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Full-Text Articles in Environmental Engineering

Aep Perspectives On 21st Century Power Generation, Matt Usher Apr 2016

Aep Perspectives On 21st Century Power Generation, Matt Usher

CO2 Summit II: Technologies and Opportunities

This presentation will provide an overview of AEP’s Business, focusing on the current and future generation portfolio, and progress made to date in the reduction of emissions, including CO2. Included will be a discussion of key industry trends and issues influencing AEP’s R&D and business development strategies, perspectives on current and future CCUS technology development, as well as insights into the role that AEP sees technology playing to support the “utility of the future”.


Update On The Status And Development Of Issues Surrounding Enhanced Oil Recovery (Eor) In The State Of Wyoming, Steven Carpenter Apr 2016

Update On The Status And Development Of Issues Surrounding Enhanced Oil Recovery (Eor) In The State Of Wyoming, Steven Carpenter

CO2 Summit II: Technologies and Opportunities

The Enhanced Oil Recovery Institute (EORI) at the University of Wyoming is charged, by the Wyoming Legislature, to work with Wyoming oil producers to increase oil production, and as result, increase tax revenues of the state. EORI is part of the School of Energy Resources at the University of Wyoming, which provides offices and laboratory facilities in which EORI works. A Technical Advisory Board (TAB), comprised of leading experts from universities and energy companies in the United States, provides technical oversight of EORI work. In addition to industry cooperation and project co-funding, EORI works closely with the other University of …


Chemical Utilization Of Co2 For Grid-Scale Energy Storage: A Prospective Scenario Of China And Global Energy Connection, Pengxiang Song, Bo Zhao, Zhaolong Du Apr 2016

Chemical Utilization Of Co2 For Grid-Scale Energy Storage: A Prospective Scenario Of China And Global Energy Connection, Pengxiang Song, Bo Zhao, Zhaolong Du

CO2 Summit II: Technologies and Opportunities

Utilizing carbon dioxide (CO2) sequestered from large point sources to produce fuels and chemicals has been proposed as an energy carrier of storing intermittent renewable energy. The integrated technology is Power to Gas (PtG), or Power to Liquid (PtL) process. In the scenario of very-high installed renewable energy source (RES>80%) or curtailed wind/solar energy, the RES+PtG/ PtL will play an important role of energy transition while fossil fuels are phased out. The study reviews and assesses the technology development, economic feasibility, system impact and future outlook in prospective of grid-scale analysis and global energy interconnection.


Geologic Co2 Storage Using Pre-Injection Brine Production In Tandem Reservoirs: A Strategy For Improved Storage Performance And Enhanced Water Recovery, Thomas Buscheck, Jeffrey Bielicki, Joshua White, Yunwei Sun, Yue Hao, William Bourcier, Susan Carroll, Roger Aines Apr 2016

Geologic Co2 Storage Using Pre-Injection Brine Production In Tandem Reservoirs: A Strategy For Improved Storage Performance And Enhanced Water Recovery, Thomas Buscheck, Jeffrey Bielicki, Joshua White, Yunwei Sun, Yue Hao, William Bourcier, Susan Carroll, Roger Aines

CO2 Summit II: Technologies and Opportunities

Deployment barriers for CO2 capture, utilization, and storage (CCUS) in saline reservoirs can be grouped under three categories: (1) net cost (after accounting for utilization benefits); (2) water intensity of CO2 capture, and (3) uncertainty about storage capacity and permanence. The third category is often considered to be the most challenging. Overpressure, which is fluid pressure that exceeds the original reservoir pressure due to CO2 injection, is the limiting metric for storage capacity and permanence because it drives key physical risks: induced seismicity, caprock fracture, and CO2 leakage. Variables that control overpressure include: (1) the quantity …


Assessment Of The Co2 Capture Potential From Irreplaceable Industrial Sources, Peter Psarras, Jennifer Wilcox Apr 2016

