scholarly journals WAGE INEQUALITY ACROSS THE ROAD TRANSPORT SECTOR WITHIN THE EU

2019 ◽  
Vol 14 (2) ◽  
pp. 145-153
Author(s):  
Miloš POLIAK ◽  
Patricia ŠIMURKOVÁ ◽  
Kelvin CHEU
2020 ◽  
Vol 57 (4) ◽  
pp. 34-50
Author(s):  
J. Savickis ◽  
L. Zemite ◽  
N. Zeltins ◽  
I. Bode ◽  
L. Jansons ◽  
...  

AbstractBiomethane is one of the most promising renewable gases (hereafter – RG) – a flexible and easily storable fuel, and, when used along with the natural gas in any mixing proportion, no adjustments on equipment designed to use natural gas are required. In regions where natural gas grids already exist, there is a system suitable for distribution of the biomethane as well. Moreover, improving energy efficiency and sustainability of the gas infrastructure, it can be used as total substitute for natural gas. Since it has the same chemical properties as natural gas, with methane content level greater than 96 %, biomethane is suitable both for heat and electricity generation, and the use in transport.Biomethane is injected into the natural gas networks of many Member States of the European Union (hereafter – the EU) on a regular basis for more than a decade, with the Netherlands, Germany, Austria, Sweden and France being among pioneers in this field. In most early cases, permission to inject biomethane into the natural gas grids came as part of a policy to decarbonize the road transport sector and was granted on a case-by-case basis. The intention to legally frame and standardise the EU’s biomethane injection into the natural gas networks came much later and was fulfilled in the second half of the present decade.This paper addresses the biomethane injection into the natural gas grids in some EU countries, highlights a few crucial aspects in this process, including but not limited to trends in standardisation and legal framework, injection conditions and pressure levels, as well as centralised biogas feedstock collection points and the biomethane injection facilities. In a wider context, the paper deals with the role of biomethane in the EU energy transition and further use of the existing natural gas networks.


2021 ◽  
Vol 238 ◽  
pp. 08002
Author(s):  
David Chiaramonti ◽  
Giacomo Talluri

Introducing sustainable fuels in the different transport fields in the EU is a very challenging goal, but also a clear priority in the EU decarbonization strategy. In fact, the transport sector is extremely rigid and regulated, with consolidated norms and standards and well-defined economics. Adding more oxygenated components to the fuel mix is also limited by the so-called blend-wall: thus, the share of renewable drop-in hydrocarbons has been recently growing worldwide and in the European Union. However, as a large part of these relates to lipids, the supply of sustainable feedstock has become the major critical element of the value chain. Fast-growing demand from new sectors as Aviation also emerged, that together with Heavy Duty and Maritime represent the focus of the EC strategy, complementary to the electrification of the road transport, passenger cars and light duty vehicles. Introducing innovative processes at full commercial scale requires to overcome the Mountain of Death of processes, where the bankability of not yet demonstrated technologies is the core problem. This work addresses the impact of the EU policy scenario, depicting the status of the different process and technologies, both Bio-based and Recycled Carbon, on the Mountain of Death.


2020 ◽  
Vol 264 (4) ◽  
pp. 27-33
Author(s):  
Olga Sabanska ◽  

The current situation is considered on the development of safe and secure parking areas for trucks in Europe. The reports of the International Road Transport Union were analyzed on the European Union-funded project on Safe and secure truck parking areas for trucks in Europe and a final report on the study of safe and secure places for truck parking in the EU. The analysis of European regulations is carried out on road infrastructure safety management, specification of truck parking zones, rules of working time and rest of the driver, as well as Ukrainian legislation on these issues. With a view to provide a consistent definition of secure truck parking areas and a quality framework, an EU-wide rating system and security and service at SSTPAs has been defined during the study that included participation by all key stakeholders within the road transport and logistics sector. This rating system should now be implemented as a standard by a newly created EU expert group. The quality of the entire system and of the individual secure truck parking areas shall be guaranteed by ensuring that independent third party audits will occur for all secure truck parking areas within the system. In the future this quality system could also link to ITS solutions for the road transport sector. The implementing the study results in both existing truck parking areas and in new truck parking areas and thereby increasing the number of available secure parking areas throughout Europe, there is a strong probability that cargo crime and incident rates will be reduced significantly and that the security and well-being of truck drivers will be improved, thereby benefitting road safety as well. Recommendations for possible measures to improve the legislation of Ukraine are provided in terms of establishing the SSTPA in view of the EU-Ukraine Association Agreement provisions. Keywords: road safety, freight road transport, Safe and secure truck parking areas (SSTPA), EU Mobility package, driving and rest time rules of driver, Ukraine – EU Association Agreement.


Energies ◽  
2020 ◽  
Vol 13 (14) ◽  
pp. 3634
Author(s):  
Daniele Lerede ◽  
Chiara Bustreo ◽  
Francesco Gracceva ◽  
Yolanda Lechón ◽  
Laura Savoldi

The European Roadmap towards the production of electricity from nuclear fusion foresees the potential availability of nuclear fusion power plants (NFPPs) in the second half of this century. The possible penetration of that technology, typically addressed by using the global energy system EUROFusion TIMES Model (ETM), will depend, among other aspects, on its costs compared to those of the other available technologies for electricity production, and on the future electricity demand. This paper focuses on the ongoing electrification process of the transport sector, with special attention devoted to road transport. A survey on the present and forthcoming technologies, as foreseen by several manufacturers and other models, and an international vehicle database are taken into account to develop the new road transport module, then implemented and harmonized inside ETM. Following three different storylines, the computed results are presented in terms of the evolution of the road transport demand in the next decades, fleet composition and CO 2 emissions. The ETM results are in line with many other studies. On one hand, they highlight, for the European road transport energy consumption pattern, the need for dramatic changes in the transport market, if the most ambitious environmental goals are to be pursued. On the other hand, the results also show that NFPP adoption on a commercial scale could be justified within the current projection of the investment costs, if the deep penetration of electricity in the road transport sector also occurs.


2017 ◽  
Vol 19 (4) ◽  
pp. 614-640

The problem of reducing CO2 emissions from transport, a major contributor to the greenhouse effect, has become a growing concern for the scientific community and various international committees monitoring climate change. Energy savings in the transport sector are a key factor towards rational management of oil reserves, while new trends in the automotive market have already been established, supported by research on efficient and environmentally-friendly technologies and alternative fuels to face fossil fuel dependency. The road transport sector is an important part for most developed economies but also a major source of pollutant emissions. In this framework, this paper focuses on transport emissions along the main road axis in Greece, connecting the country’s two largest urban areas, during the years 2008-2014, a period of prolonged recession. Based on traffic data collected at the toll stations along the highway, greenhouse gas and pollutant emissions were calculated using the COPERT4 emission estimation tool. According to the results, a sharp fall in emissions is observed largely due to traffic volume reductions, but also due to a prevailing trend for larger displacement vehicles and technologically improved vehicles with better environmental standards.


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