Source Specific Federal Implementation Plans - Implementing Best Available Retrofit Technology for Four Corners Power Plant - Navajo Nation (Us Environmental Protection Agency Regulation) (Epa) (2018 Edition)


Book Description

Source Specific Federal Implementation Plans - Implementing Best Available Retrofit Technology for Four Corners Power Plant - Navajo Nation (US Environmental Protection Agency Regulation) (EPA) (2018 Edition) The Law Library presents the complete text of the Source Specific Federal Implementation Plans - Implementing Best Available Retrofit Technology for Four Corners Power Plant - Navajo Nation (US Environmental Protection Agency Regulation) (EPA) (2018 Edition). Updated as of May 29, 2018 The Environmental Protection Agency (EPA) is promulgating a source-specific Federal Implementation Plan (FIP) requiring the Four Corners Power Plant (FCPP), a coal-fired power plant located on the Navajo Nation near Farmington, New Mexico, to achieve emissions reductions required by the Clean Air Act's (CAA) Best Available Retrofit Technology (BART) provision. In this final action, EPA is requiring FCPP to reduce emissions of oxides of nitrogen (NO X) and is setting emission limits for particulate matter (PM) based on emission rates already achieved at FCPP. These pollutants contribute to visibility impairment in the numerous mandatory Class I Federal areas surrounding FCPP. For NO X emissions, EPA is requiring FCPP to meet a plant-wide emission limit of 0.11 lb/MMBtu on a rolling 30-day heat input-weighted average. This represents an 80 percent reduction from the current NO X emission rate and is expected to provide significant improvement in visibility. EPA is also finalizing an alternative emission control strategy that gives the owners of FCPP the option to close Units 1-3 and install controls on Units 4 and 5 to each meet an emission limit of 0.098 lb/MMBtu, based on a rolling average of 30 successive boiler operating days. For PM, EPA is requiring Units 4 and 5 at FCPP to meet an emission limit of 0.015 lb/MMBtu, and retaining the existing 20 percent opacity limit. These PM limits are achievable through the proper operation of the existing baghouses. EPA is also requiring FCPP to comply with a 20 percent opacity limit on its coal and material handling operations. This book contains: - The complete text of the Source Specific Federal Implementation Plans - Implementing Best Available Retrofit Technology for Four Corners Power Plant - Navajo Nation (US Environmental Protection Agency Regulation) (EPA) (2018 Edition) - A table of contents with the page number of each section




Carbon Pollution Emission Guidelines for Existing Stationary Sources - Electric Utility Generating Units (Us Environmental Protection Agency Regulation) (Epa) (2018 Edition)


Book Description

Carbon Pollution Emission Guidelines for Existing Stationary Sources - Electric Utility Generating Units (US Environmental Protection Agency Regulation) (EPA) (2018 Edition) The Law Library presents the complete text of the Carbon Pollution Emission Guidelines for Existing Stationary Sources - Electric Utility Generating Units (US Environmental Protection Agency Regulation) (EPA) (2018 Edition). Updated as of May 29, 2018 In this action, the Environmental Protection Agency (EPA) is establishing final emission guidelines for states to follow in developing plans to reduce greenhouse gas (GHG) emissions from existing fossil fuel-fired electric generating units (EGUs). Specifically, the EPA is establishing: Carbon dioxide (CO 2) emission performance rates representing the best system of emission reduction (BSER) for two subcategories of existing fossil fuel-fired EGUs-fossil fuel-fired electric utility steam generating units and stationary combustion turbines; state-specific CO 2 goals reflecting the CO 2 emission performance rates; and guidelines for the development, submittal and implementation of state plans that establish emission standards or other measures to implement the CO 2 emission performance rates, which may be accomplished by meeting the state goals. This final rule will continue progress already underway in the U.S. to reduce CO 2 emissions from the utility power sector. This book contains: - The complete text of the Carbon Pollution Emission Guidelines for Existing Stationary Sources - Electric Utility Generating Units (US Environmental Protection Agency Regulation) (EPA) (2018 Edition) - A table of contents with the page number of each section




EPA Strategic Plan


Book Description




Annual Energy Outlook 2016 With Projections to 2040


Book Description

The Annual Energy Outlook 2016 presents long-term projections of energy supply, demand, and prices through 2040. The projections, focused on U.S. energy markets, are based on results from EIA's National Energy Modeling System which enables EIA to make projections under alternative, internally consistent sets of assumptions.







Accelerating Decarbonization of the U.S. Energy System


Book Description

The world is transforming its energy system from one dominated by fossil fuel combustion to one with net-zero emissions of carbon dioxide (CO2), the primary anthropogenic greenhouse gas. This energy transition is critical to mitigating climate change, protecting human health, and revitalizing the U.S. economy. To help policymakers, businesses, communities, and the public better understand what a net-zero transition would mean for the United States, the National Academies of Sciences, Engineering and Medicine convened a committee of experts to investigate how the U.S. could best decarbonize its transportation, electricity, buildings, and industrial sectors. This report, Accelerating Decarbonization of the United States Energy System, identifies key technological and socio-economic goals that must be achieved to put the United States on the path to reach net-zero carbon emissions by 2050. The report presents a policy blueprint outlining critical near-term actions for the first decade (2021-2030) of this 30-year effort, including ways to support communities that will be most impacted by the transition.







Theory and Practice in Policy Analysis


Book Description

Many books instruct readers on how to use the tools of policy analysis. This book is different. Its primary focus is on helping readers to look critically at the strengths, limitations, and the underlying assumptions analysts make when they use standard tools or problem framings. Using examples, many of which involve issues in science and technology, the book exposes readers to some of the critical issues of taste, professional responsibility, ethics, and values that are associated with policy analysis and research. Topics covered include policy problems formulated in terms of utility maximization such as benefit-cost, decision, and multi-attribute analysis, issues in the valuation of intangibles, uncertainty in policy analysis, selected topics in risk analysis and communication, limitations and alternatives to the paradigm of utility maximization, issues in behavioral decision theory, issues related to organizations and multiple agents, and selected topics in policy advice and policy analysis for government.




Air Pollution Control Technology Handbook


Book Description

In the debate over pollution control, the price of pollution is a key issue. But which is more costly: clean up or prevention? From regulations to technology selection to equipment design, Air Pollution Control Technology Handbook serves as a single source of information on commonly used air pollution control technology. It covers environmental regulations and their history, process design, the cost of air pollution control equipment, and methods of designing equipment for control of gaseous pollutants and particulate matter. This book covers how to: Review alternative design methods Select methods for control Evaluate the costs of control equipment Examine equipment proposals from vendors With its comprehensive coverage of air pollution control processes, the Air Pollution Control Technology Handbook is a detailed reference for the practicing engineer who prepares the basic process engineering and cost estimation required for the design of an air pollution control system. It discusses the topics in depth so that you can apply the methods and equations presented and proceed with equipment design.