Assessment Of The Co2 Capture Potential From Irreplaceable Industrial Sources, Peter Psarras, Jennifer Wilcox

CO2 Summit II: Technologies and Opportunities

The industrial sector represents approximately 20% of total US CO2 emissions.1 These emissions can be further categorized as direct (accountable on-site, e.g., stationary combustion), indirect (assigned to electricity purchased for power) and process (CO2 liberated as a reaction by-product). For example, steel and cement production both involve processes that directly emit CO2 as a by-product (via the oxidation of metallurgical coke and conversion of calcium carbonate to lime, respectively). While climate change mitigation efforts have the potential to reduce direct and indirect emissions through the adoption of best practice technologies and low-carbon energy sources, process emissions …


Perspectives Of Pre-Combustion Ccs Systems For Central Europe, Monika Vitvarova, Vaclav Novotny Apr 2016

Perspectives Of Pre-Combustion Ccs Systems For Central Europe, Monika Vitvarova, Vaclav Novotny

CO2 Summit II: Technologies and Opportunities

Carbon Capture and Storage (CCS) has a potential to play a significant role in the future of power generation in Europe, at least in a short to intermediate term. Among the reasons are necessity and also growing political willingness to limit the CO2 emissions while it appears that fossil fuels are to remain an important source for fuel and electricity production. CCS technologies however mean inevitable technical, energy and economic penalty, especially since most common fossil fuel for power generation in the Central Europe is lignite.

We are presenting the focus and first results of a recently initiated Norway Grants …


U.S. Doe Carbon Capture Program: Advancing Multiple Generations Of Carbon Capture Solutions Laboratory To Pilot Scale Development, Jose Figueroa Apr 2016

U.S. Doe Carbon Capture Program: Advancing Multiple Generations Of Carbon Capture Solutions Laboratory To Pilot Scale Development, Jose Figueroa

CO2 Summit II: Technologies and Opportunities

The changing energy profile of the United States has reduced energy-related carbon dioxide emissions, according to the DOE Energy Information Administration (EIA). However, this does not preclude the need for carbon capture, utilization and storage (CCUS) as an important solution to climate change. In fact, the change only further supports the need to develop flexible and cost effective carbon capture technologies that can be applied to various fuel sources for power generation application.

CCUS is one of many approaches but is critical to significantly reducing domestic and global CO2 emissions, considering CO2 atmospheric concentrations reached 400 ppm in May 2013 …


The Critical Role Of Ccs And Eor In Managing Us Carbon Emissions, Brad Crabtree Apr 2016

The Critical Role Of Ccs And Eor In Managing Us Carbon Emissions, Brad Crabtree

CO2 Summit II: Technologies and Opportunities

The capture of carbon dioxide (CO2) from power plants and industrial facilities for use in enhanced oil recovery (EOR) with safe and permanent geologic storage represents an essential pathway for domestic energy security, achieving mid-century national and global greenhouse gas reduction goals and accomplishing both affordably. Fortunately, awareness and support from across the political spectrum are growing to make carbon capture and storage (CCS) a national priority and to enact federal and state policies that will accelerate large-scale commercial deployment of carbon capture in electric power generation and a wide range of industrial sectors. This presentation will review the oil …


Electrochemical Carbon Dioxide Reduction As An Alternative Source Of Fuels And Chemicals, Kendra Kuhl, Etosha Cave, George Leonard, Daniel Diaz, Nicholas Flanders Apr 2016

Electrochemical Carbon Dioxide Reduction As An Alternative Source Of Fuels And Chemicals, Kendra Kuhl, Etosha Cave, George Leonard, Daniel Diaz, Nicholas Flanders

CO2 Summit II: Technologies and Opportunities

Cost-effective electrochemical CO2 recycling (ECO2R), is the holy grail of green chemistry. ECO2R combines just three inputs: CO2, water, and electricity, and converts them into useful products. At commercial scale, this technology could eliminate our dependence on fossil resources by providing an alternative source of carbon-based compounds for fuels and commodity chemicals. However, commercial fuel and chemical production via ECO2R is challenging, because the current state of the technology is not cost-effective enough to compete with conventionally manufactured fuels and chemicals already on the market.

