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Perceptions of emission reduction potential in air transport: a structural equation modeling approach

机译:航空运输中减排潜力的感知:结构方程建模方法

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This study employs a structural equation modeling (SEM) approach to identify the key perceptions that influence greenhouse gas (GHG) emission reduction potential (ERP) in air transport. It explores the correlation relationships between various perceptions and air transport GHG emission reduction potential. Personal approach and self-administered surveys were used to collect data from 249 aviation experts. The results of the SEM showed aircraft technology and design, aviation operations and infrastructure, socioeconomic and political measures, and alternative fuels and fuel properties are the key influencing perceptions for reducing GHG emissions. Aircraft technology and design had the strongest ERP, followed by aviation operations and infrastructure with a strong correlation between them. The structural model proved reliable and in agreement to identify the perceptions of the ERP. The outputs can be used to measure the level of knowledge and understanding about the ERP of air transport and can provide airlines with valuable information for designing appropriate air transport policies for emission reduction.
机译:这项研究采用结构方程模型(SEM)方法来确定影响航空运输中温室气体(GHG)减排潜力(ERP)的关键认识。它探讨了各种看法与航空运输温室气体减排潜力之间的相关关系。使用个人方法和自我管理的调查从249位航空专家中收集数据。 SEM的结果表明,飞机技术和设计,航空运营和基础设施,社会经济和政治措施以及替代燃料和燃料特性是减少温室气体排放的关键影响观念。飞机技术和设计的ERP最强,其次是航空运营和基础设施,两者之间具有很强的相关性。该结构模型被证明是可靠的,并且可以识别ERP的感知。这些输出可用于衡量对航空运输的ERP的了解和理解水平,并可为航空公司提供有价值的信息,以设计适当的航空运输政策以减少排放。

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