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  • Hochschulschrift  (8)
  • Antirassismus
  • Bioclimatology.
  • Ecology
  • Gründer
  • Heidegger, Martin,-1889-1976
  • Refuse and refuse disposal.
  • 1
    Keywords: Environmental management. ; Sustainability. ; Bioclimatology. ; Environmental health. ; Climatology.
    Description / Table of Contents: Part 1: Urban Green Infrastructure and Climate Mitigation -- Part 2: Human Experience and Well-being in Urban Environments -- Part 3: Adaptation, Livelihood, and Social Dynamics.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(XIV, 394 p. 171 illus., 133 illus. in color.)
    Edition: 1st ed. 2024.
    ISBN: 9783031549113
    Series Statement: Advances in Science, Technology & Innovation, IEREK Interdisciplinary Series for Sustainable Development
    Language: English
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  • 2
    Online Resource
    Online Resource
    Cham : Springer Nature Switzerland | Cham : Imprint: Springer
    Keywords: Water. ; Hydrology. ; Freshwater ecology. ; Marine ecology. ; Environmental chemistry. ; Environmental monitoring. ; Bioclimatology.
    Description / Table of Contents: 1. History of Aquatic Toxicology -- 2. Introduction to Aquatic Toxicology -- 3. Model Organisms Used in Aquatic Toxicology -- 4. Freshwater toxicity tests and experimental environment procedures -- 5. LC50 Determination and Probit Analysis -- 6. Sampling Methods in Aquatic Toxicology -- 7. Classification of Pollution and Their Entry Rotues into Aquatic Ecosystems -- 8. Toxicology Mechanisms of Pollutants -- 9. Nanotoxicology -- 10. Experimental Animal Preference in Aquatic Toxicology.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(XI, 182 p. 13 illus., 11 illus. in color.)
    Edition: 1st ed. 2024.
    ISBN: 9783031566691
    Series Statement: Springer Water
    Language: English
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  • 3
    Online Resource
    Online Resource
    Cham : Springer Nature Switzerland | Cham : Imprint: Springer
    Keywords: Refuse and refuse disposal. ; Sustainability. ; Economic geography. ; Environment.
    Description / Table of Contents: A comprehensive review on the development of zero waste management -- Crop residue management practices for sustaining soil health -- Biostimulation of microbes for enhanced oil removal from petroleum hydrocarbon contaminated soils: A zero waste remediation approach.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(XVII, 341 p. 53 illus., 49 illus. in color.)
    Edition: 1st ed. 2024.
    ISBN: 9783031572753
    Language: English
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  • 4
    Keywords: Refuse and refuse disposal. ; Plant genetics. ; Plant biotechnology.
    Description / Table of Contents: Chapter 1. Biologically Active Compounds from Medicinal and Aromatic Plants for Industrial Applications (Sevinç Yeşilyurt) -- Chapter 2. In-vitro propagation to conserve medicinally important plants: insight, procedures, and opportunities (Samridha V) -- Chapter 3. Harnessing In-Vitro Propagation for the Sustainable Conservation of Medicinal Plants: Challenges and Prospects (Yogesh K. Ahlawat) -- Chapter 4. Response of Cultivated Industrial Crops to Abiotic Stress: Strategies to Enhance Target Metabolite Productivity (Rakesh Chandra Nainwal) -- Chapter 5. Clove: Tiny buds with global fame (Leila Mohtashami, Shokoufeh Aalinezhad) -- Chapter 6. Konkan's Curcuma: Insights into Morphological and Genetic Diversity, Phytochemical Treasures, and In-vitro Micropropagation (Hafsa Shaikh) -- Chapter 7. Recent Advances in Extraction, Analysis, Value Addition, and Applications of Essential Oils (Munmun Kumar Singh) -- Chapter 8. Green Techniques for The Extraction of Bioactives from Withania somnifera for Agro-Industrial Potential (Arti Shukla) -- Chapter 9. Phytochemical importance of medicinal plants as potential sources against neurodegenerative diseases (Vibha Pandey) -- Chapter 10. Exploring Therapeutic Potential of Indian Ayurvedic Plants for Parkinson's Disease Treatment (Philip Thomas) -- Chapter 11. Computational Strategies for Maximizing Biomass and Metabolite Yields for Bioproduction (Yogesh K. Ahlawat) -- Chapter 12. Plant Essential Oils as Multifunctional Biomolecules for Applications in Therapeutics, Food and Industry (Irshika Divanji) -- Chapter 13. Phytotherapy: An alternative approach to treat Glioblastoma (Pratibha Kumari) -- Chapter 14. Gene-based Management of Alzheimer’s Disease: Role of Coumarins of Ferulago Genus (Farid Dabaghian) -- Chapter 15. Harnessing the power of aromatic and medicinal plants for natural product innovation (Shiuly Bhowmick).
