ALBERT

All Library Books, journals and Electronic Records Telegrafenberg

feed icon rss

Ihre E-Mail wurde erfolgreich gesendet. Bitte prüfen Sie Ihren Maileingang.

Leider ist ein Fehler beim E-Mail-Versand aufgetreten. Bitte versuchen Sie es erneut.

Vorgang fortführen?

Exportieren
  • 1
    Schlagwort(e): Biotic communities. ; Environmental monitoring. ; Environmental management. ; Environmental chemistry. ; Pollution. ; Ecosystems. ; Environmental Monitoring. ; Environmental Management. ; Environmental Chemistry. ; Pollution.
    Beschreibung / Inhaltsverzeichnis: Part I. Soil and Sediment Contaminants, Risk Assessment and Remediation -- Chapter 1. Introduction to Part I: Soil and Sediment Contaminants, Risk Assessment and Remediation -- Chapter 2. Combating Arsenic Pollution in Soil Environment via Alternate Agricultural Land Use -- Chapter 3. Temporal and Seasonal Variation in Leachate Pollution Index (LPI) in Sanitary Landfill Sites- A Case study of Baidyabati landfill, West Bengal, India -- Chapter 4.Quantification of Landfill Gas Emission and Energy Recovery Potential: A Comparative Assessment of LandGEM and MTM Model for Kolkata -- Chapter 5. Assessment of natural enrichment of heavy minerals along coastal placers of India: Role of lake and river mouth embayment and its implications -- Chapter 6. Assessment the Impact of Plastic Contaminated Fertilizers on Agricultural Soil Health: A Case Study in Memari II C.D.Block, Purba Bardhaman,West Bengal, India -- Chapter 7. Determining the Role of Leaf Relative Water Content and Soil Cation Exchange Capacity in Phytoextraction Process – Using Regression Modelling -- Chapter 8. Phytoremediation of Arsenic using Allium sativum as Model System -- Chapter 9. Spatio-temporal analysis of open waste dumping sites using Google Earth: A case study of Kharagpur City, India -- Part II. Water Contaminants, Risk Assessment and Remediation -- Chapter 10. Introduction to Part II: Water Contaminants, Risk Assessment and Remediation -- Chapter 11. Groundwater Arsenic Contamination Zone based on geospatial modeling, risk and remediation -- Chapter 12. Geospatial assessment of surface water pollution and industrial activities in Ibadan, Nigeria -- Chapter 13. Aquaculture-based water quality assessment and risk remediationalong the Rasulpur River belt, West Bengal -- Chapter 14. Heavy Metal Contamination in Groundwater and Impact on Plant and Human -- Chapter 15. Emerging Threats of Microplastic contaminant in freshwater environment -- Chapter 16. Exploring Particle Size Transport Variability of Suspended Sediments in two Alpine Catchments over the Lesser Himalayan Region, India -- Chapter 17. Salinity and corrosion potential of groundwater in Mewat district of Haryana, India -- Chapter 18. Threats to quality in the coasts of the Black Sea: heavy metal pollution of seawater, sediment, macro-algae and sea-grass -- Chapter 19. Geospatial assessment of groundwater quality for drinking through Water Quality Index and Human Health Risk Index in an upland area of Chotanagpur Plateau of West Bengal, India -- Chapter 20. Existence of Pharmaceuticals and Personal Care Products (PPCPs) in the conventional water treatment process -- Chapter 21. Arsenic-rich surface and groundwater around eastern parts of Rupnagar district, Punjab, India -- Part III. Environmental Contaminants, Impacts and Sustainable Management -- Chapter 22. Introduction to Part III: Environmental Contaminants, Risk Assessment and Remediation -- Chapter 23. Dynamics of ultra-fine particles in indoor and outdoor environments: a modelling approach to study the evolution of particle characteristics -- Chapter 24. Environmental impacts of coal-mining and coal-fired power-plant activities in a developing country with global context -- Chapter 25. Overview of Indoor air pollution: A human health perspective -- Chapter 26. Mineralogy and Morphological characterization of Technogenic Magnetic Particles (TMP) from industrial dust: Insights into environmental implications -- Chapter 27. Pesticides: Recent Updates on Types Toxicity and Bioremediation Strategies -- Chapter 28. Commonly available plant neem (Azadirachtaindica A. Juss) ameliorates dimethoate induced toxicity in climbing perch Anabas testudineus -- Chapter 29. Estimating Particulate Matter concentrations from MODIS AOD considering meteorological parameters using Random Forest Algorithm -- Chapter 30 Bio-monitoring and bioremediation of a trans-boundary river in India: Functional roles of benthic mollusks and fungi -- Chapter 31 Assessing the Maximum Aerobic Biodegradation Potential of Leaf Litter, an Organic Fraction of Municipal Solid Waste, Under Optimum Nutrient Conditions -- Chapter 32. Rising trend of air pollution and its decadal consequences on meteorology and thermal comfort over Gangetic West Bengal, India.
