during the SARMAP field campaign (, Examining feedbacks of aerosols to urban climate with a model that treats 3-D clouds with aerosol inclusions (, Global-through-urban nested three-dimensional simulation of air pollution with a 13,600-reaction photochemical mechanism (, SMVGEAR: A sparse-matrix, vectorized Gear code for atmospheric models (, Computation of global photochemistry with SMVGEAR II (, Improvement of SMVGEAR II on vector and scalar machines through absolute error tolerance control (, Modeling coagulation among particles of different composition and size (, Simulating condensational growth, evaporation, and coagulation of aerosols using a combined moving and stationary size grid (, Numerical techniques to solve condensational and dissolutional growth equations when growth is coupled in Civil Engineering with distinction, an A.B. clouds on aerosol removal (, A mass, energy, vorticity, and potential enstrophy conserving lateral fluid-land boundary scheme for the shallow water equations (, A mass, energy, vorticity, and potential enstrophy conserving lateral boundary scheme for the shallow water equations using piecewise linear boundary approximations (, Numerical solution to drop coalescence/breakup with a volume-conserving, positive-definite, and unconditionally-stable scheme (, Studying ocean acidification with conservative, stable numerical schemes for nonequilibrium air-ocean exchange and ocean equilibrium chemistry (, Coupling of highly explicit gas and aqueous chemistry mechanisms for use in 3-D (, Features of GATOR-GCMOM, the model used for the above studies. 540; House Bills H.R. 'Mark Jacobson’s new book, 100% Clean, Renewable Energy and Storage for Everything, provides the most authoritative look yet at the future of energy beyond fossil fuels. Stanford University Professor Mark Z. Jacobson, who explores and analyzes air quality, global warming and large-scale renewable energy solutions through elegant mathematical models, has already connected the eco-economic dots that Obama omitted. Professor of Civil and Environmental Engineering Chem. Environmental Engineering (1988) Stanford University Civil Engineering, B.A. By 2017, plans had been developed for 139 countries of the world; and by 2018, 53 towns and cities. We can’t create climate solutions for 100% of the people, without everyone on board. Jacobson has published research on the role of black carbon and other aerosol chemical components on global and regional climates. Toward that end, he has developed and applied three-dimensional atmosphere-biosphere-ocean computer models and solvers to simulate air pollution, weather, climate, and renewable energy. He has also served on the Energy Efficiency and Renewables advisory committee to the U.S. Secretary of Energy and, in 2013, was invited to talk about his world and U.S. clean-energy plans on the Late Show with David Letterman. Uhren - Taucheruhren, Atmospheric Science, University of California at Los Angeles, CEE 064/263D Air Pollution and Global Warming: History, Science, and Solutions, XEIET 200 Planning for a sustainable future with wind, water, and the sun, Abstract of and links to all 100% WWS roadmap and grid reliability papers, 100% all-sector WWS roadmaps for towns, cites, states, and countries, Grid reliability studies worldwide with 100% WWS in all energy sectors, The Solutions Project Country, State, and City Infographics, Testimony to U.S. House Committee on Black Carbon and Global Warming, October 18, 2007, Testimony to U.S. House Committee on Air Pollution Health Impacts of Carbon Dioxide, April 9, 2008, Testimony to U.S. EPA to Reconsider a Denied Waiver to Allow California’s Control of Carbon Dioxide, March 5, 2009, Testimony to U.S. EPA on Proposed Endangerment Finding, May 18, 2009, TED Debate on Renewables Versus Nuclear February 10, 2010, and Worldwide Health Effects of Fukushima, Interview on Late Show with David Letterman, October 9, 2013, Testimony to U.S. House Energy and Commerce Committee on Transitioning U.S. & World to 100% Clean, Renewable Energy, Nov. 19, 2015, MSNBC Interview on why 100% Wind-Water-Solar and Green New Deal cut consumer costs and unemployment, Fundamentals of Atmospheric Modeling (1999), Providing all global energy with wind, water, and solar power, Part I: Technologies, energy resources, quantities and areas of infrastructure, and materials (, Providing all global energy with wind, water, and solar power, Part II: Reliability, System and Transmission Costs, and Policies (, Examining the feasibility of converting New York State’s all-purpose energy infrastructure