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  • 1
    Keywords: Zoology. ; Ecology . ; Biometry. ; Biotic communities. ; Population biology. ; Ecology Methodology. ; Zoology. ; Ecology. ; Biostatistics. ; Community and Population Ecology. ; Ecological Modelling.
    Description / Table of Contents: Part I. Literature reviews -- 1. Introductory issues on hierarchical analysis of occupancy and abundance of the Neotropical mammals -- 2. Small wild felids of South America: A review of studies, conservation threats and research needs -- 3. Patterns of occupancy and density of the small felids of tropical America -- 4. ales from southern Brazil: hierarchical modeling of occupancy, abundance, and density of Atlantic Forest and Pampa mammals -- 5. Modelling the abundance and spatial distribution of the guanaco (Lama guanicoe) in Patagonia: a review and future perspectives -- 6. Survey methods and hierarchical modeling for Mexican primates -- 7. Abundance, density, and occupancy of ungulates in the Maya Forest: A review -- Part II. Case studies -- 8. Factors influencing habitat occupancy by the spotted paca (Cuniculus paca) in Oaxaca, Mexico -- 9. Jaguars (Panthera onca) in the Llanos of Colombia and Venezuela: estimating distribution and population size by combining different modelling approaches -- 10. Using camera trap data to simultaneously estimate jaguar (Panthera onca) density and resource selection in the Paraguayan Dry Chaco -- 11. Abundance of Coimbra-Filho’s titi monkey in the Atlantic Forest, Brazil: use of N-mixture models for acoustic playback survey data -- 12. Modeling density and habitat preference of the mountain tapir (Tapirus pinchaque) in northern Peru using spatial mark-resight and occupancy models -- 13. Interweaving scientific and local ecological knowledge through studying the salience of wild mammals in two protected areas in the Monte ecoregion of Argentina -- 14. Occupancy modeling reveals that landscape-scale drive habitat use by white-tailed deer in the Tehuacán-Cuicatlán Biosphere Reserve, Mexico -- 15. Overview of hierarchical models and future directions in the study of Neotropical mammals.
    Abstract: This book reviews and synthesizes studies on local and regional occupancy and abundance of Neotropical mammals from central Mexico to South America. The book focuses primarily on addressing issues of a wide array of mammalian species from a population level in different habitats and ecosystems across the Neotropical region. Occupancy and abundance analyzed through hierarchical approaches with a variety of statistical tools are the central ecological parameters treated in the chapters of this volume. This book will be an updated reference for researchers, professionals, students, wildlife managers, and people interested in mammal ecology and conservation in tropical and subtropical regions.
    Type of Medium: Online Resource
    Pages: XXII, 355 p. 93 illus., 83 illus. in color. , online resource.
    Edition: 1st ed. 2023.
    ISBN: 9783031395666
    DDC: 590
    Language: English
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  • 2
    Keywords: Environmental chemistry. ; Green chemistry. ; Pollution. ; Environment. ; Environmental Chemistry. ; Green Chemistry. ; Pollution. ; Environmental Sciences.
    Description / Table of Contents: Preface -- Chapter 1. Green Photocatalyst for Diverge Applications -- Chapter 2. Photocatalysts and Photoelectrocatalysts in Fuel Cells and Photofuel Cells -- Chapter 3. Titania Based Heterojunctions for Hydrogen Generation by Water Photolysis -- Chapter 4. Quantum Dots in Green Photocatalytic Applications for Degradation of Environmental Pollutants and Hydrogen Evolution -- Chapter 5. Evolution of ZnO Based Photocatalyst for the Degradation of Pollutants -- Chapter 6. Designing Metal-Organic Frameworks Based Photocatalyst for Specific Photocatalytic Reactions: A Crystal Engineering Approach -- Chapter 7. Photobiocatalysis: At the Interface of Photocatalysis and Biocatalysts -- Chapter 8. Photo/electro-catalytic Applications of Visible Light Responsive Porous Graphitic Carbon Nitride Towards Environmental Remediation and Solar Energy Conversion -- Chapter 9. Photocatalyst for Indoor Air Pollution: A Brief Review -- Chapter 10. Two Dimensional-Based Materials for Photocatalysis Applications -- Chapter 11. Synthesis and Characterization of Single Phased BiFeO3 Nanostructures for Photocatalytic Applications: Hydrothermally Approach.
