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Hannah E. Ross Paul Hagin Mark D. Zoback 《International Journal of Greenhouse Gas Control》2009,3(6):773-786
Coalbeds are an attractive geological environment for storage of carbon dioxide (CO2) because CO2 is retained in the coal as an adsorbed phase and the cost of injection can be offset by enhanced coalbed methane (ECBM) production. This paper presents the findings of a CO2 storage feasibility study on coalbeds in the Wyodak-Anderson coal zone of the Powder River Basin, Wyoming, USA, using reservoir characterization and fluid flow simulations. A 3D numerical model of the Big George coal was constructed using geostatistical techniques, with values of cleat and matrix permeability and porosity constrained through history-matching of production data from coalbed methane (CBM) wells in the field area.Following history-matching, several ECBM and CO2 storage scenarios were investigated: shrinkage and swelling of the coal was either allowed or disallowed, a horizontal hydraulic fracture was either placed at the injection well or removed from the model, the number of model layers was varied between 1 and 24, and the permeability and porosity fields were constructed to be either homogeneous or heterogeneous in accordance with geostatistical models of regional variability. All simulations assumed that the injected gas was 100% CO2 and that the coalbed was overlain by an impermeable caprock. Depending on the scenario, the simulations predicted that after 13 years of CO2 injection, the cumulative methane production would be enhanced by a factor of 1.5–5. Including coal matrix shrinkage and swelling in the model predicted swelling near the injection well, which resulted in a slight reduction (10%) in injection rate. However, including a horizontal hydraulic fracture in the model at the base of the injection well helped mitigate the negative effect of swelling on injection rate. It was also found that six model layers were needed to have sufficient resolution in the vertical direction to account for the buoyancy effects between the gas and resident water, and that capturing the heterogeneous nature of the coal permeability and porosity fields predicted lower estimates of the storage capacity of the Wyodak-Anderson coal zone.After noting that gravity and buoyancy were the major driving forces behind gas flow within the Big George coal, several leakage scenarios were also investigated, in an effort to better understand the interplay between diffusion and flow properties on the transport and storage of CO2. The modeling predicted that the upward migration of gas due to the buoyancy effect was faster than the diffusion of CO2 and therefore the gas rapidly rose to the top of the coalbed and migrated into overlying strata when an impermeable caprock was not included in the model. 相似文献
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Gustin MS Chavan PV Dennett KE Marchand EA Donaldson S 《Journal of environmental quality》2006,35(6):2352-2359
Mercury associated with natural enrichment, historic mining, and ore processing is a contaminant of concern in watersheds of the western USA. In this region, water is a highly managed resource and wetlands, known to be important sites of methyl mercury production, are often an integral component of watersheds. This study applied controlled manipulations of four replicated experimental wetland designs with different water and soil mercury concentrations to determine the potential impacts on methyl mercury export. Wetlands were manipulated by drying and wetting, changing hydraulic retention time, and adding sulfate and nitrate to influent waters. In a summer drying and wetting manipulation, an immediate increase in total methyl mercury release was observed with rewetting, however, concentrations decreased quickly. Drying all wetlands over the winter and rewetting in the spring resulted in high net methyl mercury output relative to that observed before drying. Net methyl mercury output was not influenced by changes in hydraulic retention time from 4 to 8 h or to 30 min, or by increasing the nitrate concentration from 0.1 to 10 mg L(-1). The addition of sulfate to the inlet waters of two mesocosms to increase concentrations from approximately 100 to 250 mg L(-1) did not result in a clear effect on methyl mercury output, most likely due to sulfate concentrations being higher than optimal for methyl mercury production. Despite the lack of response to sulfate amendments, the change in sulfate concentration between the inlet and outlet of the mesocosms and temperature were the parameters best correlated with methyl mercury outputs. 相似文献
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A theory of leader developmental readiness is examined comprised of leaders' motivation and ability to develop. Early theory-building and testing suggests leaders' motivation to develop is promoted through interest and goals, learning goal orientation, and developmental efficacy; while leaders' ability to develop is promoted through self-awareness, self-complexity, and meta-cognitive ability. Copyright © 2010 John Wiley & Sons, Ltd. 相似文献
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Despite an array of policies at the federal and state level aimed at regulating stormwater discharges, engineered solutions
enforced by local governments often fall short of meeting water quality standards. Although the implications of land use planning
and development regulations are important for stormwater management, they are often overlooked as critical initial steps to
improving water quality. This study explores the role of ‘form-based’ regulations as tools for achieving urban planning and
water quality objectives. Form-based codes are a new generation of development codes aimed at regulating urban development
based on urban form and density, rather than land use. We present an exploratory case study of the feasibility of form-based
codes in the Jordan Lake Watershed in North Carolina, a rapidly growing region where fragmented local governments face stringent
nutrient reduction standards under new state regulations. Through program analysis and interviews, we explore the viability
of form-based codes for reducing development impacts on Jordan Lake’s water quality. We consider the legal feasibility of
code enforcement, regional and local barriers and opportunities, and implementation given existing regulatory frameworks.
Our findings suggest that high quality information and data modeling are foundational to gaining support for a consensus agreement
on the sources and degree of water quality impairment. Furthermore, implementing form-based solutions for water quality is
greatly aided by (1) experienced regional planning bodies that have regulatory authority, and (2) local governments whose
staff are experienced in implementing complex development ordinances, reviewing architectural renderings, and communicating
development requirements with the public and developers. 相似文献
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Lagmay AM Tengonciang AM Rodolfo RS Soria JL Baliatan EG Paguican ER Ong JB Lapus MR Fernandez DF Quimba ZP Uichanco CL 《Disasters》2008,32(3):416-433
A rockslide-debris avalanche destroyed the remote village of Guinsaugon in Southern Leyte, Philippines, on 17 February 2006. Although search and rescue procedures were implemented immediately, the scale of the landslide and a lack of information about its nature resulted in unfocused and imprecise efforts in the early days of the operation. Technical support was only introduced five days after the event, provided by a team of volunteer geologists, geophysicists, and meteorologists. By the time search and rescue operations were transferred to specific target sites, however, the chances of finding survivors trapped under the rubble had diminished. In such critical situations, speed, accuracy, and the maximum appropriation of resources are crucial. We emphasise here the need for a systematic and technically informed approach to search and rescue missions in large-scale landslide disaster contexts, and the formulation of better disaster management policies in general. Standard procedures must be developed and enforced to improve how civil authorities respond to natural calamities. 相似文献
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