Geological Disposal of Carbon Dioxide and Radioactive Waste: A Comparative Assessment

Geological Disposal of Carbon Dioxide and Radioactive Waste: A Comparative Assessment
Author: Ferenc L. Toth
Publisher: Springer Science & Business Media
Total Pages: 639
Release: 2011-02-21
Genre: Science
ISBN: 9048187125

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Fossil fuels will remain the backbone of the global energy economy for the foreseeable future. The contribution of nuclear energy to the global energy supply is also expected to increase. With the pressing need to mitigate climate change and reduce greenhouse gas emissions, the fossil energy industry is exploring the possibility of carbon dioxide disposal in geological media. Geological disposal has been studied for decades by the nuclear industry with a view to ensuring the safe containment of its wastes. Geological disposal of carbon dioxide and that of radioactive waste gives rise to many common concerns in domains ranging from geology to public acceptance. In this respect, comparative assessments reveal many similarities, ranging from the transformation of the geological environment and safety and monitoring concerns to regulatory, liability and public acceptance issues. However, there are profound differences on a broad range of issues as well, such as the quantities and hazardous features of the materials to be disposed of, the characteristics of the targeted geological media, the site engineering technologies involved and the timescales required for safe containment at the disposal location. There are ample opportunities to learn from comparisons and to derive insights that will assist policymakers responsible for national energy strategies and international climate policies.

Geological Disposal of Carbon Dioxide and Radioactive Waste: A Comparative Assessment

Geological Disposal of Carbon Dioxide and Radioactive Waste: A Comparative Assessment
Author: Ferenc L. Toth
Publisher: Springer
Total Pages: 621
Release: 2011-07-23
Genre: Science
ISBN: 9789048187188

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Fossil fuels will remain the backbone of the global energy economy for the foreseeable future. The contribution of nuclear energy to the global energy supply is also expected to increase. With the pressing need to mitigate climate change and reduce greenhouse gas emissions, the fossil energy industry is exploring the possibility of carbon dioxide disposal in geological media. Geological disposal has been studied for decades by the nuclear industry with a view to ensuring the safe containment of its wastes. Geological disposal of carbon dioxide and that of radioactive waste gives rise to many common concerns in domains ranging from geology to public acceptance. In this respect, comparative assessments reveal many similarities, ranging from the transformation of the geological environment and safety and monitoring concerns to regulatory, liability and public acceptance issues. However, there are profound differences on a broad range of issues as well, such as the quantities and hazardous features of the materials to be disposed of, the characteristics of the targeted geological media, the site engineering technologies involved and the timescales required for safe containment at the disposal location. There are ample opportunities to learn from comparisons and to derive insights that will assist policymakers responsible for national energy strategies and international climate policies.

Comparative Assessment of Status and Opportunities for CO2 Capture and Storage and Radioactive Waste Disposal in North America

Comparative Assessment of Status and Opportunities for CO2 Capture and Storage and Radioactive Waste Disposal in North America
Author:
Publisher:
Total Pages:
Release: 2010
Genre:
ISBN:

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Aside from the target storage regions being underground, geologic carbon sequestration and radioactive waste disposal share little in common in North America. The large volume of carbon dioxide (CO2) needed to be sequestered along with its relatively benign health effects present a sharp contrast to the limited volumes and hazardous nature of high-level radioactive waste. There is well-documented capacity in North America for 100 years or more of sequestration of CO2 from coal-fired power plants. Aside from economics, the challenges of geologic carbon sequestration include lack of fully established legal and regulatory framework for ownership of injected CO2, the need for an expanded pipeline infrastructure, and public acceptance of the technology. As for radioactive waste, the U.S. has proposed the unsaturated tuffs of Yucca Mountain, Nevada, as the region's first high-level radioactive waste disposal site. The Canadian radioactive waste program is currently evolving with options that range from geologic disposal to both decentralized and centralized permanent storage in surface facilities. Both the U.S. and Canada have established legal and regulatory frameworks for radioactive waste disposal. The most challenging technical issue for radioactive waste disposal is the need to predict repository performance on extremely long time scales (104 - 106 years). While attitudes toward nuclear power are rapidly changing as fossil-fuel costs soar and changes in climate occur, public perception remains the most serious challenge to opening radioactive waste repositories. Because of the many significant differences between radioactive waste disposal and geologic carbon sequestration, there is little that can be shared between them from regulatory, legal, transportation, or economic perspectives. As for public perception, there is currently an opportunity to engage the public on the benefits and risks of both geologic carbon sequestration and radioactive waste disposal as they learn more about the urgent energy-climate crisis created by greenhouse gas emissions from current fossil-fuel combustion practices.

Climate Change

Climate Change
Author: Suhaib A. Bandh
Publisher: Springer Nature
Total Pages: 388
Release: 2022-03-04
Genre: Science
ISBN: 3030862909

