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  • 1
    Keywords: Environment ; Agriculture ; Ecosystems ; Sustainable development ; Sociology ; Human geography ; Sex (Psychology) ; Gender expression ; Gender identity ; Environment ; Sustainable Development ; Agriculture ; Gender Studies ; Ecosystems ; Human Geography
    Description / Table of Contents: PART I: Ester Boserup’s Intellectual Heritage --- 1. Ester Boserup: An Interdisciplinary Visionary Relevant for Sustainability --- 2. “Finding Out Is My Life”: Conversations with Ester Boserup in the 1990s --- 3. Boserup’s Theory on Technological Change as a Point of Departure for the Theory of Sociometabolic Regime Transition --- PART II Land Use, Technology and Agriculture --- 4. The Dwindling Role of Population Pressure in Land Use Change – a Case from the South West Pacific --- 5. Conceptual and Empirical Approaches to Mapping and Quantifying Land-Use Intensity --- 6. Malthusian Assumptions, Boserupian Response in Transition to Agriculture Models --- 7. Reconciling Boserup with Malthus: Agrarian Change and Soil Degradation in Olive Orchards in Spain (1750-2000) --- 8. Beyond Boserup: The Role of Working Time in Agricultural Development --- PART III: Population and Gender --- 9. Following Boserup’s Traces: From Invisibility to Informalisation of Women’s Economy to Engendering Development in Translocal Spaces --- 10. Daughters of the Hills: Gendered Agricultural Production, Modernisation, and Declining Child Sex Ratios in the Indian Central Himalayas --- 11. Revisiting Boserup’s Hypotheses in the Context of Africa --- 12. An Interpretation of Large-Scale Land Deals Using Boserup’s Theories of Agricultural Intensification, Gender and Rural Development --- 13. Labour Migration and Gendered Agricultural Asset Shifts in Southeastern Mexico: Two Stories of Farming Wives and Daughters --- 14. Working Time of Farm Women and Small-Scale Sustainable Farming in Austria --- 15. A Human Ecological Approach to Ester Boserup: Steps Towards Engendering Agriculture and Rural Development --- 16. Conclusions: Re-Evaluating Boserup in the Light of the Contributions to this Volume
    Pages: Online-Ressource (XXV, 267 pages) , 44 illustrations, 22 illustrations in color
    ISBN: 9789401786782
    Language: English
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  • 2
    Keywords: Environment ; Agriculture ; Ecosystems ; Sustainable development ; Sociology ; Human geography ; Sex (Psychology) ; Gender expression ; Gender identity ; Environment ; Sustainable Development ; Agriculture ; Gender Studies ; Ecosystems ; Human Geography
    Description / Table of Contents: PART I: Ester Boserup’s Intellectual Heritage --- 1. Ester Boserup: An Interdisciplinary Visionary Relevant for Sustainability --- 2. “Finding Out Is My Life”: Conversations with Ester Boserup in the 1990s --- 3. Boserup’s Theory on Technological Change as a Point of Departure for the Theory of Sociometabolic Regime Transition --- PART II Land Use, Technology and Agriculture --- 4. The Dwindling Role of Population Pressure in Land Use Change – a Case from the South West Pacific --- 5. Conceptual and Empirical Approaches to Mapping and Quantifying Land-Use Intensity --- 6. Malthusian Assumptions, Boserupian Response in Transition to Agriculture Models --- 7. Reconciling Boserup with Malthus: Agrarian Change and Soil Degradation in Olive Orchards in Spain (1750-2000) --- 8. Beyond Boserup: The Role of Working Time in Agricultural Development --- PART III: Population and Gender --- 9. Following Boserup’s Traces: From Invisibility to Informalisation of Women’s Economy to Engendering Development in Translocal Spaces --- 10. Daughters of the Hills: Gendered Agricultural Production, Modernisation, and Declining Child Sex Ratios in the Indian Central Himalayas --- 11. Revisiting Boserup’s Hypotheses in the Context of Africa --- 12. An Interpretation of Large-Scale Land Deals Using Boserup’s Theories of Agricultural Intensification, Gender and Rural Development --- 13. Labour Migration and Gendered Agricultural Asset Shifts in Southeastern Mexico: Two Stories of Farming Wives and Daughters --- 14. Working Time of Farm Women and Small-Scale Sustainable Farming in Austria --- 15. A Human Ecological Approach to Ester Boserup: Steps Towards Engendering Agriculture and Rural Development --- 16. Conclusions: Re-Evaluating Boserup in the Light of the Contributions to this Volume
    Pages: Online-Ressource (XXV, 267 pages) , 44 illustrations, 22 illustrations in color
    ISBN: 9789401786782
    Language: English
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  • 3
    Publication Date: 2015-09-29
