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This book presents an exploration of linkages among soil-water,
agriculture, and climate change with a special focus on thematic
areas for assessment, mitigation, and management of natural
resources under climate change conditions. This book covers
advances in modelling approaches, including machine learning (ML)/
artificial intelligence (AI) applications; GIS and remote sensing;
sensors; impacts of climate change on agriculture; subsurface
water; contaminants; and socio-economic impacts, which are lacking
in a more comprehensive manner in the previous titles. This book
encompasses updated information as well as future directions for
researchers working in the field of management of natural
resources. The goal of this book is to provide scientific evidence
to researchers and policymakers and end-to-end value chain
practitioners which may help in reducing the overall adverse
impacts of climate change on water resources and the related
mitigation strategies. This book focuses on the knowledge, modern
tools, and techniques, i.e., machine learning, artificial
intelligence, etc. for soil-water, agriculture, and climate change.
Further, nature-based solutions for management of natural resources
with special targets on contaminants, extreme events, disturbances,
etc. will be targeted. The book provides readers with the enhanced
knowledge for application of engineering principles and economic
and regulatory constraints to determine a soil-water, agriculture
production action strategy, and select appropriate technologies to
implement the strategy for a given data set at a site. It would
also cover the application of laboratory, modeling, numerical
methods for determination and forecasting of climate change
impacts, agriculture production, pollution, soil health, etc.
Overall, it provides hydrologists, environmental engineers,
administrators, policy makers, consultants, and industrial experts
with essential support in effective management of soils health,
agricultural productions, and mitigation of extreme climatic
events.
Advances in Remediation Techniques for Polluted Soils and
Groundwater focuses on the thematic areas for assessment,
mitigation, and management of polluted sites. This book covers
advances in modelling approaches, including Machine Learning (ML)/
Artificial Intelligence (AI) applications; GIS and remote sensing;
sensors; impacts of climate change on geogenic contaminants; and
socio-economic impacts in the poor rural and urban areas, which are
lacking in a more comprehensive manner in the previous titles. This
book encompasses updated information as well as future directions
for researchers working in the field of management and remediation
of polluted sites.
This volume offers detailed information on the behaviour of various
water pollutants, and on the principles and concepts of groundwater
flow and transport. It will help readers to understand and execute
the planning, supervision, and review of solute transport and
groundwater modeling projects. The book also discusses the role and
fate of elements that have been identified as major contaminants in
surface and subsurface waters, and their adverse effects on ecology
and human health. The book explores this theme throughout four
sections - a. Understanding Soil-Water Systems, b. Fate and
Transport of Pollutants, c. Physico-Chemical Treatment of
Wastewater and d. Microbial Techniques Used to Decontaminate
Soil-Water Systems. Introducing readers to a range of recent
advances concerning the fundamentals of subsurface water treatment,
it offers a valuable guide for teachers, researchers, policymakers,
and undergraduate and graduate students of hydrology, environmental
microbiology, biotechnology and the environmental sciences. It also
provides field engineers and industrial practitioners with
essential support in the effective remediation and management of
polluted sites.
This volume offers detailed information on the behaviour of various
water pollutants, and on the principles and concepts of groundwater
flow and transport. It will help readers to understand and execute
the planning, supervision, and review of solute transport and
groundwater modeling projects. The book also discusses the role and
fate of elements that have been identified as major contaminants in
surface and subsurface waters, and their adverse effects on ecology
and human health. The book explores this theme throughout four
sections - a. Understanding Soil-Water Systems, b. Fate and
Transport of Pollutants, c. Physico-Chemical Treatment of
Wastewater and d. Microbial Techniques Used to Decontaminate
Soil-Water Systems. Introducing readers to a range of recent
advances concerning the fundamentals of subsurface water treatment,
it offers a valuable guide for teachers, researchers, policymakers,
and undergraduate and graduate students of hydrology, environmental
microbiology, biotechnology and the environmental sciences. It also
provides field engineers and industrial practitioners with
essential support in the effective remediation and management of
polluted sites.
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