AEM模块化制氢系统

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亿纬氢能 AEM 产品获欧盟CE认证
势银能链· 2025-07-12 02:29
Core Viewpoint - EVE Hydrogen Energy Co., Ltd. has achieved a significant milestone by obtaining CE certification for its AEM modular hydrogen production system, marking it as the first Chinese company to receive this certification, which enhances its competitiveness in the international hydrogen energy market [4][11][14]. Group 1: CE Certification Achievement - The AEM modular hydrogen production system received CE certification from Bureau Veritas, confirming its compliance with EU standards, including the Machinery Directive 2006/42/EC and Low Voltage Directive 2014/35/EU [11][14]. - This certification signifies that the system's overall safety performance meets EU regulations and demonstrates advanced safety technology capabilities, allowing entry into the European market [11][14]. - The certification process included comprehensive assessments such as HAZOP/LOPA/SIL evaluations, validating the system's excellence in safety, environmental protection, and compliance [14]. Group 2: Technical Specifications and Innovations - The AEM modular hydrogen production system is a highly integrated "hydrogen factory," with a core module size of only 0.45×0.45×0.65m, capable of producing hydrogen at a rate of 1Nm³/h, which can be easily expanded to 20Nm³ [12]. - The system features a self-developed AEM membrane electrode with a low direct current consumption of 4.3 kWh/Nm³, achieving over 30% cost reduction [12]. - The system has rapid startup capabilities, reaching full load in 3 minutes for cold starts and responding in seconds for hot starts, making it adaptable to fluctuations in green electricity [12]. Group 3: Future Developments and Industry Impact - EVE Hydrogen Energy is conducting real-world tests on MW-level electrolyzers and aims to continue technological innovation while accelerating its global expansion [17]. - The company plans to collaborate with upstream and downstream enterprises to build a hydrogen energy industry ecosystem, promote the localization of key materials, and expand hydrogen energy application scenarios [17].