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(VI, 222 p. 117 illus., 23 illus. in color.)
    Edition: 1st ed. 2024.
    ISBN: 9783031601170
    Series Statement: Sustainable Landscape Planning and Natural Resources Management, IEREK Interdisciplinary Series for Sustainable Development
    Language: English
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  • 5
    Online Resource
    Online Resource
    Cham : Springer Nature Switzerland | Cham : Imprint: Springer
    Keywords: Refuse and refuse disposal. ; Environmental engineering. ; Biotechnology. ; Bioremediation. ; Sustainability.
    Description / Table of Contents: Chapter 1 Fundamentals of industrial sludge -- Chapter 2 Management of textile industry sludge for environmental sustainability -- Chapter 3 Sustainable management of oily petroleum refinery sludge through anaerobic digestion with bioenergy production -- Chapter 4 Hydrothermal carbonization of industrial sludge -- Chapter 5 Sustainable management of industrial sludge through vermistabilization utilizing pollutants loaded spent biochar produced from wastewater treatment process -- Chapter 6 Production of microbial fuel cell material from industrial wastewater sludge -- Chapter 7 Industrial sludge as adsorbent for wastewater treatment and reclamation -- Chapter 8 Sustainable utilization of industrial sludge in the construction industry -- Chapter 9 Utilization of waste sludge and poplar trees for remediation -- Chapter 10 Sustainable production of enzymes using industrial sludge -- Chapter 11 Sustainable application of industrial sludge in agriculture land -- Chapter 12 Production of biodiesel from industrial sludge -- Chapter 13 Advancement in sustainable management and valorization of solid waste through composting and vermitechnology.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(XXII, 400 p. 52 illus., 49 illus. in color.)
    Edition: 1st ed. 2024.
    ISBN: 9783031584565
    Language: English
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  • 6
    Keywords: Refuse and refuse disposal. ; Renewable energy sources. ; Environmental management. ; Microbial ecology.
    Description / Table of Contents: Introduction -- General view on synergies and trade-offs using wastewater and anaerobic processes for current in the form of biomass, CH4 and H2 as well as energy production systems -- Anaerobic Digestion -- Decreasing the retention time as a way for stabilizing anaerobic digestion processes -- Dark Fermentation -- Microbial population dynamics in continuous hydrogen production systems by dark fermentation of tequila vinasse -- Practical applications of dark fermentation for hydrogen production -- Biohydrogen Production: A Focus on Dark Fermentation Technology -- Experiences of Biohydrogen Production from various feedstocks by Dark Fermentation at laboratory scale -- Microbial communities in Dark Fermentation, analytical tools to elucidate key microorganisms and metabolic profiles -- Microbial Fuel Cells -- Microbial fuel cell systems for wastewater treatment and energy generation from organic carbon and nitrogen: fundamentals, optimization, and novel processes -- Microbial Electrolysis Cells -- Online optimization of Microbial Electrolysis Cells -- Bioethanol and Butanol Systems -- Optimizing Bioethanol Production via Extremum Seeking Control in a Continuous Stirred Tank Bioreactor -- Performance evaluation of the non-structured and structured kinetic modelling for the abe process. From batch to continuous fermentation -- Microalgae -- Microalgae-Based Diesel: A Historical Perspective to Future Directions -- Bioconversion of industrial CO2 into synthetic fuels -- Future trends -- Bioprocesses Coupling for Biohydrogen Production: Applications and Challenges -- Harvesting biofuels with Microbial Electrochemical Technologies (METs): state of the art and future challenges -- Evolution of the biorefinery concept and its evaluation tools toward a circular bioeconomy.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource(XVIII, 371 p. 78 illus., 74 illus. in color.)
