Advances in Carbon Management Technologies
Carbon Removal, Renewable and Nuclear Energy, Volume 1
Herausgeber: Princiotta, Frank; Sikdar, Subhas
Advances in Carbon Management Technologies
Carbon Removal, Renewable and Nuclear Energy, Volume 1
Herausgeber: Princiotta, Frank; Sikdar, Subhas
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This book was motivated by the desire to compile recent advances in carbon management to examine promises and limitations of emissions measurements, energy efficiencies, carbon capture and sequestration, biomass waste utilization, electric power generation, energy storage, and carbon neutral power from nuclear, hydro, solar and wind.
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This book was motivated by the desire to compile recent advances in carbon management to examine promises and limitations of emissions measurements, energy efficiencies, carbon capture and sequestration, biomass waste utilization, electric power generation, energy storage, and carbon neutral power from nuclear, hydro, solar and wind.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 452
- Erscheinungstermin: 29. April 2022
- Englisch
- Abmessung: 176mm x 253mm x 32mm
- Gewicht: 956g
- ISBN-13: 9780367533649
- ISBN-10: 0367533642
- Artikelnr.: 64102417
- Verlag: Taylor & Francis Ltd
- Seitenzahl: 452
- Erscheinungstermin: 29. April 2022
- Englisch
- Abmessung: 176mm x 253mm x 32mm
- Gewicht: 956g
- ISBN-13: 9780367533649
- ISBN-10: 0367533642
- Artikelnr.: 64102417
Subhas K Sikdar retired as Associate Director for Science, National Risk Management Research Laboratory of USEPA. Earlier he held technical and managerial positions at Occidental Research Corp, National Institute of Standards and Technology, and General Electric Corporate Research & Development Center. Dr. Sikdar is an elected Fellow of AAAS, ACS, AIChE, IIChE, and winner of EPA bronze medals, R&D 100 awards, several national awards from AIChE, and distinguished achievement awards from EPA, University of Arizona, and University of Calcutta. He is Editor-in-Chief of Clean Technologies and Environmental Policy (Springer), and serves as a member of the conference committee of Engineering Conferences International. He has edited 16 books. Frank Princiotta recently retired as Director of the Air Pollution Prevention and Control Division of the Office of Research & Development, Environmental Protection Agency. He has a degree in Chemical Engineering from City University of NY (Tau Beta Pi, Omega Chi Epsilon) and a Nuclear Engineering Certificate from the Oak Ridge School of Reactor Technology. His division is responsible for RD & D on technologies for controlling and characterizing air pollution from major sources. He has been a key agency expert in air pollution control for over 40 years. He has been the recipient of an EPA gold medal, and three bronze medals for his accomplishments in the air pollution control field. He has also received the President's Meritorious Executive Award on two separate occasions (Presidents Carter and H.W. Bush). He played the leadership role in the development and demonstration of sulfur dioxide pollution control technology for coal-fired boilers, which has been the mainstay of SO2 control worldwide. An author of many scientific papers on air pollution control, he has been a frequent speaker before technical societies and conferences and has testified before Congressional Committees. In recent years he has focused on mitigating global climate change. He has analyzed the role that technology and cultural changes will need to play, if we are to avoid the potentially catastrophic impacts associated with unconstrained use of energy.
Introductory. What key low-carbon technologies are needed to meet serious
climate mitigation targets and what is their status. SECTION 1. GLOBAL AND
REGIONAL VIEWS OF CARBON MANAGEMENT. Introduction. Removing greenhouse
gases from the air to stabilize the climate. Low carbon technologies in
global energy markets. Carbon Management: forest conservation and
management. Reducing carbon footprint of products (CFP) in the value chain.
Significance of GHG measurement on carbon management technologies. SECTION
2. FOSSIL SECTOR: COAL/PETROLEUM/NATURAL GAS. Carbon policies for reducing
emissions in power plants. Carbon mitigation in the power sector:
challenges and opportunities. The environmental impact of implementing CO2
capture process in power plants: effect of type of fuel and energy demand.
Systems integration approaches to monetizing CO2. Energy-water-CO2 nexus of
fossil fuel-based power generation. Natural gas reforming to industrial gas
and chemicals using chemical looping. Alternative pathways for CO2
utilization via dry reforming of methane. Ranking carbon emissions
mitigation options under uncertainty. Carbon management in the CO2-rich
natural gas to energy supply chain. Coal to chemicals: a smart choice.
Optimal planning of biomass co-firing networks with biochar-based carbon
sequestration. Trends in transportation greenhouse gas emissions and
implications for carbon management. SECTION 3. WIND/SOLAR/HYDRO/NUCLEAR.
Nuclear energy and carbon emission reduction - promise and problems.
