CURRENT STATE OF ENVIRONMENTAL AWARENESS OF TRANSPORT SERVICE STAKEHOLDERS AND END-CUSTOMERS IN THE INTERMODAL TRANSPORT CHAIN

IF 1.3 4区 工程技术 Q3 TRANSPORTATION SCIENCE & TECHNOLOGY
Marko Golnar, B. Beškovnik
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Abstract

Despite all the measures already taken and those still underway, pollution remains a major global problem, as the transport sector is the one where emissions are expected to increase in the coming years. Companies and policy makers are under increasing pressure to reduce the impact of their logistics activities in order to make transportation more environmentally friendly. One of the solutions to reduce emissions from intermodal transport is to choose the “right” mode of transport for each step in the transport chain. Such a measure increases the complexity of the transport chain and places an additional burden on transport companies in planning and organising transport for the entire transport chain. Additional difficulties arise from the fragmentation of information on emissions emitted for a single transport link and the lack of a unified approach to measuring and estimating transport chain emissions. As a result, this work finds that there is a lack of knowledge among users about the environmental impacts of transportation, despite the desire to contribute to greener transportation by paying more for a product or transportation service. The current research fills the gap in stakeholders’ understanding of the negative environmental impacts for individual transportation and for the entire transport chain. In addition, the study reveals a need for a systematically regulated and adapted way of informing users of intermodal transport chains due to the lack of transparency and comparison between different intermodal transport chains. To successfully address the challenges, the study proposes a 2-pillar approach. The 1st pillar approach focuses on designing a set of necessary measures (combination of top-down and bottom-up approach) for the transition to a low-carbon transport chain, while the 2nd pillar mainly focuses on mapping the level of green transport for easy comparison of similar products or services. The results of the research study show that the combination of numerical data with symbolic data is best suited to provide information on the level of green transport.
多式联运链中运输服务利益相关者和终端客户的环境意识现状
尽管已经采取和正在采取各种措施,但污染仍然是一个重大的全球性问题,因为运输部门的排放量预计将在未来几年内增加。企业和政策制定者面临着越来越大的压力,要求他们减少物流活动的影响,使运输更加环保。减少多式联运排放的解决方案之一是为运输链中的每一步选择 "正确的 "运输方式。这种措施增加了运输链的复杂性,给运输公司规划和组织整个运输链的运输增加了负担。由于单个运输环节的排放信息分散,且缺乏统一的测量和估算运输链排放的方法,因此产生了额外的困难。因此,本研究发现,尽管用户希望通过为产品或运输服务支付更多费用来为绿色运输做出贡献,但他们对运输的环境影响缺乏了解。目前的研究填补了利益相关者对单项运输和整个运输链的负面环境影响的认识空白。此外,由于缺乏透明度和不同多式联运链之间的比较,本研究还揭示了需要一种系统规范、适应性强的方式来告知多式联运链的用户。为成功应对这些挑战,研究提出了一种双支柱方法。第一支柱方法侧重于设计一套必要的措施(自上而下和自下而上相结合的方法),以实现向低碳运输链的过渡,而第二支柱主要侧重于绘制绿色运输水平图,以便于对类似产品或服务进行比较。研究结果表明,数字数据与符号数据的结合最适合提供有关绿色交通水平的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Transport
Transport Engineering-Mechanical Engineering
CiteScore
3.40
自引率
5.90%
发文量
19
审稿时长
4 months
期刊介绍: At present, transport is one of the key branches playing a crucial role in the development of economy. Reliable and properly organized transport services are required for a professional performance of industry, construction and agriculture. The public mood and efficiency of work also largely depend on the valuable functions of a carefully chosen transport system. A steady increase in transportation is accompanied by growing demands for a higher quality of transport services and optimum efficiency of transport performance. Currently, joint efforts taken by the transport experts and governing institutions of the country are required to develop and enhance the performance of the national transport system conducting theoretical and empirical research. TRANSPORT is an international peer-reviewed journal covering main aspects of transport and providing a source of information for the engineer and the applied scientist. The journal TRANSPORT publishes articles in the fields of: transport policy; fundamentals of the transport system; technology for carrying passengers and freight using road, railway, inland waterways, sea and air transport; technology for multimodal transportation and logistics; loading technology; roads, railways; airports, ports, transport terminals; traffic safety and environment protection; design, manufacture and exploitation of motor vehicles; pipeline transport; transport energetics; fuels, lubricants and maintenance materials; teamwork of customs and transport; transport information technologies; transport economics and management; transport standards; transport educology and history, etc.
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