    Abstract: This book describes green photocatalysts and their diverse applications in the fields of environmental sciences and energy. It especially takes a closer look at the removal of air and water pollutants, the generation of hydrogen, photo fuel cells, electrophotocatalysts, solar energy conversions, and green biophotocatalysts. Furthermore it also discusses on the role of catalysts along with their chemical reactions, challenges, past developments and directions for further research on photocatalysts. It includes recent developments of quantum dots (QDs) and photocatalytic applications of QDs such as carbon materials like carbon and graphene based QDs, metal, metal sulfide and metal oxide based QDs as well as a detailed review on various types of templates used for the preparation of porous g-C3N4 and its applications in detail. This is done with special reference to dye degradation, reduction of hexavalent Cr, and reduction of CO2 and for the evolution of H2 photocatalytically. This book offers an intriguing and useful guide for a broad readership in various fields of catalysis, material sciences, environment and energy.
    Type of Medium: Online Resource
    Pages: XIV, 321 p. 118 illus. , online resource.
    Edition: 1st ed. 2020.
    ISBN: 9783030176389
    Series Statement: Environmental Chemistry for a Sustainable World, 36
    DDC: 577.14
    Language: English
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  • 3
    Keywords: Refuse and refuse disposal. ; Water. ; Hydrology. ; Pollution. ; Waste Management/Waste Technology. ; Water. ; Pollution.
    Description / Table of Contents: Chapter 1 Metal Oxides as Decontaminants of Water and Wastewater -- Chapter 2 Photo-Assisted Antimicrobial Activity of Transition Metal Oxides -- Chapter 3 Metal and Metal Oxide Nanomaterials for Wastewater Decontamination -- Chapter 4 MoS2 based nanocomposites for treatment of industrial effluents -- Chapter 5 Removal of Priority Water Pollutants Using Adsorption and Oxidation Process Combined with Sustainable Energy Production -- Chapter 6 Metal oxides for removal of arsenic contaminants from water -- Chapter 7 Earth Abundant Materials for Environmental Remediation and Commercialization -- Chapter 8 Arsenic Contamination: Sources, Chemistry and Remediation Strategies -- Chapter 9 Mycoremediation: An elimination of metal and nonmetal inclusions from polluted soil -- Chapter 10 Photocatalytic Degradation of Dyes in Wastewater Using Metal Organic Frameworks.
    Abstract: This book reviews principles, techniques and applications of metal, metal oxides, metal sulfides and metal-organic frameworks for removal and degradation of pollutants. Natural materials are often much more advanced than synthetic materials in terms of circularity and are functional, often biodegradable, recyclable and generate little waste. They are, therefore, a source of inspiration of new synthetic materials. In particular, recent research has focused on various types of functional materials such as organic, inorganic, nanostructured and composites for the remediation of environmental pollution.
    Type of Medium: Online Resource
    Pages: XIV, 285 p. 68 illus., 57 illus. in color. , online resource.
    Edition: 1st ed. 2021.
