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Books > Professional & Technical > Environmental engineering & technology > Sanitary & municipal engineering
An Introduction to Nuclear Waste Immobilisation, Third Edition
examines nuclear waste issues, including natural levels of
radionuclides in the environment, the geological disposal of
waste-forms, and their long-term behavior. It covers all-important
aspects of processing and immobilization, including nuclear decay,
regulations, new technologies and methods. The book has been
updated to include a discussion of the disposal of nuclear waste
from non-energy sources, also adding a chapter on the nuclear fuel
cycle. Significant focus is given to the analysis of the various
matrices used, especially cement and glass, with further discussion
of other matrices, such as bitumen. The book's final chapter
concentrates on the performance assessment of immobilizing
materials and safety of disposal, providing a full range of
resources needed to understand and correctly immobilize nuclear
waste.
Advanced Tools for Integrated Water Resources Management, Volume
Three, explores a wide breadth of emerging and state-of-the-art
technologies used to study advanced tools for integrated water
resources management. The book provides insights in chapters
relating to How to involve the public - citizen science approaches
for IWRM, Urban forestry as a management tool for urban water,
Applying water accounting methods in Mediterranean areas, The Jucar
River case, Valuation of Guadalquivir River Basin water resources
(southern Spain) using SEEA Water Account, Applying water
accounting methods through statistical data and simulation models,
and much more.
Advances in Water Purification Techniques: Meeting the Needs of
Developed and Developing Countries provides a variety of approaches
to water purification that can help assist readers with their
research and applications. Water contamination problems occur
frequently worldwide, hence the most updated knowledge on water
purification systems can be helpful in employing the right type of
filter or other mechanism of decontamination. The problems with
arsenic contamination of water in Bangladesh and the lead problem
in Flint, Michigan remind us of the need to monitor water pollution
rigorously, from both point and non-point sources.
Nanotechnology in Water and Waste Water Treatment: Theory and
Applications explores the unique physicochemical and surface
properties of nanoparticles and highlights the advantages they
provide for engineering applications. Applications covered include
the generation of fresh water from surface water and seawater, the
prevention of the contamination of the environment, and the
creation of effective and efficient methods for remediation of
polluted waters. Each chapter covers a different
nanotechnology-based approach and examines the basic principles,
practical applications, recent breakthroughs and associated
limitations. This book is ideal for researchers and professionals
in the fields of nanotechnology, water treatment and desalination.
In addition, it is also ideal for postgraduate students, industry
and government professionals, managers and policymakers.
Membrane-Based Salinity Gradient Processes for Water Treatment and
Power Generation focuses on the various types of membrane- based
salinity gradient processes that can be applied for desalination.
Topics cover salinity gradient processes for desalination, such as
Forward Osmosis (FO) and Pressure Retarded Osmosis (PRO), with
chapters selected exclusively from a number of world-leading
experts in various disciplines and from different continents.
Sections include discussions on the theoretical and fundamental
approaches to salinity gradient processes, various types of
membrane materials and development, i.e., flat sheet and hollow
fiber, various salinity water sources for an economically feasible
process, and large-scale applications. Finally, the book focuses on
economically feasible process optimization when both operational
and capital costs are considered.
Water Electrical and Electronic Equipment Recycling: Aqueous
Recovery Methods provides data regarding the implementation of
aqueous methods of processing of WEEEs at the industrial level.
Chapters explore points-of-view of worldwide researchers and
research project managers with respect to new research developments
and how to improve processing technologies. The text is divided
into two parts, with the first section addressing the new research
regarding the hydrometallurgical procedures adopted from minerals
processing technologies. Other sections cover green chemistry,
bio-metallurgy applications for WEEE treatment and the current
developed aqueous methods at industrial scale. A conclusion
summarizes existing research with suggestions for future actions.
First published in 1986: The Purpose of this book is to provide
working managers with a comprehensive introduction to practical
operational aspects of hazardous waste management and with an
extremely important foundation in relevant laws, rules and
regulations.
A major issue that has remained prevalent in today's modern world
has been the presence of chemicals within water sources that the
public uses for drinking. The associated health risks that
accompany these contaminants are unknown but have sparked serious
concern and emotive arguments among the global community. Empirical
research is a necessity to further understand these contaminants
and the effects they have on the environment. Effects of Emerging
Chemical Contaminants on Water Resources and Environmental Health
is a pivotal reference source that provides vital research on
current issues regarding the occurrence, toxicology, and abatement
of emerging contaminants in water sources. While highlighting
topics such as remediation techniques, pollution minimization, and
technological developments, this publication explores sample
preparation and detection of these chemical contaminants as well as
policy and legislative issues related to public health. This book
is ideally designed for environmental engineers, biologists, health
scientists, researchers, students, and professors seeking further
research on the latest developments in the detection of water
contaminants.
Solar Energy Desalination Technology explains how to obtain clean
water from sea water using solar energy. Special methods and types
used in solar desalination are introduced, providing new thoughts,
concepts, and feasible solutions in the desalination field, along
with the thermal and economic efficiency relating to current
technology. Many places in the world are suffering from fresh water
shortage. However, those places are often rich with solar
resources, sea water, and/or brackish water resources that could
dramatically benefit from solar energy as a viable solution for the
production of fresh water.
