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This special issue editorial explores potential research interfaces between human geography and the rapidly unfolding concept and practices of the “green economy”. The article outlines a range of critical issues about the green economy that are particularly pertinent and suited to geographical analysis. The first concerns questions around the construction of the green economy concept and critical questioning of current, largely hegemonic neoliberal, growth‐focused and technocentric definitions of the green economy. The second broaches the spatial complexities of green economic transitions, while the third discusses the need for critical appraisal of the logics and mechanisms of governance and transition that see the green economy as a key mechanism for economic, social and environmental change. The fourth focuses on the crucial issue of micro‐level and individual practices and behaviour, and on links between individual behaviour and wider economic‐environmental governance and economic systems. Finally, the article discusses the need for scholars to engage in imaginative consideration of alternatives to current, growth‐focused paradigms and conceptualizations of the green economy.  相似文献   
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Hyperspectral (multiple, narrow band) satellite imaging provides a useful discovery and analytical tool for archaeologists. The Hyperion instrument, flying on the Earth Observer 1 (EO-1) satellite, was launched from Vandenberg Air Force Base on November 21, 2000. Unlike 7-band Landsat or 15-band ASTER imagery, Hyperion provides 242 (196 calibrated) narrow bands in the visible (VIS) to shortwave infrared range (SWIR), enabling much more detailed archaeological and geological analyses. It was designed as a spectrometer specifically geared to mineralogical analysis, and the imagery is freely available via data acquisition (targeting) requests from NASA. We requested a Hyperion image swath targeted on Khirbat en-Nahas (KEN), an ancient copper smelting site along the Wadi al-Ghuwayb (WAG), a part of Jordan’s Faynan district, where extensive ore processing occurred from the 3rd millennium BCE to industrial scale production over several centuries in the early 1st millennium BCE (Iron Age) and continued until Medieval Islamic times. We use a combination of Principal Components Analysis (PCA), similarity matrices, and Spectral Mixture Analysis (SMA) on a single image swath to help locate additional ore processing sites, distinguish different areas at KEN that drew on different ore deposits, and discern depositional differences that may help illuminate issues related to the organization of production at KEN. Extensive field surveys in the research area provide a unique opportunity to ‘ground-truth’ the results of the hyperspectral research. The results of our study show considerable promise for future work with Hyperion data sets, and illuminate new aspects of the copper smelting industry at Khirbat en-Nahas. However, the low spatial resolution of the imagery and the nature of weakly reflective bands in the near infrared (NIR) limit the utility of the results.  相似文献   
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