The key cost-drivers of ECO2R are the energy efficiency, product selectivity, and …


Iron-Based Chemical Looping Processes, Cheng Chung, Liang-Shih Fan Apr 2016

Iron-Based Chemical Looping Processes, Cheng Chung, Liang-Shih Fan

CO2 Summit II: Technologies and Opportunities

Chemical looping technology has attracted significant attention due to its potential in cost-effective CO2 capture capabilities. It utilizes metal oxide as oxygen carriers to indirectly convert carbonaceous fuel such as coal, natural gas and biomass into electricity, H2, liquid fuel without the use of an air separation unit (ASU). In the case of power production, chemical looping process allows for high exergy efficiency, as the high grade heat produced from the oxidation of the oxygen carrier can be extracted for steam production, while the lower grade heat is recuperated in the oxygen carrier to perform its endothermic …


The Production Of Water From Saline Aquifers Through Carbon Dioxide Capture And Storage Operations, Kelsey Hunter, Jeffrey Bielicki Apr 2016

The Production Of Water From Saline Aquifers Through Carbon Dioxide Capture And Storage Operations, Kelsey Hunter, Jeffrey Bielicki

CO2 Summit II: Technologies and Opportunities

The gap between an energy sector that relies on fossil fuels and one that relies on renewable resources may be bridged by systems that conserve resources, use closed-looped processes, and reduce carbon dioxide (CO2) emissions. CO2 capture and storage (CCS) technology may reduce CO2 emissions by injecting CO2 captured from power plants into deep saline aquifers for sequestration, but these systems have additional water and energy requirements that may impede deployment due to regional water stress and increased energy costs. CO2 capture, utilization, and storage (CCUS) operations that use Active CO2 Reservoir Management …


Combined Magnesium Oxide/Water Gas Shift-Based Co2 Capture Process, Santosh Ganwal Apr 2016

Combined Magnesium Oxide/Water Gas Shift-Based Co2 Capture Process, Santosh Ganwal

CO2 Summit II: Technologies and Opportunities

Southern Research is developing a combined magnesium oxide (MgO) CO2 sorbent/water gas shift (WGS)-catalyst-based CO2 capture process for integrated gasification combined cycle (IGCC) power plants. A heat-exchanger reactor with a highly efficient heat management capability is being developed for simultaneous CO2 capture and WGS to convert CO to CO2 and H2 and capture more than 90 % or more of the carbon from coal gasifier syngas. Simultaneous heat management and reaction allows the maintenance of thermodynamically favorable reaction temperatures for both steps. Also, by simultaneously converting the CO to CO2 over the shift catalyst, …


Techno-Economic Evaluation Of Retrofitting Ccs In An Integrated Pulp And Board Mill - Case Studies, Kristin Onarheim, Stanley Santos, Ville Hankalin, Petteri Kangas, Antti Arasto Apr 2016

Techno-Economic Evaluation Of Retrofitting Ccs In An Integrated Pulp And Board Mill - Case Studies, Kristin Onarheim, Stanley Santos, Ville Hankalin, Petteri Kangas, Antti Arasto

CO2 Summit II: Technologies and Opportunities

Urgently reducing global greenhouse gas emissions (GHG) could be achieved by carbon sinks or negative emissions, i.e. removing CO2 from the atmosphere and offsetting historical CO2 emissions. Negative emissions can be achieved when CO2 is captured from processes based on biomass feedstock (bio-CCS). Biomass withdraws atmospheric CO2 through natural processes such as the photosynthesis. Capturing and permanently storing this CO2 away from the natural carbon cycle enables a withdrawal of CO2 from the atmosphere. Sustainable growth and harvest of biomass resources is critical to achieve carbon negativity and to allow for sound biomass regrowth. …