    ISBN: 9783030689766
    Series Statement: Environmental Chemistry for a Sustainable World, 64
    DDC: 363.728
    Language: English
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  • 4
    Publication Date: 2023-11-27
    Description: On 12 August 2021, a 〉220 s lasting complex earthquake with M〈sub〉w〈/sub〉 〉 8.2 hit the South Sandwich Trench. Due to its remote location and short interevent times, reported earthquake parameters varied significantly between different international agencies. We studied the complex rupture by combining different seismic source characterization techniques sensitive to different frequency ranges based on teleseismic broadband recordings from 0.001 to 2 Hz, including point and finite fault inversions and the back‐projection of high‐frequency signals. We also determined moment tensor solutions for 88 aftershocks. The rupture initiated simultaneously with a rupture equivalent to a M〈sub〉w〈/sub〉 7.6 thrust earthquake in the deep part of the seismogenic zone in the central subduction interface and a shallow megathrust rupture, which propagated unilaterally to the south with a very slow rupture velocity of 1.2 km/s and varying strike following the curvature of the trench. The slow rupture covered nearly two‐thirds of the entire subduction zone length, and with M〈sub〉w〈/sub〉 8.2 released the bulk of the total moment of the whole earthquake. Tsunami modeling indicates the inferred shallow rupture can explain the tsunami records. The southern segment of the shallow rupture overlaps with another activation of the deeper part of the megathrust equivalent to M〈sub〉w〈/sub〉 7.6. The aftershock distribution confirms the extent and curvature of the rupture. Some mechanisms are consistent with the mainshocks, but many indicate also activation of secondary faults. Rupture velocities and radiated frequencies varied strongly between different stages of the rupture, which might explain the variability of published source parameters.
    Description: Plain Language Summary: The earthquake of 12 August 2021 along the deep‐sea trench of the South Sandwich Islands in the South Atlantic reached a magnitude of 8.2 and triggered a tsunami. The automatic earthquake parameter determination of different agencies showed very different results shortly after the earthquake and partially underestimated the tsunami potential of the earthquake. A possible reason was the complex rupture process and that the tsunami was generated by a long and shallow slow slip rupture sandwiched between more conventional fast slip subevents at its northern and southern ends. In addition, the fault surface, which extended over 450 km, was highly curved striking 150°–220°. We investigated the different components of the seismic wavefields in different frequency ranges and with different methods. The analysis shows how even complex earthquakes can be deciphered by combining analyzing methods. The comparison with aftershocks and the triggered tsunami waves confirms our model that explains the South Sandwich rupture by four subevents in the plate boundary along the curved deep‐sea trench. Here, the depth, rupture velocities, and slip on each segment of the rupture vary considerably. The method can also be applied to other megathrust earthquakes and help to further improve tsunami warnings in the future.
    Description: Key Points: A combination of multiple approaches, inversion setups, and frequency ranges deciphered the complex earthquake of 2021 South Sandwich. The rupture consisted of four subevents with the largest occurring as a shallow slow rupture parallel to the South Sandwich Trench. Forward modeling proves that the large, shallow thrust subevent caused the recorded tsunami.
    Description: Bundesministerium für Bildung und Forschung http://dx.doi.org/10.13039/501100002347
    Description: Agencia Nacional de Investigación y Desarrollo http://dx.doi.org/10.13039/501100020884
    Description: https://ds.iris.edu/wilbert3/find_event
    Description: https://www.usgs.gov/natural-hazards/earthquake-hazards/lists-maps-and-statistics
    Description: http://www.ioc-sealevelmonitoring.org/
    Description: https://doi.org/10.7289/V5C8276M
    Description: https://www.gfz-potsdam.de/en/software/tsunami-wave-propagations-easywave
    Keywords: ddc:551.22 ; 2021 South Sandwich Earthquake ; seismic characteristics ; tsunamigenic characteristics
    Language: English
    Type: doc-type:article
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  • 5
    Publication Date: 2023-07-27
    Description: It has long been believed that climate shifts during the last 2 million years had a pivotal role in the evolution of our genus Homo. However, given the limited number of representative palaeo-climate datasets from regions of anthropological interest, it has remained challenging to quantify this linkage. Here, we use an unprecedented transient Pleistocene coupled general circulation model simulation in combination with an extensive compilation of fossil and archaeological records to study the spatiotemporal habitat suitability for five hominin species over the past 2 million years. We show that astronomically forced changes in temperature, rainfall and terrestrial net primary production had a major impact on the observed distributions of these species. During the Early Pleistocene, hominins settled primarily in environments with weak orbital-scale climate variability. This behaviour changed substantially after the mid-Pleistocene transition, when archaic humans became global wanderers who adapted to a wide range of spatial climatic gradients. Analysis of the simulated hominin habitat overlap from approximately 300–400 thousand years ago further suggests that antiphased climate disruptions in southern Africa and Eurasia contributed to the evolutionary transformation of Homo heidelbergensis populations into Homo sapiens and Neanderthals, respectively. Our robust numerical simulations of climate-induced habitat changes provide a framework to test hypotheses on our human origin.
