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摘要:由中石油深圳新能源研究院有限公司(简称深圳院)自主研制的首套兆瓦级质子交换膜电解水制氢系统,顺利通过中国合格评定国家认可委员会的测试认证。这标志着中国石油在绿氢制备核心装备自主化、高端化、规模化上取得重要突破。
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中国石油网消息:4月15日,记者获悉,由中石油深圳新能源研究院有限公司(简称深圳院)自主研制的首套兆瓦级质子交换膜电解水制氢系统,顺利通过中国合格评定国家认可委员会的测试认证。这标志着中国石油在绿氢制备核心装备自主化、高端化、规模化上取得重要突破。 China Oil News: On April 15th, it was learned that the first megawatt-level proton exchange membrane electrolysis water hydrogen production system independently developed by the Shenzhen New Energy Research Institute of China National Petroleum Corporation (referred to as the Shenzhen Institute) has successfully passed the testing and certification of the National Accreditation Committee for Conformity Assessment of China. This marks an important breakthrough for China National Petroleum Corporation in the autonomy, high-endization and large-scale production of core equipment for green hydrogen production. 该系统的核心功能是用水制氢。这一技术采用电解水方式,将纯水转化为高纯度氢气,整个过程不产生碳排放,是一种清洁的制氢手段。经权威检测,该装置每小时可制取200标准立方米氢气,氢气纯度达到99.999%,关键性能指标达到行业先进水平。 The core function of this system is to produce hydrogen using water. This technology employs the electrolysis of water to convert pure water into high-purity hydrogen. The entire process does not produce carbon emissions and is a clean method of hydrogen production. After rigorous testing, this device can produce 200 standard cubic meters of hydrogen per hour, with a hydrogen purity of 99.999%, and its key performance indicators reach the advanced level of the industry. 在设计上,该装置采用双集装箱模块化布局,便于运输和现场快速安装,也支持后续灵活扩容。装置还配备了多重安全防护功能,包括氢气泄漏监测、紧急泄压、氮气吹扫等,确保运行安全可靠。 In terms of design, this device adopts a dual-container modular layout, which facilitates transportation and quick on-site installation, and also supports flexible expansion in the future. The device is also equipped with multiple safety protection functions, including hydrogen leakage monitoring, emergency pressure relief, and nitrogen purging, to ensure safe and reliable operation. 该装置适应性强,无论是高寒、风沙环境还是野外移动作业条件,均能稳定运行。其技术特性能够有效适配风能、太阳能等可再生能源发电不稳定的特点。当风光发电充足时,可将富余的绿电转化为氢气储存起来,在一定程度上解决了“弃风、弃光”问题,可为交通、工业等领域提供清洁燃料。 This device has strong adaptability. It can operate stably in high-altitude cold environments, sandy areas, or in mobile operations in the wild. Its technical characteristics can effectively adapt to the unstable characteristics of renewable energy generation such as wind and solar power. When there is sufficient photovoltaic and wind power generation, the surplus green electricity can be converted into hydrogen for storage. To a certain extent, this solves the problem of "discarding wind and light energy", and can provide clean fuels for transportation, industrial and other fields. 从市场应用前景看,该装置可广泛用于风光发电配套制氢、分布式制氢以及高端精细化工用氢等场景。随着各地氢能产业政策陆续落地和规模化生产持续推进,该装置的综合成本有望逐步优化,在交通、工业、能源等领域的应用空间也有望进一步拓展。 From the perspective of market application prospects, this device can be widely used in scenarios such as hydrogen production for photovoltaic power generation and distributed hydrogen production, as well as hydrogen use in high-end fine chemical industries. As various hydrogen energy industry policies are gradually implemented and large-scale production continues to advance, the overall cost of this device is expected to gradually be optimized. Its application space in the fields of transportation, industry, and energy is also expected to be further expanded. |
















