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This book describes the latest research advances, innovations, and
applications in the field of water management and environmental
engineering as presented by leading researchers, engineers, life
scientists and practitioners from around the world at the Frontiers
International Conference on Wastewater Treatment (FICWTM), held in
Palermo, Italy in May 2017. The topics covered are highly diverse
and include the physical processes of mixing and dispersion,
biological developments and mathematical modeling, such as
computational fluid dynamics in wastewater, MBBR and hybrid
systems, membrane bioreactors, anaerobic digestion, reduction of
greenhouse gases from wastewater treatment plants, and energy
optimization. The contributions amply demonstrate that the
application of cost-effective technologies for waste treatment and
control is urgently needed so as to implement appropriate
regulatory measures that ensure pollution prevention and
remediation, safeguard public health, and preserve the environment.
The contributions were selected by means of a rigorous peer-review
process and highlight many exciting ideas that will spur novel
research directions and foster multidisciplinary collaboration
among different water specialists.
This book describes the latest research advances, innovations, and
applications in the field of water management and environmental
engineering as presented by leading researchers, engineers, life
scientists and practitioners from around the world at the Frontiers
International Conference on Wastewater Treatment (FICWTM), held in
Palermo, Italy in May 2017. The topics covered are highly diverse
and include the physical processes of mixing and dispersion,
biological developments and mathematical modeling, such as
computational fluid dynamics in wastewater, MBBR and hybrid
systems, membrane bioreactors, anaerobic digestion, reduction of
greenhouse gases from wastewater treatment plants, and energy
optimization. The contributions amply demonstrate that the
application of cost-effective technologies for waste treatment and
control is urgently needed so as to implement appropriate
regulatory measures that ensure pollution prevention and
remediation, safeguard public health, and preserve the environment.
The contributions were selected by means of a rigorous peer-review
process and highlight many exciting ideas that will spur novel
research directions and foster multidisciplinary collaboration
among different water specialists.
This book addresses the latest research advances, innovations, and
applications in the field of urban drainage and water management as
presented by leading researchers, scientists and practitioners from
around the world at the 11th International Conference on Urban
Drainage Modelling (UDM), held in Palermo, Italy from 23 to 26
September, 2018. The conference was promoted and organized by the
University of Palermo, Italy and the International Working Group on
Data and Models, with the support of four of the world's leading
organizations in the water sector: the International Water
Association (IWA), International Association for Hydro-Environment
Engineering and Research (IAHR), Environmental & Water
Resources Institute (EWRI) - ASCE, and the International
Environmental Modelling and Software Society (iEMSs). The topics
covered are highly diverse and include drainage and impact
mitigation, water quality, rainfall in urban areas, urban
hydrologic and hydraulic processes, tools, techniques and analysis
in urban drainage modelling, modelling interactions and integrated
systems, transport and sewer processes (incl. micropollutants and
pathogens), and water management and climate change. The
conference's primary goal is to offer a forum for promoting
discussions amongst scientists and professionals on the
interrelationships between the entire water cycle, environment and
society.
Smart Solutions for Wastewater: Road-mapping the Transition to
Circular Economy, the latest release in the Current Developments in
Biotechnology and Bioengineering presents up-to-date information on
research and technological developments of resource recovery in
wastewater treatment in terms of carbon, nutrients and energy. The
book fulfils the gaps and current challenges that hinder the
application of resource recovery facilities in wastewater treatment
plants, discusses knowledge gaps, provides future research
perspectives, and discusses strategies to solve problems from a
circular economy perspective. It is an excellent, interdisciplinary
and updated overview of technologies in terms of potential yields,
pollutants removal, nutrients recovery and energy production.
Current Developments in Biotechnology and Bioengineering: Advanced
Membrane Separation Processes for Sustainable Water and Wastewater
Management - Aerobic Membrane Bioreactor Processes and Technologies
consolidates up-to-date research developments in AeMBR systems for
wastewater treatments in terms of membrane materials and
decorations, reactor designs and fouling mechanisms. It includes
discussions on developments in AeMBR research on energy efficiency
and fouling control strategies, gaps, future research and
application perspectives. This book is a potential resource for
membrane separation and AeMBR practitioners, engineers, scientists,
educators and students, and public to understand the latest
developments and future prospects in membrane technology.
Current Developments in Biotechnology and Bioengineering: Advanced
Membrane Separation Processes for Sustainable Water and Wastewater
Management -Anaerobic Membrane Bioreactor Processes and
Technologies gives an up-to-date review on research developments of
AnMBR systems (including hybrid systems) in wastewater treatment in
terms of pollutants removal, nutrients recovery and energy
production, as well as the achievement of energy efficiency of the
process itself. The current challenges that hinder the application
and industrialization of AnMBR technology, knowledge gaps and
future research perspectives are also explained and discussed with
potential strategies for solving problems. The book is a potential
resource for engineers, scientists, educators, students and general
public to understand the current developments and future prospects
in field of AnMBR research.
Current Developments in Biotechnology and Bioengineering: Advanced
Membrane Separation Processes for Sustainable Water and Wastewater
Management - Case Studies and Sustainability Analysis gives an
up-to-date review and research developments of MBR systems
(including hybrid systems) in wastewater treatment in terms of
pollutant removal, nutrient recovery, and energy production as well
as the achievement of energy efficiency of the process itself. The
current challenges that hinder the application and
industrialization of MBR technology as well as knowledge gaps and
future research perspectives are also discussed, including possible
strategies to solve the various problems involved. This work is an
excellent reference for education and understanding of
biotechnology, microbiology, environmental science and technology,
environmental engineering, chemical engineering, biotechnology and
bioengineering research and development. It is also an invaluable
resource to postgraduate and doctoral students, educators,
professional course students, researchers, and wastewater treatment
professionals.
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