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Urban planning as a discipline is deeply integral to implementing a low-carbon future. This book fosters an understanding for how the rules-in-use that govern urban planning influence the ability to implement low-carbon development patterns. Drawing on the theoretical foundations of the climate governance and urban planning literatures, the book provides a context to understand plan implementation challenges and obstacles in metropolitan areas. As metropolitan regions across the globe seek to reduce emissions from transportation, many levels of governments have developed ambitious climate action plans that make land use and transportation recommendations in order to reduce vehicle miles traveled. Many have recommended low-carbon development patterns which are characterized by intensified and diversified uses around rapid transit stations. However, the implementation of these recommendations is done within the context of different "rules-in-use" unique to the planning systems in each metropolitan region. The book examines the rules-in-use in three metropolitan regions of similar demographic size: the Metro Vancouver, Puget Sound, and the Stuttgart regions. By examining the implementation of low-carbon development patterns, the book focuses on growth management related questions about how to coordinate transit investments with land use decisions in metropolitan regions. The book finds that state legislation that deals with metropolitan planning and regional growth strategies can greatly aid in creating accountability among actors as well as provide a road map to navigate conflicts when implementing low-carbon development patterns. By focusing on the rules-in-use, the book is of interest to policy-makers, planners, advocates, and researchers who wish to assess and improve the odds of implementing low-carbon development patterns in a metropolitan region.
THE MOST TRUSTED AND UP-TO-DATE WATER TREATMENT PLANT DESIGN REFERENCE Thoroughly revised to cover the latest standards, technologies, regulations, and sustainability practices, Water Treatment Plant Design, Fifth Edition, offers comprehensive guidance on modernizing existing water treatment facilities and planning new ones. This authoritative resource discusses the organization and execution of a water treatment plant project--from planning and permitting through design, construction, and start-up. A joint publication of the American Water Works Association (AWWA) and the American Society of Civil Engineers (ASCE), this defi nitive guide contains contributions from renowned international experts. COVERAGE INCLUDES: Sustainability Master planning and treatment process selection Design and construction Intake facilities Aeration and air stripping Mixing, coagulation, and flocculation Clarification Slow sand and diatomaceous earth filtration Oxidation and disinfection Ultraviolet disinfection Precipitative softening Membrane processes Activated carbon adsorption Biological processes Process residuals Pilot plant design and construction Chemical systems Hydraulics Site selection and plant arrangement Environmental impacts and project permitting Architectural design HVAC, plumbing, and air supply systems Structural design Process instrumentation and controls Electrical systems Design reliability features Operations and maintenance considerations during plant design Staff training and plant start-up Water system security and preparedness Construction cost estimating
THE MOST TRUSTED AND UP-TO-DATE WATER TREATMENT PLANT DESIGN REFERENCE Thoroughly revised to cover the latest standards, technologies, regulations, and sustainability practices, Water Treatment Plant Design, Fifth Edition, offers comprehensive guidance on modernizing existing water treatment facilities and planning new ones. This authoritative resource discusses the organization and execution of a water treatment plant project--from planning and permitting through design, construction, and start-up. A joint publication of the American Water Works Association (AWWA) and the American Society of Civil Engineers (ASCE), this defi nitive guide contains contributions from renowned international experts. COVERAGE INCLUDES: Sustainability Master planning and treatment process selection Design and construction Intake facilities Aeration and air stripping Mixing, coagulation, and flocculation Clarification Slow sand and diatomaceous earth filtration Oxidation and disinfection Ultraviolet disinfection Precipitative softening Membrane processes Activated carbon adsorption Biological processes Process residuals Pilot plant design and construction Chemical systems Hydraulics Site selection and plant arrangement Environmental impacts and project permitting Architectural design HVAC, plumbing, and air supply systems Structural design Process instrumentation and controls Electrical systems Design reliability features Operations and maintenance considerations during plant design Staff training and plant start-up Water system security and preparedness Construction cost estimating
Includes full-color isopach and richness maps for each organic-rich and organic-lean oil shale interval within the upper Green River Formation. Offers computational exploration of trade-offs in drilling and heating options on the net energy return for oil produced from an in situ process. Analyzes costs and emissions associated with in situ production of oil shale. Discusses legal and policy issues for a nascent oil shale industry.