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Seminar paper from the year 2010 in the subject Business economics - Miscellaneous, grade: 1,3, Carl von Ossietzky University of Oldenburg (Department of Business Administration and Education), course: International Sustainability Management, language: English, abstract: Climate change and the negative impact that various human activities can have on our ecosystem are among the inescapable challenges world leaders are facing. While the issue of global warming remains highly debated, there is increasing evidence to support the environmental impact of carbon emissions. It is estimated that the transport sector is responsible for roughly 18% of carbon emissions in Germany. In future, greenhouse gas emissions will have to be reduced in the transport sector and due to the globally growing demand for energy in emerging markets and the risk of shortages prices of fossil fuel are bound to rise considerably. Accordingly mobility re-quires a sustainable development path towards zero-carbon emissions. In consequence, the importance of alternative drive technologies is growing. Battery electric vehicles (BEV) are seen as one possible solution since they release no carbon emissions while running on electric power and are obviously low-noise. However, some question whether BEVs are truly “clean vehicles” because in some cases, the electricity used to power the vehicles is produced by high polluting coal power plants and a lot of energy is required to produce the batteries. In addition past development of battery-electric vehicles showed that the technology was not yet sufficiently mature due to low ranges and high prices to meet the requests of potential users. Thus, several require-ments need to be met to achieve a market acceptance which is sufficiently big to be considered a critical mass providing the way to sustainable mobility. According to the open questions above which are associated with an alternative drive technology, this paper first gives an understanding of sustainable mobility and shows respectively goals (Chapter 2). Chapter 3 provides an overview of greenhouse gas emissions due to transport sector in Germany and consumer’s mobility characteristics and behaviour in order to analyse in Chapter 4 whether zero emission would be possible by BEVs. For this analysis three areas are focused: economically, ecologically and operating characteristics.
Seminar paper from the year 2010 in the subject Business economics - Miscellaneous, grade: 1,3, Carl von Ossietzky University of Oldenburg (Department of Business Administration and Education), course: International Sustainability Management, language: English, abstract: Climate change and the negative impact that various human activities can have on our ecosystem are among the inescapable challenges world leaders are facing. While the issue of global warming remains highly debated, there is increasing evidence to support the environmental impact of carbon emissions. It is estimated that the transport sector is responsible for roughly 18% of carbon emissions in Germany. In future, greenhouse gas emissions will have to be reduced in the transport sector and due to the globally growing demand for energy in emerging markets and the risk of shortages prices of fossil fuel are bound to rise considerably. Accordingly mobility re-quires a sustainable development path towards zero-carbon emissions. In consequence, the importance of alternative drive technologies is growing. Battery electric vehicles (BEV) are seen as one possible solution since they release no carbon emissions while running on electric power and are obviously low-noise. However, some question whether BEVs are truly "clean vehicles" because in some cases, the electricity used to power the vehicles is produced by high polluting coal power plants and a lot of energy is required to produce the batteries. In addition past development of battery-electric vehicles showed that the technology was not yet sufficiently mature due to low ranges and high prices to meet the requests of potential users. Thus, several require-ments need to be met to achieve a market acceptance which is sufficiently big to be considered a critical mass providing the way to sustainable mobility. According to the open questions above which are associated with an alternative drive technology, this paper first gives an understanding of sust
In many parts of the world, there is a crisis of mobility. This book shows that technology may well not be enough in itself and that for a genuinely sustainable transport future far more radical change - affecting many aspects of society - is needed. It is useful for academics, practitioners, and policy-makers.
This book addresses various aspects of electric mobility deployment in public transport. These include transport policy-related issues as well as technical, organizational and technical dimensions of the fleet conversion process (from conventional one towards the increased share of electric vehicles in public transport). In the book, one may find, e.g. the determinants for the successful functioning of electrified transport systems (including charging facilities), models and methods for battery electric bus energy consumption, the analysis regarding the charging strategies (including power-grid) as well as electric vehicle battery issues. As the process of fleet conversion is multi-faceted, the book also contains the issues related to cybersecurity in public transport, autonomous vehicles and hyperloop. The book is dedicated to transport professionals, consulting companies and researchers in the field of electromobility and modern transport systems.
Sustainable mobility is a highly complex problem as it is affected by the interactions between socio-economic, environmental, technological and political issues. Energy, Transport, & the Environment: Addressing the Sustainable Mobility Paradigm brings together leading figures from business, academia and governments to address the challenges and opportunities involved in working towards sustainable mobility. Key thinkers and decision makers approach topics and debates including: energy security and resource scarcity greenhouse gas and pollutant emissions urban planning, transport systems and their management governance and finance of transformation ·the threats of terrorism and climate change to our transport systems. Introduced by a preface from U.S. Secretary of Energy, Steven Chu and an outline by the editors, Dr Oliver Inderwildi and Sir David King, Energy, Transport, & the Environment is divided into six sections. These sections address and explore the challenges and opportunities for energy supply, road transport, urban mobility, aviation, sea and rail, as well as finance and economics in transport. Possible solutions, ranging from alternative fuels to advanced urban planning and policy levers, will be examined in order to deepen the understanding of currently proposed solutions within the political realities of the dominating economic areas. The result of this detailed investigation is an integrated view of sustainable transport for both people and freight, making Energy, Transport, & the Environment key reading for researchers, decision makers and policy experts across the public and private sectors.