Concentrated solar energy driven multi-generation systems based on the
organic Rankine cycle technology. Solar photovoltaic technologies and
systems. Reducing the Carbon Footprint of Wind Energy: What Can Be Learned
from Life-Cycle Studies? Hydropower.
climate mitigation targets and what is their status. SECTION 1. GLOBAL AND
REGIONAL VIEWS OF CARBON MANAGEMENT. Introduction. Removing greenhouse
gases from the air to stabilize the climate. Low carbon technologies in
global energy markets. Carbon Management: forest conservation and
management. Reducing carbon footprint of products (CFP) in the value chain.
Significance of GHG measurement on carbon management technologies. SECTION
2. FOSSIL SECTOR: COAL/PETROLEUM/NATURAL GAS. Carbon policies for reducing
emissions in power plants. Carbon mitigation in the power sector:
challenges and opportunities. The environmental impact of implementing CO2
capture process in power plants: effect of type of fuel and energy demand.
Systems integration approaches to monetizing CO2. Energy-water-CO2 nexus of
fossil fuel-based power generation. Natural gas reforming to industrial gas
and chemicals using chemical looping. Alternative pathways for CO2
utilization via dry reforming of methane. Ranking carbon emissions
mitigation options under uncertainty. Carbon management in the CO2-rich
natural gas to energy supply chain. Coal to chemicals: a smart choice.
Optimal planning of biomass co-firing networks with biochar-based carbon
sequestration. Trends in transportation greenhouse gas emissions and
implications for carbon management. SECTION 3. WIND/SOLAR/HYDRO/NUCLEAR.
Nuclear energy and carbon emission reduction - promise and problems.
Concentrated solar energy driven multi-generation systems based on the
organic Rankine cycle technology. Solar photovoltaic technologies and
systems. Reducing the Carbon Footprint of Wind Energy: What Can Be Learned
from Life-Cycle Studies? Hydropower.
Introductory. What key low-carbon technologies are needed to meet serious
climate mitigation targets and what is their status. SECTION 1. GLOBAL AND
REGIONAL VIEWS OF CARBON MANAGEMENT. Introduction. Removing greenhouse
gases from the air to stabilize the climate. Low carbon technologies in
global energy markets. Carbon Management: forest conservation and
management. Reducing carbon footprint of products (CFP) in the value chain.
Significance of GHG measurement on carbon management technologies. SECTION
2. FOSSIL SECTOR: COAL/PETROLEUM/NATURAL GAS. Carbon policies for reducing
emissions in power plants. Carbon mitigation in the power sector:
challenges and opportunities. The environmental impact of implementing CO2
capture process in power plants: effect of type of fuel and energy demand.
Systems integration approaches to monetizing CO2. Energy-water-CO2 nexus of
fossil fuel-based power generation. Natural gas reforming to industrial gas
and chemicals using chemical looping. Alternative pathways for CO2
utilization via dry reforming of methane. Ranking carbon emissions
mitigation options under uncertainty. Carbon management in the CO2-rich
natural gas to energy supply chain. Coal to chemicals: a smart choice.
Optimal planning of biomass co-firing networks with biochar-based carbon
sequestration. Trends in transportation greenhouse gas emissions and
implications for carbon management. SECTION 3. WIND/SOLAR/HYDRO/NUCLEAR.
Nuclear energy and carbon emission reduction - promise and problems.
Concentrated solar energy driven multi-generation systems based on the
organic Rankine cycle technology. Solar photovoltaic technologies and
systems. Reducing the Carbon Footprint of Wind Energy: What Can Be Learned
from Life-Cycle Studies? Hydropower.
climate mitigation targets and what is their status. SECTION 1. GLOBAL AND
REGIONAL VIEWS OF CARBON MANAGEMENT. Introduction. Removing greenhouse
gases from the air to stabilize the climate. Low carbon technologies in
global energy markets. Carbon Management: forest conservation and
management. Reducing carbon footprint of products (CFP) in the value chain.
Significance of GHG measurement on carbon management technologies. SECTION
2. FOSSIL SECTOR: COAL/PETROLEUM/NATURAL GAS. Carbon policies for reducing
emissions in power plants. Carbon mitigation in the power sector:
challenges and opportunities. The environmental impact of implementing CO2
capture process in power plants: effect of type of fuel and energy demand.
Systems integration approaches to monetizing CO2. Energy-water-CO2 nexus of
fossil fuel-based power generation. Natural gas reforming to industrial gas
and chemicals using chemical looping. Alternative pathways for CO2
utilization via dry reforming of methane. Ranking carbon emissions
mitigation options under uncertainty. Carbon management in the CO2-rich
natural gas to energy supply chain. Coal to chemicals: a smart choice.
Optimal planning of biomass co-firing networks with biochar-based carbon
sequestration. Trends in transportation greenhouse gas emissions and
implications for carbon management. SECTION 3. WIND/SOLAR/HYDRO/NUCLEAR.
Nuclear energy and carbon emission reduction - promise and problems.
Concentrated solar energy driven multi-generation systems based on the
organic Rankine cycle technology. Solar photovoltaic technologies and
systems. Reducing the Carbon Footprint of Wind Energy: What Can Be Learned
from Life-Cycle Studies? Hydropower.