to one using wind, water, and sunlight (, A roadmap for repowering California for all purposes with wind, water, and sunlight(, 100% clean and renewable wind, water, sunlight (WWS) all-sector energy roadmaps for the 50 United States (, A 100% wind, water, sunlight (WWS) all-sector energy plan for Washington State (, 100% clean and renewable wind, water, and sunlight (WWS) all-sector energy roadmaps for 139 countries of the world (, Impacts of Green-New-Deal energy plans on grid stability, costs, jobs, health, and climate in 143 countries (, 100% clean and renewable wind, water, and sunlight (WWS) all-sector energy roadmaps for 53 towns and cities in North America (, Transitioning all energy in 74 metropolitan areas, including 30 megacities, to 100% clean and renewable wind, water, and sunlight (WWS) (, Matching demand with supply at low cost among 139 countries within 20 world regions with 100% intermittent wind, water, and sunlight (WWS) for all purposes (, A low-cost solution to the grid reliability problem with 100% penetration of intermittent wind, water, and solar for all purposes (, Development of a tool for optimizing solar and battery storage for container farming in a remote Arctic microgrid (, Optimizing investments in coupled offshore wind-electrolytic hydrogen storage systems in Denmark (, Flexibility mechanisms and pathways to a highly renewable U.S. electricity future (, Temporal and spatial tradeoffs in power system modeling with assumptions about storage: An application of the POWER model (, Features of a fully renewable U.S. electricity-system: Optimized mixes of wind and solar PV and transmission grid extensions (, Variability and uncertainty of wind power in the California electric power system (, The carbon abatement potential of high penetration intermittent renewables (, Effects of aggregating electric load in the United States (, The potential of intermittent renewables to meet electric power demand: A review of current analytical techniques (, A Monte Carlo approach to generator portfolio planning and carbon emissions assessments of systems with large penetrations of variable renewables (, Reducing offshore transmission requirements by combining offshore wind and wave farms (, Power output variations of co-located offshore wind turbines and wave energy converters in California (, Supplying baseload power and reducing transmission requirements by interconnecting wind farms (, Review of solutions to global warming, air pollution, and energy security (, The effect on photochemical smog of converting the U.S. fleet of gasoline vehicles to modern diesel vehicles (, Cleaning the air and improving health with hydrogen fuel cell vehicles (, Switching to a U.S. hydrogen fuel cell vehicle fleet: The resultant change in emissions, energy use, and global warming gases (, Effects of ethanol (E85) versus gasoline vehicles on cancer and mortality in the United States (, Effects of wind-powered hydrogen fuel cell vehicles on stratospheric ozone and global climate (, Examining the temperature dependence of ethanol (E85) versus gasoline emissions on air pollution with a largely-explicit chemical mechanism (, Examining the impacts of ethanol (E85) versus gasoline photochemical production of smog in a fog using near-explicit gas- and aqueous-chemistry mechanisms (, Worldwide health effects of the Fukushima Daiichi nuclear accident (, Carbon emissions and costs of subsidizing three New York nuclear reactors instead of replacing them with renewables (, The health and climate impacts of carbon capture and direct air capture (, Spatial and temporal distributions of U.S. winds and wind power at 80 m derived from measurements (, Large CO2 reductions via offshore wind power matched to inherent storage in energy end-uses(, California offshore wind energy potential (, U.S. East Coast offshore wind energy resources and their relationship to peak-time electricity demand (, Where is the ideal location for a U.S. East Coast offshore grid (, Saturation wind power potential and its implications for wind energy (, Geographical and seasonal variability of the global "practical" wind resources (, Taming hurricanes with arrays of offshore wind turbines (, World estimates of radiation to optimally tilted, 1-axis, and 2-axis tracked PV panels (, Coming: Installed and output power densities of onshore and offshore wind turbines worldwide (, On the causal link between carbon dioxide and air pollution mortality (, The enhancement of local air pollution by urban CO2 domes (, Short-term impacts of the Aliso Canyon natural gas blowout on