    Kurzfassung: This book demonstrates the measurement, monitoring and mapping of environmental contaminants in soil & sediment, surface & groundwater and atmosphere. This book explores state-of-art techniques based on methodological and modeling in modern geospatial techniques specifically focusing on the recent trends in data mining techniques and robust modeling. It also presents modifications of and improvements to existing control technologies for remediation of environmental contaminants. In addition, it includes three separate sections on contaminants, risk assessment and remediation of different existing and emerging pollutants. It covers major topics such as: Radioactive Wastes, Solid and Hazardous Wastes, Heavy Metal Contaminants, Arsenic Contaminants, Microplastic Pollution, Microbiology of Soil and Sediments, Soil Salinity and Sodicity, Aquatic Ecotoxicity Assessment, Fluoride Contamination, Hydrochemistry, Geochemistry, Indoor Pollution and Human Health aspects. The content of this book will be of interest to researchers, professionals, and policymakers whose work involves environmental contaminants and related solutions.
    Materialart: Online-Ressource
    Seiten: XX, 720 p. 225 illus., 185 illus. in color. , online resource.
    Ausgabe: 1st ed. 2021.
    ISBN: 9783030634223
    Serie: Environmental Challenges and Solutions,
    DDC: 577
    Sprache: Englisch
    Standort Signatur Erwartet Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 2
    facet.materialart.
    Unbekannt
    Frontiers Media SA
    Publikationsdatum: 2024-04-05
    Beschreibung: This special issue reviews state-of-the-art approaches to the biophysical roots of cognition. These approaches appeal to the notion that cognitive capacities serve to optimize responses to changing external conditions. Crucially, this optimisation rests on the ability to predict changes in the environment, thus allowing organisms to respond pre-emptively to changes before their onset. The biophysical mechanisms that underwrite these cognitive capacities remain largely unknown; although a number of hypotheses has been advanced in systems neuroscience, biophysics and other disciplines. These hypotheses converge on the intersection of thermodynamic and information-theoretic formulations of self-organization in the brain. The latter perspective emerged when Shannon’s theory of message transmission in communication systems was used to characterise message passing between neurons. In its subsequent incarnations, the information theory approach has been integrated into computational neuroscience and the Bayesian brain framework. The thermodynamic formulation rests on a view of the brain as an aggregation of stochastic microprocessors (neurons), with subsequent appeal to the constructs of statistical mechanics and thermodynamics. In particular, the use of ensemble dynamics to elucidate the relationship between micro-scale parameters and those of the macro-scale aggregation (the brain). In general, the thermodynamic approach treats the brain as a dissipative system and seeks to represent the development and functioning of cognitive mechanisms as collective capacities that emerge in the course of self-organization. Its explicanda include energy efficiency; enabling progressively more complex cognitive operations such as long-term prediction and anticipatory planning. A cardinal example of the Bayesian brain approach is the free energy principle that explains self-organizing dynamics in the brain in terms of its predictive capabilities – and selective sampling of sensory inputs that optimise variational free energy as a proxy for Bayesian model evidence. An example of thermodynamically grounded proposals, in this issue, associates self-organization with phase transitions in neuronal state-spaces; resulting in the formation of bounded neuronal assemblies (neuronal packets). This special issue seeks a discourse between thermodynamic and informational formulations of the self-organising and self-evidencing brain. For example, could minimization of thermodynamic free energy during the formation of neuronal packets underlie minimization of variational free energy?
    Schlagwort(e): RC321-571 ; Q1-390 ; consciousness ; understanding ; Markov blanket ; Hebbian assembly ; neuronal packet ; Bayesian brain ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences::PSA Life sciences: general issues::PSAN Neurosciences
    Sprache: Englisch
    Format: image/jpeg
    Standort Signatur Erwartet Verfügbarkeit
    BibTip Andere fanden auch interessant ...
Schließen ⊗
Diese Webseite nutzt Cookies und das Analyse-Tool Matomo. Weitere Informationen finden Sie hier...