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Effects of California's Climate Policy in Facilitating CCUS.

Effects of California's Climate Policy in Facilitating CCUS.
Author:
Publisher:
Total Pages: 14
Release: 2014
Genre:
ISBN:

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California is at the forefront of addressing the challenges involved in redesigning its energy infrastructure to meet 2050 GHG reduction goals, but CCUS commercialization lags in California as it does elsewhere. It is unclear why this is the case given the state's forefront position in aggressive climate change policy. The intent of this paper is to examine the factors that may explain why CCUS has not advanced as rapidly as other GHG emissions mitigation technologies in California and identify ways by which CCUS commercialization may be advanced in the context of California's future energy infrastructure. CCUS has application to reduce GHG emissions from the power, industrial and transportation sectors in the state. Efficiency, use of renewable energy or nuclear generation to replace fossil fuels, use of lower or no-net-carbon feedstocks (such as biomass), and use of CCUS on fossil fuel generation are the main options, but California has fewer options for making the deep cuts in CO2 emissions within the electricity sector to meet 2050 goals. California is already the most efficient of all 50 states as measured by electricity use per capita, and, while further efficiency measures can reduce per capita consumption, increasing population is still driving electricity demand upwards. A 1976 law prevents building any new nuclear plants until a federal high-level nuclear waste repository is approved. Most all in-state electricity generation already comes from natural gas; although California does plan to eliminate electricity imports from out-of-state coal-fired generation. Thus, the two options with greatest potential to reduce in-state power sector CO2 emissions are replacing fossil with renewable generation or employing CCUS on natural gas power plants. Although some scenarios call on California to transition its electricity sector to 100 percent renewables, it is unclear how practical this approach is given the intermittency of renewable generation, mismatches between peak generation times and demand times, and the rate of progress in developing technologies for large-scale power storage. Vehicles must be electrified or move to biofuels or zero-carbon fuels in order to decarbonize the transportation sector. These options transfer the carbon footprint of transportation to other sectors: the power sector in the case of electric vehicles and the industrial and agricultural sectors in the case of biofuels or zero-carbon fuels. Thus, the underlying presumption to achieve overall carbon reductions is that the electricity used by vehicles does not raise the carbon emissions of the power sector: biofuel feedstock growth, harvest, and processing uses low carbon energy or production of fuels from fossil feedstocks employs CCUS. This results in future transportation sector energy derived solely from renewables, biomass, or fossil fuel point sources utilizing CCUS. In the industrial sector, the largest contributors to GHG emissions are transportation fuel refineries and cement plants. Emissions from refineries come from on-site power generation and hydrogen plants; while fuel mixes can be changed to reduce the GHG emissions from processing and renewable sources can be used to generate power, total decarbonization requires use of CCUS. Similarly, for cement plants, power generation may use carbon-free feedstocks instead of fossil fuels, but CO2 emissions associated with the manufacture of cement products must be dealt with through CCUS. Of course, another option for these facilities is the purchase of offsets to create a zero-emissions plant.


Facilitating Greenhouse Gas Reduction and Climate Change Adaptation Within the Coastal Zone: A Policy Analysis for the California Coastal Commission

Facilitating Greenhouse Gas Reduction and Climate Change Adaptation Within the Coastal Zone: A Policy Analysis for the California Coastal Commission
Author: Nicole Young
Publisher:
Total Pages:
Release: 2019
Genre:
ISBN:

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California is already experiencing impacts to its coastline due to climate change, and more severe impacts are anticipated if greenhouse gas emissions continue to rise. These climate change impacts are especially strong within the California coastal zone, which falls under the jurisdiction of the California Coastal Commission. The Commission has a history of rigorous environmental protection and is committed to protecting California's coast through proactive planning and regulation, however they will need to initiate coastal policies with ambitious targets to facilitate effective climate change adaptation and mitigation. This study analyzed existing California climate policies and Coastal Commission policies to identify successes and gaps in the Commission's work on climate change. Key findings include successful state funding mechanisms, energy saving state standards and ambitious state greenhouse gas reduction goals, as well as successful coastal adaptation projects and mechanisms throughout California. Findings also demonstrated a gap in the amount of funding currently available for coastal adaptation. Analysis of the Commission's current climate adaptation policy suggests that the agency should amend their coastal act to reflect current pressing climate issues. To strengthen the Commission's mission of protecting the California coastline, this study recommends that coastal developments obtain RELi resilience certification to ensure that coastal development can react to the shocks and stresses of climate change within the coastal zone. This analysis of policy options to strengthen the Commission's climate policy yielded two alternative recommendations. The first recommends using a market mechanism to facilitate greenhouse gas reduction within the coastal zone, while the other recommends the implementation of a regulatory mandate. Both recommendations offer a suggested framework modeled after current California policy that works to facilitate funding for coastal adaption within the California coastal zone.