weather, climate, air quality, and health in California and Los Angeles (, Development and application of a new air pollution modeling system. New Book: 100% Clean, Renewable Energy and Storage for Everything (2020), Air Pollution and Global Warming: History, Science, and Solutions (2012), Atmospheric Pollution: History, Science, and Regulation (2002), Fundamentals of Atmospheric Modeling, 2d ed. Model design and treatment of subgrid soil, vegetation, roads, rooftops, water, sea ice, and snow (, The short-term effects of agriculture on air pollution and climate in California (, Effects of urban surfaces and white roofs on global and regional climate (, Ring of impact from the mega-urbanization of Beijing between 2000 and 2009 (, Short-term impacts of the mega-urbanizations of New Delhi and Los Angeles between 2000 and 2009 (, Analysis of emission data from global commercial aviation: 2004 and 2006 (, Parameterization of subgrid plume dilution for use in large-scale atmospheric simulations (, Large eddy simulations of contrail development: Sensitivity to initial and ambient conditions over first twenty minutes (, Vertical mixing of commercial aviation emissions from cruise altitude to the surface (, The effects of aircraft on climate and pollution. Mark Z. Jacobson’s career has focused on better understanding air pollution and global warming problems and developing large-scale clean, renewable energy solutions to them. Economics, and M.S. 632, and Senate Bill S.987, all of which called for the U.S. to go to 100% clean, renewable energy. 3314, 3671, and 330; Senate Resolution S.Res. Scientists Sharply Rebut Influential Renewable-Energy Plan. Scientific Background Mark Z. Jacobson’s career has focused on better understanding air pollution and global warming problems and developing large-scale clean, renewable energy solutions to them. They were also the primary scientific justifications behind the U.S. Green New Deal (House and Senate Resolutions H.Res. distributions (, Development of mixed-phase clouds from multiple aerosol size distributions and the effect of the He has published three textbooks and 165 peer-reviewed articles. This will make a great text book for courses on energy and climate change, but is also a must read for all of us interested in the transition to a renewable future.' His students subsequently published papers on reducing the variability of wind energy by interconnecting wind farms; on integrating solar, wind, geothermal, and hydroelectric power into the grid; and on wave power. Many features in GATOR-GCMOM are now mainstream in other models worldwide. He has testified four times for the U.S. Congress. In 2009, he coauthored a plan, featured on the cover of Scientific American, to power the world for all purposes with wind, water, and sunlight (WWS). These and later papers of his provided the original scientific basis for several laws and regulations on black carbon emission controls worldwide. The text is clearly written, authoritative, and thoroughly referenced. In this first-ever TED debate, Stewart Brand and Mark Z. Jacobson square off over the pros and cons. The review article of Zhang (Atmos. Your donation supports the people on the frontlines of the climate crisis. Toward that end, he has developed and applied three-dimensional atmosphere-biosphere-ocean computer models and solvers to simulate air pollution, weather, climate, and renewable energy. Mark Z. Jacobson is on Facebook. Account & Lists Account Returns & Orders. Professor of Civil and Environmental Engineering and Senior Fellow at the Woods Institute for the Environment, Yang and Yamazaki Energy & Environment Building, Precourt Institute Energy Advisory Council. From 2011-2015, his group developed individual WWS energy plans for each of the 50 United States. • Jacobson, M. Z., Fundamentals of Atmospheric Modeling. In 2005, his group developed the first world wind map based on data alone. Part II: Aerosol-module structure and His seeks to understand air pollution and global warming problems and develop large-scale clean, renewable energy solutions to them. Toward that end, he has developed and applied three-dimensional atmosphere-biosphere-ocean computer models and solvers to simulate air pollution, weather, climate, and renewable energy. Nearly a thousand researchers have used computer models he has developed. Stanford Report, June 8, 2015 Stanford engineers develop state-by-state plan to convert U.S. to 100% clean, renewable energy by 2050 Mark Z. Jacobson and colleagues show that it's technically possible for each state to replace fossil