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The techno-economic analysis of a hybrid zero-emission building system integrated with a commercial-scale zero-emission hydrogen vehicle

机译:结合商业规模零排放氢车辆的混合零排放建筑系统的技术经济分析

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This study conducts a techno-economic analysis to seek the feasibility to integrate a zero-emission building (ZEB) with a commercial-scale hydrogen vehicle (HV). The parametric analysis is conducted in 16 simulation groups with respect to the equipment options of the solar thermal collectors, the ground source heat pump (GSHP) and the HV refueling methods, while each group contains a series of cases with a range of on-site renewable electricity (REe) generation capacities between 0 and 16 kW. The assessment criteria include the annual operational equivalent CO2 emission and the relative net present value (NPVrel). By the parametric analysis, the sets of the non-dominated cases within the cloud of the analysed solutions have been comprehensively investigated regarding the aims to reduce the emission and the cost. With respect to the criteria of the equivalent emission and NPVrel under the normal market scenario of the electrolyzer (5000 EUR/kW), none of the cases with the on-site H-2 system can be identified as superior to those without the on-site H-2 system. The non-dominated cases will mainly happen to those with a 0-9.61 NOCT kW photovoltaic (PV) panel and a 5 kW GSHP but without any solar thermal collector, which have a range of NPVrel between -4115 and 12,556 EUR along with a range of emission between 19.72 and 6.65 kg CO2,eq/m(2) a. However, by reducing the electrolyzer cost to the lowest market scenario of 2000 EUR/kW, parts of the cases with the on-site H-2 system start to challenge those without the on-site H-2 system. Moreover, the change of the emission factor of the H-2 fuel from 0.267 to 0.141 kg CO2,eq/kWh(LHV) will not alter the set of the overall non-dominated cases, but will uniformly reduce the annual emission of these cases by a magnitude of 3.83 kg CO2,eq/m(2) a.
机译:这项研究进行了技术经济分析,以寻求将零排放建筑物(ZEB)与商用规模氢车辆(HV)集成的可行性。针对太阳能集热器,地源热泵(GSHP)和HV加油方法的设备选项,在16个模拟组中进行了参数分析,而每个组都包含一系列案例,涉及一系列现场案例。 0至16 kW之间的可再生电力(REe)发电能力。评估标准包括年度运营当量CO2排放量和相对净现值(NPVrel)。通过参数分析,针对减少排放量和降低成本的目的,已全面研究了分析解决方案云中的非主导案例集。关于电解器正常市场情况下的等效排放量和NPVrel标准(5000欧元/千瓦),没有发现使用现场H-2系统的情况优于没有使用H-2系统的情况。站点H-2系统。非主导案例将主要发生在具有0-9.61 NOCT kW光伏(PV)面板和5 kW GSHP但没有任何太阳能集热器的情况下,其NPVrel范围在-4115到12,556 EUR之间,以及在19.72至6.65 kg CO2,eq / m(2)之间的排放量但是,通过将电解器成本降低到最低市场情景2000欧元/千瓦,带有现场H-2系统的部分情况开始挑战那些没有现场H-2系统的情况。此外,H-2燃料的排放因子从0.267 kgCO2,eq / kWh(LHV)的变化不会改变整个非主要案例的数量,但会统一减少这些案例的年排放量排放量为3.83千克CO2,eq / m(2)a。

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