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Shale gas extraction in Europe and Germany : the impacts of environmental protection and energy security on emerging regulationsFleming, Ruven C. January 2015 (has links)
Shale gas extraction is a technology that is recently arriving in Europe and Germany. The technology brings about a considerable amount of potential environmental threats, but the extraction of shale gas also promises energy security rewards. When the European and German systems for energy and environmental regulation were developed, shale gas extraction did not exist as a technical possibility. Both systems are, hence, not entirely adapted to this technology. This work highlights different ways in which the European and German legislator could act to close existing gaps in their regulatory systems. This could mainly be done by supplementing the existing system with new, shale gas specific regulations. These regulations should be summarized in a new-build shale gas law. The current work tracks the different stages of development of such a new shale gas law, starting from the level of rather abstract constitutional objectives, which translate into clearer defined environmental principles, which in turn translate into a concrete law. Experience from other European states with the legal handling of shale gas extraction teaches that there are essentially two different orientations for such a new-build shale gas law. One is the adoption of a prohibitive moratorium and the other is the implementation of a cautious, but permissive shale gas law. This work`s original contribution to knowledge is the insight that constitutional pre-settings on the interplay of environmental protection with energy security make a cautious, but permissive shale gas law a measure that is legally sounder than a shale gas moratorium. Legally sound, in this context, means complying, to the greatest extent possible, with the applicable constitutional and quasi-constitutional objectives. A shale gas moratorium only serves one purpose, environmental protection, and does not take sufficient account of the energy security objective. A shale gas moratorium only serves one purpose, environmental protection, and does not take sufficient account of the energy security objective. A cautious, but permissive shale gas law, by contrast, possesses the ability to reconcile the competing interests of environmental protection and energy security, which makes it more resilient to judicial review than a moratorium. Having said that, it must be emphasised that shale gas regulation is ultimately a political decision and the legislator is allowed to pick either of the described solutions. This work merely describes which solution is the legally soundest in the sense defined above. To sum up, results from this study will extent what is currently known about the constitutional pre-conditions for the development of shale gas regulation. It highlight that constitutional objectives have a significant impact on the shape of energy regulation.
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Developing the Shale Gas Industry in South Africa : an analysis of the environmental legal frameworkSibiya, Zwelethu January 2014 (has links)
Dissertation (LLM)--University of Pretoria, 2014. / gm2015 / Centre for Human Rights / Unrestricted
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Politics of transparency : contested spaces of corporate responsibility, science and regulation in shale gas projects of the UK and the USKök-Kalaycı, İrem January 2016 (has links)
This thesis presents a political geography of transparency, regulation and resource making in shale gas projects in the United Kingdom (UK) and the United States (US). The emergence of shale gas as a politically and economically desirable resource occupied national political aspirations, most notably in the US and to some extent in the UK, for reasons of energy security and economic development. Although shale gas has become a globally desirable resource, this thesis shows that the resource is not same everywhere. Following knowledge making practices in distinct regulatory regimes of the UK and the US, I trace how making of shale gas resource is subjected to contestation in a range of technical fields, such as law, economics, geosciences and environmental impact assessment. The study is based on in-depth analysis of technical and policy documents, and interviews with a wide range of actors (i.e. regulators, gas companies, investors, scientists, landowners), and field visits in the US (New York, Pennsylvania and Texas) and the UK (Lancashire, Litchfield and London). Drawing on theoretical insights from the Science and Technology Studies (STS), legal and resource geographies, I empirically showed that both regulatory practices and resource materialities matter in encapsulating making of shale gas projects in different national contexts. Documenting how information production and its contestation is entangled with assemblages of materials and technologies, as well as regulatory, geoscientific and market interventions in the context of the UK and the US, this thesis offers an alternative account of the geography of transparency and regulation regarding the development of shale gas policies. The political viability of shale projects depends on how these informational spaces are generated, contested and transformed in nationally specific scientific practices and regulatory regimes.
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Shale gas development in the Great Karoo : the potential socio-economic impacts on the town of Beaufort-WestMentor, Daphne June 12 1900 (has links)
Thesis (MBA)--Stellenbosch University, 2012. / With the advent of shale gas exploration in the Karoo region, the purpose of this study was to investigate the possible socio-economic impacts of shale gas development on the town of Beaufort West in the Karoo.
