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Provides a clearly presented overview of the law's provisions and pertient regulation and enforcement issues.
The Mississippi River is, in many ways, the nation's best known and most important river system. Mississippi River water quality is of paramount importance for sustaining the many uses of the river including drinking water, recreational and commercial activities, and support for the river's ecosystems and the environmental goods and services they provide. The Clean Water Act, passed by Congress in 1972, is the cornerstone of surface water quality protection in the United States, employing regulatory and nonregulatory measures designed to reduce direct pollutant discharges into waterways. The Clean Water Act has reduced much pollution in the Mississippi River from "point sources" such as industries and water treatment plants, but problems stemming from urban runoff, agriculture, and other "non-point sources" have proven more difficult to address. This book concludes that too little coordination among the 10 states along the river has left the Mississippi River an "orphan" from a water quality monitoring and assessment perspective. Stronger leadership from the U.S. Environmental Protection Agency (EPA) is needed to address these problems. Specifically, the EPA should establish a water quality data-sharing system for the length of the river, and work with the states to establish and achieve water quality standards. The Mississippi River corridor states also should be more proactive and cooperative in their water quality programs. For this effort, the EPA and the Mississippi River states should draw upon the lengthy experience of federal-interstate cooperation in managing water quality in the Chesapeake Bay.
The definitive guide to all there is to know about the TMDL requirements of clean water legislation.
Recognizing the importance of wetland protection, the Bush administration in 1988 endorsed the goal of "no net loss" of wetlands. Specifically, it directed that filling of wetlands should be avoided, and minimized when it cannot be avoided. When filling is permitted, compensatory mitigation must be undertaken; that is, wetlands must be restored, created, enhanced, and, in exceptional cases, preserved, to replace the permitted loss of wetland area and function, such as water quality improvement within the watershed. After more than a dozen years, the national commitment to "no net loss" of wetlands has been evaluated. This new book explores the adequacy of science and technology for replacing wetland function and the effectiveness of the federal program of compensatory mitigation in accomplishing the nation's goal of clean water. It examines the regulatory framework for permitting wetland filling and requiring mitigation, compares the mitigation institutions that are in use, and addresses the problems that agencies face in ensuring sustainability of mitigated wetlands over the long term. Gleaning lessons from the mixed results of mitigation efforts to date, the book offers 10 practical guidelines for establishing and monitoring mitigated wetlands. It also recommends that federal, state, and local agencies undertake specific institutional reforms. This book will be important to anyone seeking a comprehensive understanding of the "no net loss" issue: policy makers, regulators, environmental scientists, educators, and wetland advocates.
Evaluating Water Quality to Prevent Future Disasters, volume 11 in the Separation Science and Technology series, covers various separation methods that can be used to avoid water catastrophes arising from climate change, arsenic, lead, algal bloom, fracking, microplastics, flooding, glyphosphates, triazines, GenX, and oil contamination. This book provides a valuable resource that will help the reader solve their potential water contamination problems and help them develop their own new approaches to monitor water contamination. - Highlights reasons for potential water catastrophes - Provides separation methods for monitoring water contamination - Encourages development of new methods for monitoring water contamination
The study of water pollution control regulation is a study of statutes and their administration. This casebook explores water pollution and the federal statute chiefly designed to control it, the Clean Water Act, and examines how water pollution is addressed, first by the common law and then by statute. An introduction provides the student with an understanding of what constitutes water pollution, where it originates, and how it can be controlled. These materials were originally designed for the introductory course in environmental regulation/environmental law at Pace Law School. A Teachers Manual includes exercises that teach students advanced legal research, familiarity with administrative law mechanisms, and the ability to integrate what they have learned about the Clean Water Act.
In this second edition of a landmark book, author Robin Craig explores the structural implications for water quality regulation when the primary federal statute for regulating water quality--the Clean Water Act--operates in a context complicated by a variety of constitutional requirements and dictates.This new edition thoroughly updates the first edition, particularly in areas where the Supreme Court has issued significant new decisions. For example, it includes discussions of the Court's 2006 decision in Rapanos v. United States plus the important recent developments in Commerce Clause jurisprudence. Other noteworthy additions include Clean Water Act takings jurisprudence, new discussions of "increased risk" as a basis for citizen suit standing, and the issue of state citizen suit standing after Massachusetts v. EPA.
Intermittent Rivers and Ephemeral Streams: Ecology and Management takes an internationally broad approach, seeking to compare and contrast findings across multiple continents, climates, flow regimes, and land uses to provide a complete and integrated perspective on the ecology of these ecosystems. Coupled with this, users will find a discussion of management approaches applicable in different regions that are illustrated with relevant case studies. In a readable and technically accurate style, the book utilizes logically framed chapters authored by experts in the field, allowing managers and policymakers to readily grasp ecological concepts and their application to specific situations. - Provides up-to-date reviews of research findings and management strategies using international examples - Explores themes and parallels across diverse sub-disciplines in ecology and water resource management utilizing a multidisciplinary and integrative approach - Reveals the relevance of this scientific understanding to managers and policymakers
Long taken for granted, water resources are rapidly becoming a contentious issue within American politics. Continuing population growth and rapid development, coupled with environmental events such as droughts, have led to increasing water shortages in sections of the nation. In Interstate Water Compacts author Joseph F. Zimmerman highlights the growing importance of water issues within the United States and a device that has been instrumental in facilitating interstate cooperation to solve water-related problems: the interstate compact. This groundbreaking work is the first to devote itself exclusively to interstate and federal-interstate compacts pertaining to controversies including the abatement of water pollution, apportionment of river waters, economic development, flood control, inland fisheries, marine fisheries, and restoration to rivers of anadromous fish, such as salmon and shad. The process for entering into interstate and federal-interstate compacts is explained in detail, as is the exercise of original jurisdiction by the US Supreme Court to resolve intractable interstate controversies involving interpretation of provisions of compacts, water apportionment, and water pollution abatement. Zimmerman concludes by calling for the President, Congress, governors, state legislatures, and local governments to devote more attention and resources to finding solutions for water-related problems.