Development And Planning For Carbon Dioxide (Co2) Capture, Utilization, And Storage (Ccus) Infrastructure In Geothermal Reservoirs, Julie Langenfeld, Jeffrey Bielicki Apr 2016

Development And Planning For Carbon Dioxide (Co2) Capture, Utilization, And Storage (Ccus) Infrastructure In Geothermal Reservoirs, Julie Langenfeld, Jeffrey Bielicki

CO2 Summit II: Technologies and Opportunities

CO2 emissions from human activities are a substantial contributor to climate change.1 To reduce CO2 emissions on a large scale, CO2-reduction technologies such as CO2 capture and storage (CCS) will need to be competitive with current energy technologies.1 CCS systems are costly due to the equipment, construction, and energy needed to capture CO2, transport it via a pipeline network, and inject it into deep saline aquifers. In CO2 capture, utilization, and storage (CCUS) systems, the CO2 is used to produce an economically viable product which could reduce the cost …


Development Of Chemical Looping Combustion Technology For Bio-Ccs Application, Sebastian Teir, Toni Pikkarainen, Eemeli Tsupari, Ikka Hiltunen, Janne Karki, Antti Arasto Apr 2016

Development Of Chemical Looping Combustion Technology For Bio-Ccs Application, Sebastian Teir, Toni Pikkarainen, Eemeli Tsupari, Ikka Hiltunen, Janne Karki, Antti Arasto

CO2 Summit II: Technologies and Opportunities

Carbon capture and storage (CCS) is acknowledged as an important technology in cost-efficiently achieving the required greenhouse gas emission reductions this century. Combining biomass combustion with CCS (Bio-CCS; BECCS) offers the possibility of “negative” CO2 emissions. In the latest IPCC assessment, bio-CCS was found to have an important role to play in climate change mitigation. Many scenario models were not able to achieve the necessary reduction in greenhouse gas concentration in the atmosphere to 450 ppm CO2eq by 2100 if key technologies, such as bioenergy, CCS, and their combination were limitedly available (IPCC, 2014).

Chemical looping combustion …


The Good, The Bad And The Ugly, Robin Batterham Apr 2016

The Good, The Bad And The Ugly, Robin Batterham

CO2 Summit II: Technologies and Opportunities

In late 2015 world leaders finalized the landmark Paris Agreement at COP21. Although the agreement represents a historical step toward collaboration on climate, the total amount of emissions reduction commitments is considered insufficient to meet the 2°C, and especially the more ambitious 1.5°C, warming goal. However, history is filled with technological innovations that were once unimaginable. As new technologies come to market, almost regardless of the field of use, costs have continued to fall in real terms. Whether or not we can expect the same from CO2 mitigation technologies will impact whether the world can actually meet its climate commitments …


Minimizing The Energy And Economic Penalty Of Ccs Power Plants Through Waste Heat Recovery Systems, Vaclav Novotny, Monika Vitvarova, Michal Kolovratnik, Zdenek Hrdina Apr 2016

Minimizing The Energy And Economic Penalty Of Ccs Power Plants Through Waste Heat Recovery Systems, Vaclav Novotny, Monika Vitvarova, Michal Kolovratnik, Zdenek Hrdina

CO2 Summit II: Technologies and Opportunities

Implementation of currently considered and available CCS technologies into fossil power plants brings inevitable technical, energy and economic penalty. This is getting even larger when fossil fuels such as low rank coal are being utilized. All three generally considered CCS technologies were modelled – oxyfuel combustion and ammonia based post-combustion (subcritical power plant with fuel drying) and pre-combustion (IGCC with Rectisol method for CO2 separation).