    Description: The growth in Austria's raw material consumption (RMC) or material footprint is driven by changes in consumption and production. In using the tool of structural decomposition analysis and applying it to Austrian RMC between 1995 and 2007, three specific drivers (technology, composition, and volume of final demand) are identified and quantified. The overall growth of Austrian RMC across the period of time under investigation shows that neither improved production or consumption efficiency nor reduction of consumption alone can lead to absolute material savings. The “rebound effect” has been used to describe how efficiency gains can be offset by growth in overall consumption, putting “degrowth” on the agenda of sustainability sciences and political movements. Absolute decoupling, that is, simultaneous growth in gross domestic product (GDP) and reduction of RMC, can only be achieved if reductions in final demand volume as a driver of material use are not offset by increases as a result of the changing final demand mix and/or technology effect (and vice versa). The Austrian case study provides very little evidence for such developments having occurred simultaneously during the period of time under investigation. In order for economic degrowth to contribute to lower material use and thus greater environmental protection, it must occur not only quantitatively, but also qualitatively in production and consumption structures.
    Print ISSN: 1088-1980
    Electronic ISSN: 1530-9290
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by Wiley
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  • 4
    Publication Date: 2013-10-01
    Description: In 2007, imports accounted for approximately 34% of the material input (domestic extraction and imports) into the Austrian economy and almost 60% of the GDP stemmed from exports. Upstream material inputs into the production of traded goods, however, are not yet included in the standard framework of material flow accounting (MFA). We have reviewed different approaches accounting for these upstream material inputs, or raw material equivalents (RME), positioning them in a wider debate about consumption-based perspectives in environmental accounting. For the period 1995–2007, we calculated annual RME of Austria's trade and consumption applying a hybrid approach. For exports and competitive imports, we used an environmentally extended input-output model of the Austrian economy, based on annual supply and use tables and MFA data. For noncompetitive imports, coefficients for upstream material inputs were extracted from life cycle inventories. The RME of Austria's imports and exports were approximately three times larger than the trade flows themselves. In 2007, Austria's raw material consumption was 30 million tonnes or 15% higher than its domestic material consumption. We discuss the material composition of these flows and their temporal dynamics. Our results demonstrate the need for a consumption-based perspective in MFA to provide robust indicators for dematerialization and resource efficiency analysis of open economies.
    Print ISSN: 1088-1980
    Electronic ISSN: 1530-9290
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by Wiley
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  • 5
    Publication Date: 2015-05-01
    Description: The indicator domestic material consumption (domestic extraction + imports – exports) is widely used to track the scale, composition, and dynamics of material use. As production increasingly occurs at a spatial distance from the demand it ultimately satisfies, new accounting challenges arise that this indicator may not be able to meet. In response, indicators in raw material equivalents (RME) have been developed to account for material use, no matter where it occurs, associated with final demand. RME indicators are most commonly calculated based on monetary input-output tables with material extensions. The resulting indicators, which are rapidly gaining scientific and political importance, must be interpreted as stemming from a mixed monetary and physical accounting approach. How such an approach differs from a physical accounting approach is shown in this article using an input-output model with a material extension. Neither the physical nor the mixed monetary and physical approach is found to generate results which are incorrect. Instead, the results must be interpreted in light of the assumptions entailed in the approach on which they are based. In making possibilities and limits of interpretation in both cases transparent, RME indicators can more readily be discussed and used by sustainability scientists and practitioners.