It is necessary to understand the extent of pollution in the
environment in terms of the air, water, and soil in order for both
humans and animals to live healthier lives. Poor waste treatment or
pollution monitoring can lead to massive environmental issues, such
as diminishing valuable resources, and cause a significant negative
impact on society. Solutions, such as reuse of waste and
sustainable waste management, must be explored to prevent these
adverse effects. The Handbook of Research on Resource Management
for Pollution and Waste Treatment is a collection of innovative
research that examines waste and pollution treatment methods that
can be adopted at local and international levels and examines
appropriate resource management strategies for environmentally
related issues. Featuring coverage on a wide range of topics such
as soil washing, bioremediation, and runoff handling, this book is
ideally designed for environmentalists, engineers, waste management
professionals, natural resource regulators, environmental
policymakers, scientists, academicians, researchers, and students
seeking current research on viable resource management methods for
the regeneration of their immediate environment.
Water Purification, a volume in the Nanotechnology in the Food
Industry series, provides an in-depth review of the current
technologies and emerging application of nanotechnology in drinking
water purification, also presenting an overview of the common
drinking water contaminants, such as heavy metals, organics,
microorganisms, pharmaceuticals, and their occurrences in drinking
water sources. As the global water crisis has motivated the
industry to look for alternative water supplies, nanotechnology
presents significant potential for utilizing previously
unacceptable water sources. This books explores the practical
methodologies for transforming water using nanotechnologies, and is
a comprehensive reference to a wide audience of food science
research professionals, professors, and students who are doing
research in this field.
A central concern that has remained relevant in recent years has
been the management of waste and pollution. Improper disposal
methods such as open-air burning and unsafe recycling have led to
significant public and environmental health issues including
respiratory disorders, resource depletion, and infant mortality.
Adopting new waste management techniques is a necessity in order to
preserve the health of the global community and ecosystem. Waste
Management Techniques for Improved Environmental and Public Health
provides innovative insights into the advancing methods and
technologies of reducing pollution and promoting sustainable
development. The content within this publication examines
ecological technologies, risk assessment, and green operation. It
is designed for ecologists, biologists, researchers, enterprises,
academicians, policymakers, scientists, environmental engineers,
and students seeking current research on developing theories and
techniques within waste moderation and environmental protection.
Textile products are produced, distributed, sold and used
worldwide. A quantitative assessment of sustainability in the
textile manufacturing chain is therefore extremely important. The
Handbook of sustainable textile production is a compilation of
technical, economical, and environmental data from the various
processes in this chain. This authoritative reference work provides
a detailed study of the sustainable development of textiles. The
book opens with an introduction to the topic. Chapters define the
principles of sustainability and its use in legislation and
industry before going on to investigate the impact of textiles
throughout the supply chain, starting with the raw fibre through to
fabric production, consumption and disposal. Textile process
technology and methods for specifying quality and functions in
textile products in order to reduce textile waste and improve
sustainability are also examined. A series of Life Cycle
Assessments (LCAs) carried out in the European textile industry are
investigated. These studies comprise a range of processes from
cotton growing, spinning and weaving to the recycling of textiles.
The book concludes with a discussion on sustainable textiles from a
product development and marketing perspective. With an
internationally recognised expert author, the Handbook of
sustainable textile production is a valuable reference tool for
academics and students as well as for companies across the textile
supply chain concerned with developing a sustainable environment,
from fibre manufactures and designers to regulatory bodies.
Advanced separations technology is key to closing the nuclear fuel
cycle and relieving future generations from the burden of
radioactive waste produced by the nuclear power industry. Nuclear
fuel reprocessing techniques not only allow for recycling of useful
fuel components for further power generation, but by also
separating out the actinides, lanthanides and other fission
products produced by the nuclear reaction, the residual radioactive
waste can be minimised. Indeed, the future of the industry relies
on the advancement of separation and transmutation technology to
ensure environmental protection, criticality-safety and
non-proliferation (i.e., security) of radioactive materials by
reducing their long-term radiological hazard. Advanced separation
techniques for nuclear fuel reprocessing and radioactive waste
treatment provides a comprehensive and timely reference on nuclear
fuel reprocessing and radioactive waste treatment. Part one covers
the fundamental chemistry, engineering and safety of radioactive
materials separations processes in the nuclear fuel cycle,
including coverage of advanced aqueous separations engineering, as
well as on-line monitoring for process control and safeguards
technology. Part two critically reviews the development and
application of separation and extraction processes for nuclear fuel
reprocessing and radioactive waste treatment. The section includes
discussions of advanced PUREX processes, the UREX+ concept, fission
product separations, and combined systems for simultaneous
radionuclide extraction. Part three details emerging and innovative
treatment techniques, initially reviewing pyrochemical processes
and engineering, highly selective compounds for solvent extraction,
and developments in partitioning and transmutation processes that
aim to close the nuclear fuel cycle. The book concludes with other
advanced techniques such as solid phase extraction, supercritical
fluid and ionic liquid extraction, and biological treatment
processes. With its distinguished international team of
contributors, Advanced separation techniques for nuclear fuel
reprocessing and radioactive waste treatment is a standard
reference for all nuclear waste management and nuclear safety
professionals, radiochemists, academics and researchers in this
field.
This book covers water quality indices (WQI) in depth - it
describes what purpose they serve, how they are generated, what are
their strengths and weaknesses, and how to make the best use of
them. It is a concise and unique guide to WQIs for chemists,
chemical/environmental engineers and government officials. Whereas
it is easy to express the quantity of water, it is very difficult
to express its quality because a large number of variables
determine the water quality. WQIs seek to resolve the difficulty by
translating a set of a large number of variables to a one-digit or
a two-digit numeral. They are essential in communicating the status
of different water resources in terms of water quality and the
impact of various factors on it to policy makers, service
personnel, and the lay public. Further they are exceedingly useful
in the monitoring and management of water quality. With the
importance of water and water quality increasing exponentially, the
importance of this topic is also set to increase enormously because
only with the use of indices is it possible to assess, express,
communicate, and monitor the overall quality of any water source.
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