    Language: English
    Type: info:eu-repo/semantics/article
    Format: application/pdf
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  • 6
    Publication Date: 2021-06-14
    Description: In 2018 we celebrated 25 years of development of radar altimetry, and the progress achieved by this methodology in the fields of global and coastal oceanography, hydrology, geodesy and cryospheric sciences. Many symbolic major events have celebrated these developments, e.g., in Venice, Italy, the 15th (2006) and 20th (2012) years of progress and more recently, in 2018, in Ponta Delgada, Portugal, 25 Years of Progress in Radar Altimetry. On this latter occasion it was decided to collect contributions of scientists, engineers and managers involved in the worldwide altimetry community to depict the state of altimetry and propose recommendations for the altimetry of the future. This paper summarizes contributions and recommendations that were collected and provides guidance for future mission design, research activities, and sustainable operational radar altimetry data exploitation. Recommendations provided are fundamental for optimizing further scientific and operational advances of oceanographic observations by altimetry, including requirements for spatial and temporal resolution of altimetric measurements, their accuracy and continuity. There are also new challenges and new openings mentioned in the paper that are particularly crucial for observations at higher latitudes, for coastal oceanography, for cryospheric studies and for hydrology. The paper starts with a general introduction followed by a section on Earth System Science including Ocean Dynamics, Sea Level, the Coastal Ocean, Hydrology, the Cryosphere and Polar Oceans and the “Green” Ocean, extending the frontier from biogeochemistry to marine ecology. Applications are described in a subsequent section, which covers Operational Oceanography, Weather, Hurricane Wave and Wind Forecasting, Climate projection. Instruments’ development and satellite missions’ evolutions are described in a fourth section. A fifth section covers the key observations that altimeters provide and their potential complements, from other Earth observation measurements to in situ data. Section 6 identifies the data and methods and provides some accuracy and resolution requirements for the wet tropospheric correction, the orbit and other geodetic requirements, the Mean Sea Surface, Geoid and Mean Dynamic Topography, Calibration and Validation, data accuracy, data access and handling (including the DUACS system). Section 7 brings a transversal view on scales, integration, artificial intelligence, and capacity building (education and training). Section 8 reviews the programmatic issues followed by a conclusion.
    Language: English
    Type: info:eu-repo/semantics/article
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  • 7
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    In:  XXVIII General Assembly of the International Union of Geodesy and Geophysics (IUGG)
    Publication Date: 2023-07-11
    Description: Smallholder farmers are critical to global food production and natural resource management. Due to increased competition for water resources and variability in rainfall due to climate change, chronic irrigation water scarcity is rising particularly in drought-prone regions like Vidarbha, Maharashtra (India). Improving irrigation water efficiency is critical to sustainable agricultural intensification. We have developed software that allows farmers to take decisions in real-time based on the implemented practices in their crops. By implementing a socio-hydrological dynamic model, the software provides a risk forecast of the yield and profit the user can expect at the end of the season under the current practices; in addition, the software computes the forecast of the production under a provided best practices scenario, so the users can compare and improve their practices. The model considers also as state variables the water storage water and biomass production, providing an understanding of the impact of the executed practices in the natural resources. We’ve focused on object-oriented programming (OOP) approach in order to optimise the management of the information. The app not only processes social and agricultural information provided by the user but also retrieves and continually updates climate datasets from the web, as well as market prices. The farmers can request the execution of the social-hydrological model to our servers from their own mobile devices, helping to the adoption of technologies. In addition, this software represents a useful tool to capture and follow information about the use of water by farmers.