After traditional methods of system optimization there was considered another way for increasing system efficiency. CCS technologies produce waste heat streams, which can be converted to electricity by small modular units with unit cost comparable …


Emissions And Deforestation Associated With Household Energy Use: A Case Of The Thulamela Local Municipality, South Africa, Se Uhunamure, Ns Nethengwe, A Musyoki Apr 2016

Emissions And Deforestation Associated With Household Energy Use: A Case Of The Thulamela Local Municipality, South Africa, Se Uhunamure, Ns Nethengwe, A Musyoki

CO2 Summit II: Technologies and Opportunities

Fuel wood is regarded as a major source of energy around the world, particularly in developing nations forming part of the energy mix. Most rural communities around the world, consider forests as the repository of stored energy. The study focused on the role of fuel wood in deforestation and the emissions of greenhouse gases (GHG) in the Thulamela local municipality in South Africa. Information regarding the fuel wood consumption was collected during a manual field survey of 200 households in four villages in the municipality using questionnaires and interviews. The carbon dioxide (CO2) emissions were calculated using the …


Poly(4-Vinylpyridine) As A Platform For Robust Co2 Electroreduction, Irina Cheryshova, Chang Yun, Ponisseril Somasundaran, Sathish Ponnurangam Apr 2016

Poly(4-Vinylpyridine) As A Platform For Robust Co2 Electroreduction, Irina Cheryshova, Chang Yun, Ponisseril Somasundaran, Sathish Ponnurangam

CO2 Summit II: Technologies and Opportunities

The development of efficient and robust catalysts is critical for the viability of the electrocatalytic conversion of CO2 into useful chemicals. Herein, we discover a new class of metal-polymer electrocatalysts with incorporated mechanisms of their stabilization which is based on a poly(4-vinyl pyridine). We attribute the outstanding catalytic properties of the new hybrid material to new intrinsic mechanisms of the metal stabilization offered by the N-heteroaromatic polymer. More generally, our study offers a new simple strategy to design and prepare robust CO2 reduction electrocatalysts


Catalyzing The Carbon Utilization Industry Through The Nrg Cosia Carbon Xprize, Paul Bunje Apr 2016

Catalyzing The Carbon Utilization Industry Through The Nrg Cosia Carbon Xprize, Paul Bunje

CO2 Summit II: Technologies and Opportunities

No abstract provided.


Optimal Geothermal Heat Extraction Using Co2, Iti Patel, Jeffrey Bielicki Apr 2016

Optimal Geothermal Heat Extraction Using Co2, Iti Patel, Jeffrey Bielicki

CO2 Summit II: Technologies and Opportunities

Carbon dioxide (CO2) capture and storage (CCS) systems alleviate global climate change through the subsurface storage of CO2 emission. This CCS technology can be costly, but CO2 Capture, Utilization, and Storage (CCUS) approaches can decrease the cost of CCS, because sequestered CO2 is used to produce an economically viable commodity. In one CCUS application, CO2 that is sequestered in sedimentary basins during the CCS process can be used to extract geothermal heat that can then be used to generate a profit1,2. These CO2-geothermal systems rely on the temperature of …


Ccs Cost Trends And Outlook, Edward Rubin Apr 2016

Ccs Cost Trends And Outlook, Edward Rubin

CO2 Summit II: Technologies and Opportunities

Based on a review and analysis of recent cost studies, this paper assesses the current costs of CO2 capture and storage (CCS) for new fossil fuel power plants and compares them to costs reported a decade ago in the IPCC Special Report on Carbon dioxide Capture and Storage (SRCCS). The major CCS options include post-combustion CO2 capture at supercritical pulverized coal (SCPC) and natural gas combined cycle (NGCC) power plants, pre-combustion capture at coal-based integrated gasification combined cycle (IGCC) power plants, and SCPC plants employing oxy-combustion for CO2 capture. Transport and storage options include pipeline and geological storage, including utilization …


Novel Advanced Solvent-Based Carbon Capture Pilot Demonstration, Nathan Brown, Greg Staab, Tyler Silverman, Grayson Heller, Alfred Brown Apr 2016

Novel Advanced Solvent-Based Carbon Capture Pilot Demonstration, Nathan Brown, Greg Staab, Tyler Silverman, Grayson Heller, Alfred Brown

