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Sökning: WFRF:(Ernstson Henrik Dr. 1972 ) > (2024)

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1.
  • Ernstson, Henrik, Dr. 1972-, et al. (författare)
  • Wasting CO2 and the Clean Development Mechanism : The remarkable success of a climate failure
  • 2024
  • Ingår i: Environment and Planning E. - : SAGE Publications. - 2514-8486 .- 2514-8494. ; 7:2, s. 654-680
  • Tidskriftsartikel (refereegranskat)abstract
    • This paper examines how global climate mitigation policies articulate with urban political–ecological transformations. It focuses on South African waste-to-value projects as case studies, exploring how local processes of urban ecological modernization combine with global climate finance through the now largely defunct Clean Development Mechanism (CDM). Whilst it is generally recognized that waste-related CDM projects in South Africa (and elsewhere) have been an unmitigated failure in terms of climate and socio-economic benefits, we demonstrate that landfillto-gas/energy projects have functioned effectively as geographical–discursive dispositifs through which particular knowledge systems are enrolled, specific ‘solutions’ are projected, and singular imaginaries of what is possible and desirable foregrounded, thereby crowding out alternative possibilities. This not only nurtures the commodification and marketization of non-human matter with an eye towards sustaining capital accumulation but, rather more importantly, successfully installs state-orchestrated private property relations around common resources, thereby deepening the dispossessing socio-ecological relations upon which expanded capitalist reproduction rests. We argue that whilst the formal outcome of the CDM is a failure, its success resides precisely in how it permitted local and global elites to create administrative and regulatory practices that solidify and naturalize a neoliberal market-based framework to approach the climate crisis.
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2.
  • Paul, Seema, et al. (författare)
  • A shallow water numerical method for assessing impacts of hydrodynamics and nutrient transport processes on water quality values of Lake Victoria
  • 2024
  • Ingår i: Heliyon. - : Elsevier BV. - 2405-8440. ; 10:3
  • Tidskriftsartikel (refereegranskat)abstract
    • Lake Victoria is the world’s largest tropical lake and the third-largest water body, providingsignificant water resources for surrounding environments including the cultural, societal, andlivelihood needs of people in its basin and along the White Nile. The aim of this study was to usedecade-long time series of measured lake flow in the lake system and phosphorus deposition todevelop a suitable numerical model based on shallow water equations (SWE) for assessing waterquality in Lake Victoria, an increasingly important tool under climate variation. Different tech-niques were combined to identify a numerical model that included: i) a high-resolution SWEmodel to establish raindrop diffusion to trace pollutants; ii) a two-dimensional (2D) verticallyintegrated SWE model to establish lake surface flow and vertically transported wind speed flowacting on lake surface water by wind stress; and iii) a site-specific phosphorus deposition sub-model to calculate atmospheric deposition in the lake. A smooth (non-oscillatory) solution wasobtained by applying a high-resolution scheme for a raindrop diffusion model. Analysis with thevertically integrated SWE model generated depth averages for flow velocity and associatedchanges in water level profile in the lake system and showed unidirectional whole lake windblowing from the southwest to northeast. The atmospheric phosphorous deposition modelenabled water value assessment for mass balances with different magnitudes of both inflows andoutflows demonstrating annual total phosphorus at 13, 500 tons concentrating at mid-lakewestern and eastern parts. The model developed here is simple and suitable for use in assess-ing flow changes and lake level changes and can serve as a tool in studies of lake bathymetry andnutrient and pollution transport processes. Our study opens towards refining models of complexshallow-water systems
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