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Distributed Hydrogen from MSW derived Synthesis Gas

机译:从城市固体废弃物衍生的合成气中分配氢

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Together with the scientific sector of New Energy Technologies in Austria we have developed a feasibility validated model of Carbon Recycling by leveraging Secondary Resource Efficiency of Organic Wastes. Results proved our proprietary "CARBON CAPTURE for USE [CCU] BIO-REFINERY TECHNOLOGY" to unlock financial self-sufficiency of Waste Management. By integrating several state of the art Technologies from other sectors into the CCU Bio-Refinery a Synthesis Gas Platform can be created, offering multiple downstream Chemical Synthesis Product opportunities. Amongst various Gas to Liquid fuels, organic acids or alcohols also pure Hydrogen or other Hydrogen Compounds could be generated. Such new industrial level plane fields can increase local purchase power through supply of energy from regional closed loop circular economy and mitigate long haul distribution transports. Looking at logistic constraints of MSW Management and distribution challenges in Hydrogen re-fueling infrastructures there may be synergies between the two areas. Since organic residues from MSW are already representing atmospheric Carbon Stock, any fuels derived from them as a secondary resource abates further fossil primary resource import from former ages into our era.
机译:我们与奥地利新能源技术的科学部门一起,通过利用有机废物的二次资源效率,开发了一种经过可行性验证的碳回收模型。结果证明了我们专有的“碳捕集使用[CCU]生物再利用技术”可以帮助您实现废物管理的财务自给自足。通过将来自其他领域的几种最新技术集成到CCU生物炼油厂,可以创建合成气平台,为下游提供许多化学合成产品的机会。在各种气液燃料,有机酸或醇中,也可以生成纯氢或其他氢化合物。这种新的工业级飞机场可以通过区域闭环循环经济的能源供应来增加当地的购买力,并减轻长途运输的负担。考虑到氢气加氢基础设施中生活垃圾管理和配送挑战的后勤制约因素,这两个领域之间可能存在协同作用。由于城市固体废弃物中的有机残留物已经构成了大气中的碳储量,因此从这些废弃物中获取的任何燃料都可以减少其作为次生资源的使用,从而进一步减少了前代以来化石主要资源的进口。

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