WESTCARB Phase III Final Report

WESTCARB Phase III Final Report
Author: Elizabeth Burton
Publisher:
Total Pages: 70
Release: 2016
Genre: Carbon sequestration
ISBN:

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Managing Climate Risk in the U.S. Financial System

Managing Climate Risk in the U.S. Financial System
Author: Leonardo Martinez-Diaz
Publisher: U.S. Commodity Futures Trading Commission
Total Pages: 196
Release: 2020-09-09
Genre: Science
ISBN: 057874841X

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This publication serves as a roadmap for exploring and managing climate risk in the U.S. financial system. It is the first major climate publication by a U.S. financial regulator. The central message is that U.S. financial regulators must recognize that climate change poses serious emerging risks to the U.S. financial system, and they should move urgently and decisively to measure, understand, and address these risks. Achieving this goal calls for strengthening regulators’ capabilities, expertise, and data and tools to better monitor, analyze, and quantify climate risks. It calls for working closely with the private sector to ensure that financial institutions and market participants do the same. And it calls for policy and regulatory choices that are flexible, open-ended, and adaptable to new information about climate change and its risks, based on close and iterative dialogue with the private sector. At the same time, the financial community should not simply be reactive—it should provide solutions. Regulators should recognize that the financial system can itself be a catalyst for investments that accelerate economic resilience and the transition to a net-zero emissions economy. Financial innovations, in the form of new financial products, services, and technologies, can help the U.S. economy better manage climate risk and help channel more capital into technologies essential for the transition. https://doi.org/10.5281/zenodo.5247742


Negative Emissions Technologies and Reliable Sequestration

Negative Emissions Technologies and Reliable Sequestration
Author: National Academies of Sciences, Engineering, and Medicine
Publisher: National Academies Press
Total Pages: 511
Release: 2019-04-08
Genre: Science
ISBN: 0309484529

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To achieve goals for climate and economic growth, "negative emissions technologies" (NETs) that remove and sequester carbon dioxide from the air will need to play a significant role in mitigating climate change. Unlike carbon capture and storage technologies that remove carbon dioxide emissions directly from large point sources such as coal power plants, NETs remove carbon dioxide directly from the atmosphere or enhance natural carbon sinks. Storing the carbon dioxide from NETs has the same impact on the atmosphere and climate as simultaneously preventing an equal amount of carbon dioxide from being emitted. Recent analyses found that deploying NETs may be less expensive and less disruptive than reducing some emissions, such as a substantial portion of agricultural and land-use emissions and some transportation emissions. In 2015, the National Academies published Climate Intervention: Carbon Dioxide Removal and Reliable Sequestration, which described and initially assessed NETs and sequestration technologies. This report acknowledged the relative paucity of research on NETs and recommended development of a research agenda that covers all aspects of NETs from fundamental science to full-scale deployment. To address this need, Negative Emissions Technologies and Reliable Sequestration: A Research Agenda assesses the benefits, risks, and "sustainable scale potential" for NETs and sequestration. This report also defines the essential components of a research and development program, including its estimated costs and potential impact.


Carbon Capture and Storage

Carbon Capture and Storage
Author: Mai Bui
Publisher: Royal Society of Chemistry
Total Pages: 596
Release: 2019-11-29
Genre: Political Science
ISBN: 1788011457

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This book will provide the latest global perspective on the role and value of carbon capture and storage (CCS) in delivering temperature targets and reducing the impact of global warming. As well as providing a comprehensive, up-to-date overview of the major sources of carbon dioxide emission and negative emissions technologies, the book also discusses technical, economic and political issues associated with CCS along with strategies to enable commercialisation.


WORLD ENERGY OUTLOOK 2018

WORLD ENERGY OUTLOOK 2018
Author:
Publisher:
Total Pages:
Release: 2018
Genre:
ISBN: 9789264064522

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Accelerating Decarbonization of the U.S. Energy System

Accelerating Decarbonization of the U.S. Energy System
Author: National Academies of Sciences, Engineering, and Medicine
Publisher:
Total Pages: 210
Release: 2021-12-02
Genre: Science
ISBN: 9780309682923

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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.