    Edition: 1st ed. 2024.
    ISBN: 9783031577352
    Series Statement: Springer Water
    Language: English
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  • 7
    Keywords: Aquatic ecology ; Biodiversity ; Conservation biology ; Ecology ; Marine sciences ; Oceanography
    Description / Table of Contents: Intro -- Assessments and Conservation of Biological Diversity From Coral Reefs to the Deep Sea: Uncovering Buried Treasures and the ... -- Copyright -- Contents -- About the author -- Foreword to ``Assessments and conservation of biological diversity from coral reefs to the deep sea: Uncovering buried trea ... -- Preface -- Acknowledgments -- Chapter 1: The seabed-Where life began and still evolves -- Introduction -- Setting the place-Biogeographical regions and abiotic components of the seafloor -- Expeditions to the deep blue -- Pelagic-benthic connections (and vice versa) -- Connectivity within benthic species -- How common is benthic continuity and cosmopolitanism? -- Higher diversity of benthic macrofauna -- Porifera -- Crustacea -- Echinodermata -- Cnidaria, Mollusca, and other phyla -- Marine microbial diversity -- Generation of biodiversity -- Marine symbioses-Getting to know each other better -- Corals provide the structure for many benthic ecosystems -- Possible origins of biodiversity -- References -- Chapter 2: Multiple approaches to understanding the benthos -- Living in the era of big science -- Big experiments on the seafloor are difficult -- Informative maps show a way -- Genetic and genomic maps -- Leading wedge technologies for benthic assessments -- Submersibles and remotely operated vehicles (ROVs) are leading wedges that visit the ocean floor -- Benthic monitoring-All eyes on the sea -- Underwater soundscapes, landscapes, and unexpected sources of innovation -- The rise of artificial intelligence (AI) -- Biotechnologies applied to the seafloor -- Bioprospecting for new natural products and ideas -- Secondary metabolites from marine microbes -- Molecular ecology, conservation genomics, and genome sequencing -- References -- Chapter 3: Diversity hotspots on the benthos-Case studies highlight hidden treasures.
    Type of Medium: Online Resource
    Pages: 236 Seiten
    ISBN: 9780128241127
    DDC: 577.7
    Language: English
    Note: Description based on publisher supplied metadata and other sources
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  • 8
    Keywords: Hochschulschrift
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource
    DDC: 540
    RVK:
    Language: English
    Note: Diese Ausgabe enthält nicht die 3 Verlagspublikationen wie in der Druckausgabe
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  • 9
    Keywords: Climatic changes ; Ecology ; Climate Change ; Climat - Changements ; climate change ; Climatic changes ; Ecology ; Lehrbuch ; Klimaänderung ; Ökologie ; Biogeochemie ; Geosphäre ; Biosphäre ; Umweltveränderung ; Evolution ; Massensterben ; Evolutionsbiologie ; Aussterben ; Historische Geologie ; Artensterben ; Paläoklima ; Event ; Atmosphäre ; Biosphäre ; Klimaänderung ; Umweltveränderung ; Wechselwirkung
    Description / Table of Contents: "Climate Change and Life: The Complex Co-evolution of Climate and Life on Earth, and Beyond covers the critical tectonic and biogeochemical cycles that drive climate and shape the modern world. It compares the history of Earth to the histories of Venus and Mars, including new findings of Martian climate change. The book is multidisciplinary and will instruct readers on the range of extremes in climate and biogeochemical cycling that shape life on Earth. Topics covered include climate drivers on Earth (atmospheric gases, non-gaseous particulates in the atmosphere, etc.), various techniques to assess past climates, mass extension drivers, and future predictions. The book takes a long view on climate change and evolution while also focusing on defining moments in Earth history where critical thresholds and events occur. Climate scientists, earth scientists, environmental scientists and researchers in all other areas related to climate change will find value in the research presented in this book." --
    Type of Medium: Book
    Pages: vii, 275 Seiten , Illustrationen, Diagramme , 23 cm
    ISBN: 9780128225684 , 0128225688
    DDC: 363.73874
    Language: English
    Note: Includes bibliographical references and index , Earth over the past 4.5 billion years : a brief history -- Climate drives on Earth -- Oxygen accumulation and the first major life : climate interactions -- Snowball Earth and the most extreme climate states that the Earth has experienced -- Emergence of land plants and the formation of the Earth's critical zone -- Massive extinction drivers and climate impacts -- From greenhouse to ice-house : the coevolution of life and climate through the Cenozoic -- Climate and humans -- Climate and life on future Earth.
