Results 211 to 220 of about 108,770 (261)
Peroxodisulfate‐Enhanced Leaching of Deep‐Sea Manganese Crusts and Sulfides
Ammonium peroxodisulfate enables efficient leaching of deep‐sea manganese crusts and massive sulfides while offering electrolytic recycling. High leaching yields for V, Mn, Co, Mo, Sn, and W, along with complete leaching of As and Sb, highlight its potential as a powerful and sustainable oxidant for marine resource processing.
Bastian Hansel +5 more
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Comparative study and effects of urban green scape on the land surface temperature of a large metropolis and green city. [PDF]
Khan MS, Li Y.
europepmc +1 more source
Abstract The objective of this work is to demonstrate that the inclusion of an up‐flow anaerobic sludge bed (UASB reactor) within an industrial wastewater treatment plant reduces the plant's investment and operating costs compared to a system based solely on conventional complete‐mix activated sludge (CMAS), operating under the same design principles ...
Juan Manuel Morgan‐Sagastume +1 more
wiley +1 more source
Exploring urban land surface temperature using spatial modelling techniques: a case study of Addis Ababa city, Ethiopia. [PDF]
Eshetie SM.
europepmc +1 more source
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2019
An introduction to the chapter on Land Surface Temperature (LST). The basic thermal infrared theory is presented with example algorithms for the retrieval of LST and emissivity data are described in the later section. Various methods to validate satellite Land Surface Temperature (LST) products exist, but the most accurate and conclusive method is the ...
Hulley, Glynn C. +5 more
openaire +2 more sources
An introduction to the chapter on Land Surface Temperature (LST). The basic thermal infrared theory is presented with example algorithms for the retrieval of LST and emissivity data are described in the later section. Various methods to validate satellite Land Surface Temperature (LST) products exist, but the most accurate and conclusive method is the ...
Hulley, Glynn C. +5 more
openaire +2 more sources
Exploitation of AATSR land surface temperature
2012 IEEE International Geoscience and Remote Sensing Symposium, 2012The Advanced Along-Track Scanning Radiometer (AATSR) on board the sun-synchronous, polar orbiting satellite Envisat has provided land surface temperature (LST) products for nearly the past 10 years. Such data can be used to improve our ability to monitor and to understand land surface and climate change processes, such as desertification, urbanization,
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Impacts of Urban Land Use Land Cover Pattern on Land Surface Temperature
2020The impact of rising temperature due to climate change and its potential implications on human life in the past decade has become an issue of utmost significance. Rapid unplanned urbanization and its impact on land use change can be visualized spatially as well as temporally using remote sensing data combined with GIS.
Nimish, Gupta +2 more
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Mapping the Spatiotemporal Dynamics of Europe’s Land Surface Temperatures
IEEE Geoscience and Remote Sensing Letters, 2018The land surface temperature (LST) drives many terrestrial biophysical processes and varies rapidly in space and time primarily due to the earth’s diurnal and annual cycles. Models of the diurnal and annual LST cycle retrieved from satellite data can be reduced to several gap-free parameters that represent the surface’s thermal characteristics and ...
Panagiotis Sismanidis +3 more
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Diurnal cycles of land surface temperatures
Advances in Space Research, 1998Abstract Monthly mean diurnal cycles of temperatures over land, Ts, have been analyzed. Data include a 19-year climatology of station observations of ground and air temperatures, separately for all and clear skies (Tga, Tgc, Taa, Tac, respectively) over 75 sites in Russian, and a 7-year near-global climatology of satellite observations of surface ...
A. Ignatov, G. Gutman
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Soil and Surface Temperatures at the Viking Landing Sites
Science, 1976The annual temperature range for the martian surface at the Viking lander sites is computed on the basis of thermal parameters derived from observations made with the infrared thermal mappers. The Viking lander 1 (VL1) site has small annual variations in temperature, whereas the Viking lander 2 (VL2) site has large annual changes.
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