    Electronic ISSN: 2071-1050
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by MDPI Publishing
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  • 6
    Publication Date: 2015-02-26
    Description: Land use is recognized as a pervasive driver of environmental impacts, including climate change and biodiversity loss. Global trade leads to “telecoupling” between the land use of production and the consumption of biomass-based goods and services. Telecoupling is captured by accounts of the upstream land requirements associated with traded products, also commonly referred to as land footprints. These accounts face challenges in two main areas: (1) the allocation of land to products traded and consumed and (2) the metrics to account for differences in land quality and land-use intensity. For two main families of accounting approaches (biophysical, factor-based and environmentally extended input-output analysis), this review discusses conceptual differences and compares results for land footprints. Biophysical approaches are able to capture a large number of products and different land uses, but suffer from a truncation problem. Economic approaches solve the truncation problem, but are hampered by the limited disaggregation of sectors and products. In light of the conceptual differences, the overall similarity of results generated by both types of approaches is remarkable. Diametrically opposed results for some of the world's largest producers and consumers of biomass-based products, however, make interpretation difficult. This review aims to provide clarity on some of the underlying conceptual issues of accounting for land footprints.
    Print ISSN: 1088-1980
    Electronic ISSN: 1530-9290
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by Wiley
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  • 7
    Publication Date: 2014-07-03
    Description: Resolving challenges related to the sustainability of natural capital and ecosystem services is an urgent issue. No roadmap on reaching sustainability exists; and the kind of sustainable land use required in a world that acknowledges both multiple environmental boundaries and local human well-being presents a quandary. In this commentary we argue that a new globally consistent and expandable systems-analytical framework is needed to guide and facilitate decision making on sustainability from the planetary through to the local level, and vice versa. This framework would strive to link a multitude of Earth-system processes and targets; it would give preference to systemic insight over data complexity through being highly explicit in spatio-temporal terms. Its strength would lie in its ability to help scientists uncover and explore potential, and even unexpected, interactions between Earth's subsystems with planetary environmental boundaries and socioeconomic constraints coming into play. Equally importantly, such a framework would allow countries like Brazil, a case study in this article, to understand domestic or even local sustainability measures within a global perspective and to optimize them accordingly.
    Electronic ISSN: 2328-4277
    Topics: Geosciences
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  • 8
    Publication Date: 2018-06-12
    Description: Sustainability, Vol. 10, Pages 1961: Works in Favor of Extraction: Labor in Land-Use Competition Sustainability doi: 10.3390/su10061961 Authors: Anke Schaffartzik Despite their negative social and environmental consequences, claims to land for resource extraction are dominantly asserted under conditions of land-use competition. The ‘success’ of the extractive expansion relies on very specific labor arrangements. Through dispossession and unfulfilled promises of long-term employment, an overabundance of labor (or employment gap) is generated at extractive sites. Poverty is exploited in order to sustain business as usual: environmental degradation, low average wages and high wage inequality, and abysmal working conditions. In resolving global land-use competition for sustainability transformations, it is necessary to address labor arrangements as a mechanism through which the claim to land for resource extraction is asserted.
    Electronic ISSN: 2071-1050
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by MDPI Publishing
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  • 9
    Publication Date: 2017-06-25
    Print ISSN: 0940-5550
    Topics: Biology , Energy, Environment Protection, Nuclear Power Engineering , Philosophy
    Published by oekom
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  • 10
    Publication Date: 2018-07-28
    Description: Sustainability, Vol. 10, Pages 2650: Latecomers to the Fossil Energy Transition, Frontrunners for Change? The Relevance of the Energy ‘Underdogs’ for Sustainability Transformations Sustainability doi: 10.3390/su10082650 Authors: Anke Schaffartzik Marina Fischer-Kowalski The global energy system subsumes both extreme wealth (and waste) and extreme poverty. A minority of the global population is consuming the majority of the fossil fuel-based energy and causing global warming. While the mature industrialized economies maintain their high levels of energy consumption, the emerging economies are rapidly expanding their fossil energy systems, emulating traditional patterns of industrialization. We take a global, socio-metabolic perspective on the energy transition phases—take-off, maturation, and completion—of 142 countries between 1971 and 2015. Even within our global fossil energy system, the transition to fossil energy is still ongoing; many countries are in the process of replacing renewable energy with fossil energy. However, due to globally limited supplies and sinks, continuing the fossil energy transition is not an indefinite option. Rather than a “Big Push” for renewable energy within pockets of the fossil energy system, a sustainability transformation is required that would change far more than patterns of energy supply and use. Where this far-reaching change requires pushing back against the fossil energy system, the energy underdogs—the latecomers to the fossil energy transition—just might come out on top.
    Electronic ISSN: 2071-1050
    Topics: Energy, Environment Protection, Nuclear Power Engineering
    Published by MDPI Publishing
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