high-throughput, high-efficiency 3D structured products, their advanced technology can improve efficiency and performance in chemical and physical processes, thereby helping to reduce energy consumption and environmental impact.

1. Improved Reaction Efficiency: The 3D structure increases the reaction surface area, enhancing the efficiency of chemical reactions or heat exchange. This means that the same reactions can be achieved at lower temperatures and pressures, reducing energy consumption.

2. Reduced Byproducts and Waste: The 3D structured microreactor, with its precise fluid dynamics control, can reduce the generation of unnecessary byproducts, thereby lowering waste treatment costs and environmental pollution.

3. Optimized Process Control: The 3D structured microreactor provides more precise process control, aiding in the realization of more environmentally friendly and sustainable production processes.

The application of 3D structured microreactors and heat exchangers can significantly improve the energy efficiency and environmental friendliness of industrial processes, playing an important role in the green energy.

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EPC Energy Technology has established deep cooperative relationships with well-known domestic universities, such as Tsinghua University and Fudan University. These collaborations have not only accelerated the development and application of new technologies but also helped the company achieve significant accomplishments in technological innovation. Through these partnerships, EPC Energy Technology has been able to more effectively reduce its carbon footprint, contributing to the achievement of global sustainable development goals.


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