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Beginning in the second half of the twentieth century, the impacts of climate change have been fierce, causing loss of human life and irreparable destruction to natural and man-made infrastructure in many parts of the world. The difference between climate change now and in the past is that of sudden and disproportionate disruption of the natural energy dynamics by the changing consumption patterns of billions of human beings who have polluted terrestrial and aquatic ecosystems. The picture that emerges from the exhaustive analysis of international data drawn from the most reliable sources indicates that we have possibly gained access to the gateway of extinction and it is time that we take corrective steps immediately. Global climate change is further altering our relationship with the environment, modifying relatively stable climatic factors and making them uncertain, unpredictable, and threatening. Changes in land use and an increasing demand for water resources due to climate change have affected the capacity of ecosystems to sustain food production, ensure the supply of freshwater resources, provide ecosystem services, and promote rural multi-functionality. Ensuring food production does not just depend on increasing water efficiency, promoting climate resilient crop production, or reducing land-use competition for urbanization but also on a more suitable and stable climate as the changes in climatic factors like precipitation, temperature, radiation, evaporation, and wind bring about some major shifts in global food supplies. According to Special Report on Emission Scenarios (SRES), focused on greenhouse gas emissions projections, and Representative Concentration Pathways (RCPs) conducted by the Intergovernmental Panel on Climate Change (IPCC), climate change increases the risk of simultaneous crop failures (including corn, rice, legumes, and vegetables) if irrigation systems are not fully adapted to water stress situations. A changing climate could have many adverse impacts on other sectors of our environment. This book offers concrete, up-to-date, and appropriate study cum research material for students, researchers, academicians and policymakers. It will be of a greater interest to students and researchers in the field of environmental science, agriculture science, agronomy, and sustainable development.

Biomass Energy with Carbon Capture and Storage (BECCS)

Biomass Energy with Carbon Capture and Storage (BECCS)
Author: Clair Gough
Publisher: John Wiley & Sons
Total Pages: 342
Release: 2018-07-11
Genre: Science
ISBN: 1119237637

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An essential resource for understanding the potential role for biomass energy with carbon capture and storage in addressing climate change Biomass Energy with Carbon Capture and Storage (BECCS) offers a comprehensive review of the characteristics of BECCS technologies in relation to its various applications. The authors — a team of expert professionals — bring together in one volume the technical, scientific, social, economic and governance issues relating to the potential deployment of BECCS as a key approach to climate change mitigation. The text contains information on the current and future opportunities and constraints for biomass energy, explores the technologies involved in BECCS systems and the performance characteristics of a variety of technical systems. In addition, the text includes an examination of the role of BECCS in climate change mitigation, carbon accounting across the supply chain and policy frameworks. The authors also offer a review of the social and ethical aspects as well as the costs and economics of BECCS. This important text: Reveals the role BECCS could play in the transition to a low-carbon economy Discusses the wide variety of technical and non-technical constraints of BECCS Presents the basics of biomass energy systems Reviews the technical and engineering issues pertinent to BECCS Explores the societal implications of BECCS systems Written for academics and research professionals, Biomass Energy with Carbon Capture and Storage (BECCS) brings together in one volume the issues surrounding BECCS in an accessible and authoritative manner.

A Critical Review of Scottish Renewable and Low Carbon Energy Policy

A Critical Review of Scottish Renewable and Low Carbon Energy Policy
Author: Geoffrey Wood
Publisher: Springer
Total Pages: 238
Release: 2017-08-14
Genre: Political Science
ISBN: 3319568981

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This book offers comprehensive coverage of current energy policy in Scotland focussing on non-fossil fuel energy options: renewables, nuclear power and energy efficiency. Covering issues of policy and practice, planning, legislation and regulation of a range of sustainable energy technologies in the context of devolved government, key experts explore these issues in terms of the ongoing Scottish independence debate, Brexit and further devolution in this vitally important and timely book. The book emphasises two further distinctive areas: constitutional change and the role of sub-national authorities in renewable and low carbon energy policy and practice. The clear focus on renewable and low carbon energy policy and practice and sub-national authority level of governance of energy means that it will be of particular relevance as a case study for those countries either in the process of deploying renewable and/or low carbon energy technologies or looking to do so. The authors discuss the many lessons to be learnt from the Scottish and UK experience. By providing a critical analysis of Scottish renewable and low carbon energy policy and practice, this book is invaluable to students, practitioners and decision-makers interested in renewable and low carbon energy transitions, energy planning and policy.

CO2 Injection in the Network of Carbonate Fractures

CO2 Injection in the Network of Carbonate Fractures
Author: J. Carlos de Dios
Publisher: Springer Nature
Total Pages: 245
Release: 2020-12-17
Genre: Technology & Engineering
ISBN: 3030629864

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This book presents guidelines for the design, operation and monitoring of CO2 injection in fractured carbonates, with low permeability in the rock matrix, for geological storage in permanent trapping. CO2 migration is dominated by fractures in formations where the hydrodynamic and geochemical effects induced by the injection play a key role influencing the reservoir behavior. CO2 injection in these rocks shows specific characteristics that are different to injection in porous media, as the results from several research studies worldwide reveal. All aspects of a project of this type are discussed in this text, from the drilling to the injection, as well as support works like well logging, laboratory and field tests, modeling, and risk assessment. Examples are provided, lesson learned is detailed, and conclusions are drawn. This work is derived from the experience of international research teams and particularly from that gained during the design, construction and operation of Hontomín Technology Development Plant. Hontomín research pilot is currently the only active onshore injection site in the European Union, operated by Fundación Ciudad de la Energía-CIUDEN F.S.P. and recognized by the European Parliament as a key test facility. The authors provide guidelines and tools to enable readers to find solutions to their problems. The book covers activities relevant to a wide range of practitioners involved in reservoir exploration, modeling, site operation and monitoring. Fluid injection in fractured media shows specific features that are different than injection in porous media, influencing the reservoir behavior and defining conditions for safe and efficient operation. Therefore, this book is also useful to professionals working on oil & gas, hydrogeology and geothermal projects, and in general for those whose work is related to activities using fluid injection in the ground.