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  • 10
    Keywords: carbon cycling ; ecosystem function ; carbonate production ; coral reef fishes ; causal inference ; CaCO3 biomineralization ; Hochschulschrift
    Description / Table of Contents: Marine fish play important functional roles within the carbon cycle, including the production and excretion of intestinal carbonates. With fish accounting for at least 3-15% of total marine carbonate production, the global significance of this process is clear. A comprehensive assessment of the drivers of fish carbonate excretion rate and mineralogy is however lacking. Closing this gap is imperative to fully understand the role of fish in the inorganic carbon cycle and to predict how it may change in future. Focusing on tropical and subtropical reefs, this thesis assessed the drivers of fish contributions to the inorganic carbon cycle at different ecological levels and spatial scales. At the individual level, this project compiled intestinal traits for 142 species and carbonate excretion rates and mineralogy for 85 species. A comprehensive modelling approach then identified the species traits and environmental factors that influence individual excretion rates and mineralogy. At the community level and at the global scale, a novel analysis of 〉1,400 reefs mapped distribution patterns in fish carbonate excretion and mineralogy. A causal inference analysis identified the major ecological, environmental, and socio-economic factors driving these community-level patterns. At the regional scale (i.e., in the Australian coral reefs context), structural equation models disentangled the indirect effects of human gravity (i.e., a proxy for human pressure) and fisheries management on fish contributions to inorganic carbon cycling. Findings at the individual level confirmed the long-assumed direct link between fish carbonate excretion and metabolic rate and showed that diet strongly influences intestinal morphology. Relative intestinal length was uncovered as a strong driver of carbonate excretion rates and mineralogy, as were taxonomic identity and temperature. Current global patterns of fish contribution to the inorganic carbon cycle are primarily driven by fish community structure, sea surface temperature, and human gravity. Carbonate excretion rates peaked in highly productive areas supporting high fish biomass, especially within the upper trophic levels, and where human gravity is low. Globally, fish communities predominantly excrete the more soluble carbonates and their proportion increases with increasing temperature. On Australian reefs, fish carbonate excretion was strongly affected by human impact through reduced fish biomass despite the region’s relatively low fishing pressure. In this particular geographic context, current fisheries management is not sufficient to maintain fish carbonate excretion, despite positive effects on fish biodiversity. This thesis advances our understanding of the role of fish in inorganic carbon cycling from the physiological, ecological, biogeographic, chemical, mineralogical, and conservation perspectives. It unravels the complex variability of this function across ecological levels and spatial scales. Coupled with predictive models, this information could yield solid predictions of the future levels of this function in light of anthropogenic impacts and climate-driven range shifts. While fish carbonate excretion may increase with climate change, excreted carbonates will dissolve faster and/or at shallower water depths, thereby changing their influence on seawater chemistry and reducing their sedimentation potential. Protecting large predators would promote inorganic carbonate production and other fish roles within the carbon cycle. However, fisheries management has in places limited capacity to sustain fish inorganic carbon cycling. The need for effective, context-tailored management approaches that address socio-economic factors beyond fishing pressure is strongly emphasised.
    Type of Medium: Online Resource
    Pages: 1 Online-Ressource (xiv, 274 Seiten) , Illustrationen, Diagramme
    Language: English
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