fuel energy with entirely clean, renewable energy. Phys. 100% renewables for 143 countries covering 99.7% of global energy carbon emissions is very inexpensive compared to business as usual in Jacobson's latest. Mark Z. Jacobson and colleagues show that it's technically possible for each state to replace fossil fuel energy with entirely clean, renewable energy. Part III: Aerosol-phase simulations (, Isolating nitrated and aeromatic aerosols and nitrated aromatic gases as sources of ultraviolet light absorption (, A physically-based treatment of elemental carbon optics: Implications for global direct forcing of aerosols (, Global direct radiative forcing due to multicomponent anthropogenic and natural aerosols (, Strong radiative heating due to the mixing state of black carbon in atmospheric aerosols (, Control of fossil-fuel particulate black carbon plus organic matter, possibly the most effective method of slowing global warming (, The short-term cooling but long-term global warming due to biomass burning (, The climate response of fossil-fuel and biofuel soot, accounting for soot’s feedback to snow and sea ice albedo and emissivity (, Effects of externally-through-internally-mixed soot inclusions within clouds and precipitation on global climate (, The influence of future anthropogenic emissions on climate, natural emissions, and air quality (, Short-term effects of controlling fossil-fuel soot, biofuel soot and gases, and methane on climate, Arctic ice, and air pollution health (, Microphysical and radiative effects of aerosols on warm clouds during the Amazon biomass burning season as observed by MODIS: impacts of water vapor and land cover (, Comparing results from a physical model with satellite and in situ observations to determine whether biomass burning aerosols over the Amazon brighten or burn off clouds (, The effects of rerouting aircraft around the Arctic Circle on Arctic and global climate (, Investigating cloud absorption effects: Global absorption properties of black carbon, tar balls, and soil dust in clouds and aerosols (, The effects of aircraft on climate and pollution. With respect to solvers, in 1993, he developed what may have been the world’s fastest ordinary differential equation solver in a three-dimensional model for a given level of accuracy and applied it to atmospheric chemistry. This result was supported by several subsequent studies, including a 2013 comprehensive review. Senior Fellow, Precourt Institute for Energy In 2011, he cofounded The Solutions Project, a non-profit that combines science, business, and culture to educate the public about science based 100% clean-energy roadmaps for 100% of the people. Toward that end, he has developed and applied three-dimensional atmosphere-biosphere-ocean computer models and solvers to simulate air pollution, weather, climate, and renewable energy. Mark Z. Jacobson is Director of the Atmosphere/Energy Program and Professor of Civil and Environmental Engineering at Stanford University. In addition, the 100% roadmaps were the scientific basis behind the platforms of three presidential candidates and a major political party in 2016. This will make a great text book for courses on energy and climate change, but is also a must read for all of us interested in the transition to a renewable future.' In 2018, he received the Judi Friedman Lifetime Achievement Award "for a distinguished career dedicated to finding solutions to large-scale air pollution and climate problems." Mark Jacobson answered questions about his new book and 100% clean and renewable energy during his author webinar last week. Part I: Gas-phase simulations (, Development and application of a new air pollution modeling system. He has also developed roadmaps to transition countries, states, cities, and towns to 100% clean, renewable energy for all purposes and computer models to examine grid stability in the presence of high penetrations of renewable energy. For example, MacDonald et al.’s (20) grid-stability analysis considered only electricity, which is only ∼20% of total energy… In 2000 (Geophysical Research Letters) and 2001 (Nature), he applied his model to discover that black carbon, the main component of soot air pollution particles, might be the second-leading cause of global warming in terms of radiative forcing, after carbon dioxide. He has also developed roadmaps to … 'Mark Jacobson’s new book, 100% Clean, Renewable Energy and Storage for Everything, provides the most authoritative look yet at the future of energy beyond fossil fuels. To find out more and to register, click here. Mark