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东升杯 | 氢能分赛区第三场路演来袭!

2021年9月30日 19:00 ~ 2021年9月30日 21:30
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          “东升杯”国际创业大赛通过链接全球优质创新资源,聚合全球创新节点,旨在打造由单点突破转向多要素协同的全球创新生态。以全新的生态服务体系深度赋能,促进项目孵化落地。为全球创新创业新动能持续提供汇聚尖端优势和科技支持的创新平台。

        The "Dongsheng Cup" International Entrepreneurship Competition aims to create a global innovation ecosystem that shifts from single-point breakthroughs to multi-factor collaboration by linking high-quality global innovation resources and aggregating global innovation nodes. In-depth empowerment with a brand-new ecological service system to promote the incubation of projects. Continue to provide an innovation platform that gathers cutting-edge advantages and technological support for global innovation and entrepreneurship.


           2021 第九届“东升杯”国际创业大赛·氢能分赛区第三场复赛拉开帷幕,经过专业评委嘉宾的初审,来自国内外优质项目成功入围,将进行线上路演

        The third round of the Hydrogen Division of the 2021 9th "Dongsheng Cup" International Entrepreneurship Competition has kicked off. After the preliminary review by professional judges and guests, high-quality projects from home and abroad have successfully entered and will conduct online roadshows.


    路演时间:2021年9月30日19:00

    Time: 7:00 pm on September 10th,2021

    项目简介

    PROJECT INTRODUCTION 

    ●●● 氢燃料电池研发&制造项目 ●●●

    Hydrogen Fuel Cell R&D & Manufacturing Project

    (中国 China)

    该项目以车载氢能源燃料电池电堆关键技术研发制造为切入口,构建覆盖“海陆空”应用场景为一体的燃料电池技术、产品、服务标准体系。通过标准产品规模化、个性方案定制化、产业链上下游金融化,三位一体模式实现卡脖子技术国产化,为动力系统厂商技术赋能,为整车厂有能源动力需求的客户提供最有吸引力的燃料电池解决方案与产品。

    Starting with with the research, development and manufacturing of key technologies for vehicle-mounted hydrogen fuel cell stack as an entry point, this project established a standard system covering "sea, land and air" application scenarios with a fuel cell technology, product and services. Through standard product scaling, personalised solution customisation, industry chain upstream and downstream financialisation, this trinity model will address the bottleneck around chinese-made technology, emopwer system manufacturers, to provide the most attractive fuel cell solutions and products fr a Genergyy and power needs of customers.

    ●●● 燃料电池研发与产业化●●●

    Fuel Cell R&D and Industrialisation

    (中国 China)

    该项目专注于自主知识产权燃料电池研发与产业化。主营业务涵盖车用燃料电池电堆定制开发、电堆销售、其他电堆技术服务等。项目致力于将具备自主知识产权的国产高可靠性低成本车用燃料电池产品不断推向市场,并在此基础上拓展到备用电源、固定电站、船舶、飞行器等应用领域。

    The project focuses on the R&D and Industrialization of fuel cells with independent intellectual property rights.  The main business covers customized development, sales and other technical services for automotive fuel cell reactors.  The project is committed to continuously introducing domestic high reliability and low cost automotive fuel cell products with independent intellectual property rights to the market, and on this basis, expanding to standby power supply, fixed power station, ships, aircraft and other applications.

    ●●● 第三代功率半导体SiC模块 ●●●

    Third Generation Power Semiconductor SiC Module

    (中国 China)

    该项目专注于SiC和IGBT等功率半导体的模块设计、生产、销售。使用先进的封装材料及封装技术,为控制器的小型化、轻量化和高效化,提供完整的模块应用解决方案,尤其是新开发的第三代功率半导体SiC模块产品采用的是高性价比的单面塑封水冷结构,相比业内其他公司的双面水冷结构等产品,无论从性能和成本上均有较大程度的优势,封装技术在全球属于领先水平,同时也将成为最早一批量产的SiC模块产品。

    The project focuses the design, production, sale of SiC, IGBT and other power semiconductor modules.  An advanced packaging materials and packaging technology is used. Full module application solutions are created for the miniaturisation, weight reduction and high efficiency of the controller, especially the new development of the third generation of the SiC module, adopting power semiconductors , and cost-effective single plastic sealed water-cooling structure. Compared to other company's products in the industry, such as double water-cooling structure,  both in terms of performance and cost, the packaging technology is at a world-leading level, and will be the first batch of SiC module products. 