Master's Thesis from the year 2023 in the subject Engineering - Power Engineering, grade: 1,3, Ingolstadt University of Applied Sciences, language: English, abstract: The advent of electric vehicles (EVs) has ushered in a new era of sustainable transportation, promising reduced carbon emissions and decreased dependence on fossil fuels. As the global automotive industry undergoes a profound transformation, it is imperative to assess and optimize the infrastructure supporting EV adoption. This research paper delves into the intricate world of public charging infrastructure for EVs, with a specific focus on an in-depth analysis of the existing charging ecosystem at AUDI AG headquarters. The rise of electric mobility has initiated a pivotal shift in how we perceive and interact with transportation. With a growing commitment to environmental sustainability and the recognition of EVs as a key driver of a greener future, the establishment of an efficient and effective charging infrastructure is critical. EV adoption and, by extension, the success of a low-carbon transportation system depend heavily on the convenience and reliability of public charging stations. To understand the current state of this infrastructure and its potential for improvement, this paper embarks on a comprehensive exploration of the charging sector. Before delving into the intricacies of the charging sector, it is essential to provide an overview of the status quo in electric mobility and establish the objectives and targets that drive this investigation. The paper will address the existing challenges and opportunities in the EV charging landscape and set clear goals for analyzing and enhancing the infrastructure. This contextualization is fundamental for appreciating the significance of the research conducted herein. This research is structured to offer a systematic exploration of the topic, enabling readers to follow a logical progression of information. It is divided into several chapters, each serving a distinct purpose. The first chapter introduces the reader to the subject matter and outlines the scope of the paper. The subsequent chapters delve into the theoretical aspects of the charging sector, stakeholder analysis, and the identification and analysis of key performance indicators (KPIs). A specific focus will be placed on the application of these KPIs to assess the public charging infrastructure at AUDI AG headquarters. The findings from this analysis will then be used to identify potential areas for improvement.
Embark on a transformative journey with Professor Felice E. Corcione's groundbreaking book, where environmental consciousness meets cutting-edge technology in mobility. Delving deep into the intricate relationship between mobility and the environment, Corcione offers insightful analyses of pollutants and lays the groundwork for sustainable practices. At the heart of Corcione's narrative lies the transformative potential of hydrogen, drawing inspiration from celestial phenomena and scientific innovation. With a focus on hydrogen's energy density and versatile applications in fuel cells, Corcione presents innovative solutions for sustainable transportation without compromising performance. Join Corcione and colleagues as they discuss pressing environmental challenges and chart a course towards a greener future. This book is more than just a read-it's a call to action to embrace "green mobility" and contribute to a sustainable future. Join the expedition towards zero-emission transportation and environmental stewardship. "This work is designed to outline a proposal for the rebirth of the planet in the name of renewable energy and a circular economy model affecting every economic sector-from agriculture and manufacturing to transportation." --Prisco Piscitelli, epidemiologist, Vice-president of the Italian Society of Environmental Medicine. (ISBN: 9781468608014 ISBN:9781468608021 ISBN:9781468608038 DOI:10.4271/9781468608021)
The volume is dedicated to the electric car. It examines the extent to which the electric car can contribute to sustainable transport development as part of a new mobility culture. The technical, cultural, political, social and aesthetic dimensions are considered. It will be shown how the general social framework has to change in order to make the electric car a success. This book is a translation of the original German edition "Das Elektroauto“ by “Marcus Keichel”, published by Springer Fachmedien Wiesbaden in 2013. The translation was done with the help of artificial intelligence (machine translation by the service DeepL.com). A subsequent human revision was done primarily in terms of content, so that the book will read stylistically differently from a conventional translation. Springer Nature works continuously to further the development of tools for the production of books and on the related technologies to support the authors.
The Role of Bioenergy in the Bioeconomy: Resources, Technologies, Sustainability and Policy provides the reader with a complete understanding on how bioenergy technologies fit into the new bioeconomy paradigm. Sections focus on the main resources and technologies for bioenergy and its integration in energy systems and biorefining chains, analyze the available methodologies for assessing the sustainability of bioenergy, and address and the propose approaches that are demonstrated through concrete case studies. Additionally, the implications of bioenergy in the water-energy and land nexus is presented, along with new challenges and opportunities. This book’s strong focus on sustainability of bioenergy, both as a standalone, and in the larger context of a bio-based economy, makes it a useful resource for researchers, professionals and students in the bioenergy field who need tactics to assess the lifecycle and sustainability of bioenergy technologies and their integration into existing systems. Presents a complete overview of the main challenges that bioenergy will have to overcome in order to play a key role in future energy systems Explores sustainability aspects in detail, both qualitatively and by applying proposed methodologies to concrete bioenergy case studies Covers, in detail, the water-energy-land nexus implications and governance aspects