A qualitative study method was used to establish possible socio economic impacts by reviewing literature with regard to existing shale gas development as well as a case study from the United States of America (USA).
A desktop study of Beaufort West was carried out to establish current socio economic trends in the town. Semi-structured interviews were conducted with key stakeholders to establish their concerns and opinion regarding the possibility of shale gas exploration and production in the area of Beaufort West in the Karoo.
The results of the study concluded that the concerns of the key stakeholders were definitely relevant as their livelihood would be threatened if there was any possibility of contamination of their water sources. Other possible socio economic impacts included infrastructure concerns with regard to road maintenance, tourism declining and the threat of noise and air pollution.
The study recommends that if the shale gas development process were to go ahead, the South African government would need to ensure that best practices are incorporated by all gas drilling companies. A team of qualified and trained regulators should monitor well pads and hydraulic fracturing methods as well as volumes of water used and the disposal of waste water. The regulations existing in the country should be revised to incorporate the stringent standards of other countries that have strict monitoring policies in place.
In order to protect the people of the Karoo and the heritage of South Africa, the government must ensure that gas companies are held liable for any kind of environmental or socio economic impact.
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USA’s policies on frackingShrivastava, Bulbul January 2017 (has links)
A research report submitted to the Faculty of Humanities, University of the Witwatersrand, Johannesburg, in partial fulfilment of the requirements for the degree of Master of Arts(International Relations), 2017 / In the past decade, the United States’ oil and gas industry experienced an extraordinary
boom, due to shale gas. Shale gas accounted for only 1.6% of total US natural gas production
in 2000, 4.1% by 2005, and an astonishing 23.1% by 2010. This remarkable growth has spurred
interest in exploring for shale gas resources elsewhere. The purpose of the study is how the
rise of fracking in the USA has impacted its foreign policy towards climate change. An
exploratory qualitative method, known as process-tracing was used, with the aim of providing
evidence-based literature in order to explore the change in the USA’s domestic energy and
climate policies; as well to see the change in its stance on climate change on the international
platform. Some of the key concluding findings relate to the Obama Administration’s
championing of the Clean Energy Act. / XL2018
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Ozone Pollution of Shale Gas Activities in North TexasAhmadi, Mahdi 05 1900 (has links)
The effect of shale gas activities on ground-level ozone pollution in the Dallas-Fort Worth area is studied in detail here. Ozone is a highly reactive species with harmful effects on human and environment. Shale gas development, or fracking, involves activities such as hydraulic fracturing, drilling, fluid mixing, and trucks idling that are sources of nitrogen oxides (NOX) and volatile organic compounds (VOC), two of the most important precursors of ozone. In this study two independent approaches have been applied in evaluating the influences on ozone concentrations. In the first approach, the influence of meteorology were removed from ozone time series through the application of Kolmogorov-Zurbenko low-pass filter, logarithmic transformation, and subsequent multi-linear regression. Ozone measurement data were acquired from Texas Commission on Environmental Quality (TCEQ) monitoring stations for 14 years. The comparison between ozone trends in non-shale gas region and shale gas region shows increasing ozone trends at the monitoring stations in close proximity to the Barnett Shale activities. In the second approach, the CAMx photochemical model was used to assess the sensitivity of ozone to the NOX and VOC sources associated with shale oil and gas activities. Brute force method was applied on Barnett Shale and Haynesville Shale emission sources to generate four hypothetical scenarios. Ozone sensitivity analysis was performed for a future year of 2018 and it was based on the photochemical simulation that TCEQ had developed for demonstrating ozone attainment under the State Implementation Plan (SIP). Results showed various level of ozone impact at different locations within the DFW region attributed to area and point sources of emissions in the shale region. Maximum ozone impact due to shale gas activities is expected to be in the order of several parts per billion, while lower impacts on design values were predicted. The results from the photochemical modeling can be used for health impact assessment and air quality management purposes. Both studies in this research show that the impact of shale gas development on local and regional level of ozone is significant, and therefore, it should be considered in the implementation of effective air quality strategies.
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