    ●●● 金属有机骨架 ●●●

    Metal Organic Framework

    (中国 China)

    金属有机骨架(MOF)材料,是一类具有周期性多维网络结构的新型多孔晶态材料,由金属离子或金属簇单元与有机配体通过配位作用自组装形成,具有比表面积大、孔隙率高、孔径可调、化学可修饰性及结构组成多样性等诸多特点。其比表面是几千至一万,相比于分子筛几百的比表面,吸附分离效率十倍以上,可以大规模降低PSA吸附塔的体积。此外,MOF也可以作为储氢、催化材料,具有广阔的应用前景。

    Metal Organic Framework(MOF), is a cyclical multidimensional network structure of new porous crystalline materials, formed by metal ions or metal cluster units with self-assembling with organic ligands. They have a large specific surface area, high porosity, adjustable pore sizes,are chemically modifiable, structurally diverse, and many other features.  Their specific surface is several thousand to ten thousand. Compared with the specific surface of molecular sieve, the adsorption and separation efficiency is more than ten fold, which can reduce the volume of PSA adsorption tower on a large scale.  In addition, MOF can also be used as hydrogen storage and catalytic materials, which has broad application prospects.  

    ●●● 用于燃料电池系统的高速涡轮增压器 ●●●

    High Speed Turbo Machines for Fuel Cell Systems

    (德国 Germany)

    该项目是专门为燃料电池市场开发和制造的。 燃料电池直接驱动涡轮压缩机采用空气轴承,无油,专为燃料电池的特殊需要而设计。高速技术拥有许多优势,比如最小尺寸, 轻量化和最优过程控制。它和空气动力轴承一起为进一步发展和产品,特别是在燃料电池区域,打下了基础。

    The turbo compressors from 3W Turbo are specially developed and manufactured for the fuel cell market.The directly driven turbo compressors for fuel cells are with air bearings, oil-free and designed for the special needs of the fuel cell. The high-speed technology offers a number of advantages, such as minimum size, low weight and optimal process control.  Together with the aerodynamic bearing, it provides the basis for further developments and products, especially in the fuel cell area.

    ●●● 固体氢物流生态系统 ●●●

    Solid Hydrogen Logistics Ecosystem

    (马来西亚 Malaysia)

    该项目技术可以使固体化学原料快速、高效地释放氢气,这项技术正在申请多国专利。其中固体化学原料中的硼氢化钠(NaBH4)能量密集、不易燃、不爆炸,可在常温下无进行储存,从而运输时更加安全,成本效益更高,基础设施更轻。该项目通过解决氢在整个供应链上“物理”问题,让替代化石燃料的“绿色能源分子”氢气的全部潜力最终得以释放。固体H2容易存储,可以不再依赖昂贵的传输/存储基础设施直接运往全球终端用户。

    Galaxy FCT is a hydrogen technology company with a patented process (worldwide pending) which enables RAPID and EFFICIENT release of H2 gas from a solid chemical feedstock.  Sodium Borohydride (NaBH4) is energy dense, non-flammable, non-explosive, and it can be stored at ambient temperature without pressure.  This makes logistics safe, cost-effective and infrastructure light.  With the ability to bypass the need to “fight the physics” of Hydrogen across the entire supply chain, the full potential of H2 as the “green energy molecule” to substitute fossil fuels globally can be finally unleashed.As Solid H2 can be easily stored and shipped directly to end users globally, there is no longer dependence on expensive transmission/storage infrastructure.

