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首页> 外文期刊>International journal of hydrogen energy >Demonstration Of A Novel Assessment Methodology For Hydrogen Infrastructure Deployment
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Demonstration Of A Novel Assessment Methodology For Hydrogen Infrastructure Deployment

机译:氢气基础设施部署的新型评估方法论证

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To reduce criteria pollutant emissions and greenhouse gases from mobile sources, the use of hydrogen as a transportation fuel is proposed as a new paradigm in combination with fuel cells for vehicle power. The extent to which reductions can and will occur depends on the mix of technologies that constitute the hydrogen supply chain. This paper introduces an analysis and planning methodology for estimating emissions, greenhouse gases, and the energy efficiency of the hydrogen supply chain as a function of the technology mix on a life cycle, well to wheels (WTW) basis. The methodology, referred to as the preferred combination assessment (PCA) model, is demonstrated by assessing an illustrative set of hydrogen infrastructure (generation and distribution) deployment scenarios in California's South Coast Air Basin. Each scenario reflects a select mix of technologies for the years 2015, 2030, and 2060 including (1) the proportion of fossil fuels and renewable energy sources of the hydrogen and (2) the rate of hydrogen fuel cell vehicle adoption. The hydrogen deployment scenarios are compared to the existing paradigm of conventional vehicles and fuels with a goal to reveal and evaluate the efficacy and utility of the PCA methodology. In addition to a demonstration of the methodology, the salient conclusions reached from this first application include the following.rn1. Emissions of criteria pollutants increase or decrease, depending on the hydrogen deployment scenario, when compared to an evolution of the existing paradigm of conventional vehicles and fuels.rn2. For all scenarios, pipeline distribution from a centrally located generation source reduces criteria pollutant emissions when compared to distribution by truck.rn3. With one qualification, greenhouse gas emissions are reduced for the scenarios considered with the extent of reduction increasing in proportion to the renewable sources of hydrogen. When natural gas is utilized as a source for hydrogen, leakage of methane from the U.S. natural gas infrastructure is a significant contributor to the greenhouse gases associated with a hydrogen economy.rn4. For all scenarios considered, the WTW energy efficiency improves whereas the consumption of water (and the associated energy) increases.
机译:为了减少来自移动源的污染物排放和温室气体排放标准,提议将氢作为运输燃料与燃料电池结合作为车辆动力的新范例。减少的程度以及将会发生的程度取决于构成氢供应链的技术组合。本文介绍了一种分析和规划方法,用于估算氢供应链的排放量,温室气体和能源效率,这是整个生命周期(以轮对轮)为基础的技术组合的函数。该方法被称为“首选组合评估(PCA)”模型,通过评估加利福尼亚南海岸空气盆地的一套示例性氢基础设施(发电和配电)部署方案进行了论证。每种情况都反映了2015年,2030年和2060年的技术选择组合,其中包括(1)化石燃料和氢可再生能源的比例,以及(2)氢燃料电池汽车的采用率。将氢的部署方案与常规车辆和燃料的现有范例进行比较,目的是揭示和评估PCA方法的有效性和实用性。除了对方法论的演示外,从第一个应用程序中得出的重要结论包括以下内容。与常规车辆和燃料的现有范式的发展相比,取决于氢的使用情况,标准污染物的排放量会增加或减少。在所有情况下,与卡车分配相比,从位于中心的发电源进行的管道分配减少了标准污染物排放。只要具备一项资格,就所考虑的方案就可以减少温室气体排放,并且减少的程度与可再生氢源成比例地增加。当将天然气用作氢源时,甲烷从美国天然气基础设施中泄漏是与氢经济相关的温室气体的重要原因。对于所有考虑的情况,WTW的能源效率都会提高,而水的消耗(以及相关的能源)却会增加。

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