CO2 Summit II: Technologies and Opportunities

ION Engineering’s advanced solvent is one of the leading second generation solvent systems currently under development for post-combustion carbon dioxide (CO2) capture. Throughout small scale pilot testing with coal and natural gas fired flue gas, bench scale pilot and laboratory testing, ION’s advanced solvent has consistently demonstrated 30+% reductions in regeneration energy requirements in comparison to traditional aqueous monoethanolamine (Aq-MEA). These results, in addition to CO2 solvent carrying capacities 35% higher than Aq-MEA and significantly less solvent degradation, demonstrate that ION’s CO2 capture technology has the potential to significantly reduce both capital and operating costs.

ION …


Cryogenic Carbon Capture, Larry Baxter, Andrew Baxter, Chris Bence, David Frankman, Chris Hoeger, Aaron Sayre, Kyler Stitt, Skyler Chamberlain Apr 2016

Cryogenic Carbon Capture, Larry Baxter, Andrew Baxter, Chris Bence, David Frankman, Chris Hoeger, Aaron Sayre, Kyler Stitt, Skyler Chamberlain

CO2 Summit II: Technologies and Opportunities

Cryogenic Carbon Capture™ (CCC) removes CO2 from flue gas in a bolt on retrofittable, cost-effective, and energy-efficient process. The process also provides grid-level energy storage capable of storing and releasing energy at hundreds of megawatt rates at high efficiency and minimal cost beyond the costs of the carbon capture technology. The energy storage can level daily load fluctuations and responds to intermittent power sources on time scales comparable to solar and wind farms. The technology cools flue gases to their condensation (desublimation) point forming solid CO2, separates the solids from the residual gases, pressurizes the solids, and reheats both streams …


Conference Program, Engineering Conferences International Apr 2016

Conference Program, Engineering Conferences International

CO2 Summit II: Technologies and Opportunities

No abstract provided.


Deep Uv-Leds Based On Group Iii-Nitride For Water Disinfection Applications, Iolanda Pio, Vittorianna Tasco, Adriana Passaseo Jun 2014

Deep Uv-Leds Based On Group Iii-Nitride For Water Disinfection Applications, Iolanda Pio, Vittorianna Tasco, Adriana Passaseo

Wastewater and Biosolids Treatment and Reuse: Bridging Modeling and Experimental Studies

No abstract provided.


On The Sustainable Management Of Sewage Sludge Disposal In Apulia, A.M. Lotito, U. Fratino, M. Blonda Jun 2014

On The Sustainable Management Of Sewage Sludge Disposal In Apulia, A.M. Lotito, U. Fratino, M. Blonda

Wastewater and Biosolids Treatment and Reuse: Bridging Modeling and Experimental Studies

No abstract provided.


Wastewater Treatment And Reuse In The Oil & Petrochem Industry – A Case Study, Alberto Girardi Jun 2014

Wastewater Treatment And Reuse In The Oil & Petrochem Industry – A Case Study, Alberto Girardi

Wastewater and Biosolids Treatment and Reuse: Bridging Modeling and Experimental Studies

No abstract provided.


Wastewater Reuse In Apulia: Constraints And Perspectives, Vito Colucci Jun 2014

Wastewater Reuse In Apulia: Constraints And Perspectives, Vito Colucci

Wastewater and Biosolids Treatment and Reuse: Bridging Modeling and Experimental Studies

No abstract provided.


Experimental Measurement And Modeling Of Radiation Fields In Tio2 Nanoparticle Photocatalysis, Andrea Turolla, Domenico Santoro, John De Bruyn, Manuela Antonelli Jun 2014

Experimental Measurement And Modeling Of Radiation Fields In Tio2 Nanoparticle Photocatalysis, Andrea Turolla, Domenico Santoro, John De Bruyn, Manuela Antonelli

Wastewater and Biosolids Treatment and Reuse: Bridging Modeling and Experimental Studies

No abstract provided.