    ●●● 用于氢能的含钯膜开发 ●●●

    Development of Palladium-containing Membranes 

    for Hydrogen Energy

    (俄罗斯 Russia)

    该项目开发的技术是MOCVD应用的新版本,具有广泛的优势,如涂层的质量更高,消耗更低,氢释放率更高,涂层的耐久性更好,提升了效率等。该技术可以在一个周期内形成涂层,同时让生产商能够更精确地控制成分和结构。

    Technology developed by Membrana NC is a new version of the MOCVD process usage, having a wide range of advantages, such as the quality of the coating, low consumption, higher rates for the release of hydrogen, durability of the coating, extended span of efficiency etc. Company's technology provides the formation of coatings in a single cycle, while giving the producers precise control over the composition and structure.

    ●●● 基于毛细管基质的储氢技术 ●●●

    Hydrogen Storage Based on Capillary Matrix

    (俄罗斯 Russia)

    该项目是一种使用玻璃毛细管安全移动储存氢气和其他压缩气体的创新技术。结果表明,强玻璃制成的多毛细管容器是现有钢瓶和复合气瓶的实用替代品。薄(小于500微米)毛细管的玻璃强度是钢强度的几倍。因为在多毛细管体系中,储存氢气的总体积会被划分为与毛细管数量相对应的大量的小体积,因此由于容器损坏而突然释放大量危险气体的概率将大大降低,让储存高度压缩气体变得更加安全。

    The project has developed the innovative technology of safe mobile storage of hydrogen and other compressed gases in glass capillaries.It is demonstrated that multi-capillary vessels made of strong glasses represent the practical alternative to existing steel and composite gas cylinders.Glass strength of thin (less than 500 micrometers) capillaries is several times higher than strength of steel.Total volume of stored hydrogen is divided to a great number of small volumes corresponding to the number of capillaries in the multi-capillary system. Therefore, the probability of sudden release of dangerous amount of gas due to the destruction of the vessel is significantly reduced, making the storage of highly compressed gases more safe.

    ●●● 低成本环保水电解制氢方法 ●●●

    Low-cost Environmentally Friendly 

    Water Electrolysis Hydrogen Production Method

    (美国 USA)

    该项目专注于开发低成本环保的水电解制氢方法。团队目前有 7 位成员分布在美国和中国,共同研发独创的阴离子交换膜技术。该团队在制造营销工业级 PEM 和碱水制氢方面也拥有丰富经验,从而确保 AEM 商业化成功。目前全球氢气市场供应仍主要通过天然气裂解。该项目的目标是开发出工业级 AEM全套系统,该系统具有与传统碱水制氢相同的成本,运行时却能达到 PEM 性能,从而极大降低电解成本,改变氢气市场未来格局。

    GREENDROGEN is a startup located in Boca Raton, Florida with a focus on developing and scaling up a low-cost and environmentally friendly way to produce green hydrogen with water electrolyzers. The team currently has 7 people located in United States and in China, who have worked together in developing our proprietary AEM (Anion Exchange Membrane) technology. The team also has abundant experience in manufacturing and selling industrial scale PEM and alkaline electrolyzers to ensure a commercial success of our AEM technology. Currently the global hydrogen market is mainly being served by cracking natural gas through Steam Reforming. GREENDROGEN’s goal is to develop industrial scale AEM electrolyzers, which has a same low capital cost as traditional alkaline systems but can run with performance comparable to PEM. Our innovated technology will greatly reduce the cost of Hydrogen produced via electrolysis, and will change the hydrogen landscape in near future.


    - 指导单位 -

    北京市人力资源和社会保障局

    北京市科学技术委员会

    中关村科技园区管理委员会

    北京市海淀区人民政府

    中关村科学城管理委员会


    - 主办单位 -

    北京市毕业生就业服务中心

    海淀区人力资源和社会保障局

    中关村东升科技园管理管委会


    - 承办单位 -

    北京东升博展投资管理有限公司


    - 策划/执行单位 -

    北京东升科技企业加速器有限公司


    -协办单位 - 



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