    Language: English
    Type: info:eu-repo/semantics/conferenceObject
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  • 8
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    In:  XXVIII General Assembly of the International Union of Geodesy and Geophysics (IUGG)
    Publication Date: 2023-06-20
    Description: The objective of this research is to apply spaceborne Earth observation to assess the energy that could be cropped from ocean waves in the coastal zone, in view of supporting the renewable energy industry to optimize their design of wave energy farming. An assessment of the wave energy potential is given for the French Atlantic façade and Portuguese coastal zone, which is characterized by high energy swell generated by remote westerly wind systems. The French Atlantic façade is characterized also by the strong wave-current interaction that modulates the spatial wave variability and determines the magnitude of the wave power.Our approach is based on the empirical method of Gommenginger et al. (2003) to estimate the energy period, required for the computation of the wave power density from radar altimeters’ significant wave height and radar backscatter coefficient.The feasibility of high-resolution satellite altimetry-based assessment of wave renewable energy potential in the coastal zone is examined, taking advantage of the increased spatial coverage of high-resolution satellite altimetry data from the CryoSat-2 data, which is specifically processed with the SAMOSA+ model retracker, which is available in the ESA Altimetry Virtual Laboratory (https://earthconsole.eu/altimetry-virtual-lab/). The study comprises an 11-year timespan from January 2011 to December 2022.
    Language: English
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  • 9
    Publication Date: 2023-07-07
    Description: Extreme sea level (ESL) events are the phenomena that result in exceptional water level at the coast, which can cause flooding, inundation, and erosion. Recent global scale studies show that relative sea level rise will increase the recurrence of ESL events, by reducing their return period. Also, the compound nature of these events, including the contribution from pluvial, fluvial, and ocean processes, is now understood to affect key processes in estuarine and delta environments. The EOatSEE project (https://eoatsee.eu/), funded by ESA under the Earth Observation Science for Society programmatic line, aims to provide a data-driven description of ESL events as a mean to advance scientific knowledge on this subject matter. It shall foster a community effort, bringing together the EO data provider and the numerical modelling communities, to fully exploit the novel capabilities and synergies offered by the latest advances in EO technology. In this work, a literature review and a collection of needs from the scientific community enabled the identification of current scientific challenges and technical requirements associated with process understanding, predictability and vulnerability & risk assessment of ESL events. Increasing the understanding of the non-linear interactions between oceanic and fluvial processes, and considering coastal morphology response within long-term flooding risk assessments are some examples of the scientific challenges identified, which are to be studied within 9 scientific demonstrators over 6 different coastal regions. Within IUGG2023, a set of preliminary results shall also be presented, as innovative solutions are developed and produced along EOatSEE to address those challenges.
    Language: English
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  • 10
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    In:  XXVIII General Assembly of the International Union of Geodesy and Geophysics (IUGG)
    Publication Date: 2023-12-11
    Description: The characterization of a seismic source is crucial to understand seismogenic processes. Simplified source models, e.g., a moment tensor, may not be suited for certain physical processes, such as landslides or complex earthquake ruptures. We propose here a double source model to reproduce landslide processes, with two opposite oriented forces representing the detachment and impact of a sliding mass. A double source model is also suited to characterize complex earthquake ruptures, as it allows modeling the failure of two patches along a single or on two different faults. The inversion for a double source is implemented in a Bayesian bootstrap-based probabilistic inversion scheme with uncertainty estimation for all parameters. In the case of landslides, the source is described by two independent single forces and earthquakes are described by two dependent double-couples. The double single-force model includes 16 free parameters and the double double-couple model includes 18. Here we show the results obtained in the analysis of three different landslides (Val Bondasca-Switzerland 2017, Anak Krakatoa-Indonesia 2018 and Uttarakhand-India 2021) and two complex earthquake ruptures (Alaska 2018, South Sandwich islands 2021). Our findings show that our approach can resolve the landslide geometry and slope orientation. For the case of earthquakes, we were able to resolve the focal mechanism along two faults, which were active during the Alaska 2018 earthquake, as well as the time delay and orientation of the South Sandwich doublet in 2021.
    Language: English
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