Z. Jacobson’s career has focused on better understanding air pollution and global warming problems and developing large-scale clean, renewable energy solutions to them. Such a transition will address air pollution, global warming, and energy security simultaneously. News Local His seeks to understand air pollution and global warming problems and develop large-scale clean, renewable energy solutions to them. Stanford University scientist Mark Jacobson has developed a 50-state roadmap for transforming the United States from dependence on fossil fuels to 100 percent renewable energy by 2050. Our 100% Clean Energy Vision. Mark does research on Air Pollution, Climate, and Clean, Renewable Energy. Toward that end, he has developed and applied three-dimensional atmosphere-biosphere-ocean computer models and solvers to simulate air pollution, weather, climate, and renewable energy. condensation, dissolution, and reversible chemistry among multiple size M.S. (2005), Some papers organized by topic (please see Curriculum Vitae for full list), Number of visitors to this site since February 11, 2019: Third, unlike Jacobson et al. The individual state roadmaps were the primary scientific justifications for laws in 9 U.S. states, the District of Columbia, and Puerto Rico to transition to up to 100% clean, renewable electricity. This book examines the science, engineering, economic, social, and political aspects of transitioning towns, cities, states, countries, businesses, and the world to 100 percent clean, renewable wind-water-solar (WWS) energy and storage for everything. … Mark Z. Jacobson’s career has focused on better understanding air pollution and global warming problems and developing large-scale clean, renewable energy solutions to them. Senior Fellow, Woods Institute for the Environment Nearly two dozen researchers critique a proposal for wind, solar, and water power gaining traction in policy circles. absorption coefficients among multiple gases simultaneously from line-by-line Mark Z. Jacobson is Director of the Atmosphere/Energy Program and Professor of Civil and Environmental Engineering at Stanford University. Co-Founder, The Solutions Project, 100.org, and the 100% Clean, Renewable Energy Movement, PUBLIC ONLINE COURSELET "PLANNING FOR A SUSTAINABLE FUTURE WITH WIND, WATER, AND THE SUN", B.S. Mark Z. Jacobson’s career has focused on better understanding air pollution and global warming problems and developing large-scale clean, renewable energy solutions to them. We need your support to create the world we want. Civil and environmental engineer At Stanford, Mark Z. Jacobson uses numerical models to study the effects of energy systems and vehicles on climate and air pollution, and to analyze renewable energy resources. In 2019, he was selected as "one of the world’s 100 most influential people in climate policy" by Apolitical. (2), the IPCC, National Oceanic and Atmospheric Administration, National Renewable Energy Laboratory, and International Energy Agency have never performed or reviewed a cost analysis of grid stability under deep decarbonization. He is also a Senior Fellow of the Woods Institute for the Environment and Senior Fellow of the Precourt Institute for Energy. With respect to energy, in 2001 he published a paper in Science examining the ability of the U.S. to convert a large fraction of its energy to wind power. He subsequently developed solvers for cloud and aerosol coagulation, breakup, condensation/evaporation, freezing, dissolution, chemical equilibrium, and lightning; air-sea exchange; ocean chemistry; greenhouse gas absorption; and surface processes. In 2019, he developed 100% roadmaps for 143 countries. Stanford Energy is brought to you by the Precourt Institute for Energy. Toward that end, he has developed and applied three-dimensional atmosphere-biosphere-ocean computer models and solvers to simulate air pollution, weather, climate, and renewable energy. Stanford Professor Mark Z. Jacobson and other researchers have calculated how to meet each state's new power demands using only the renewable energies – wind, solar, geothermal, hydroelectric, and tiny amounts of tidal and wave – … 1. 109 and S.Res. He received a B.S. Mark Z. Jacobson is Director of the Atmosphere/Energy Program and Professor of Civil and Environmental Engineering at Stanford University. Part II: 20-year impacts of exhaust from all commercial aircraft worldwide treated individually at the subgrid scale (, Effects of biomass burning on climate, accounting for heat and moisture fluxes, black and brown carbon, and cloud absorption effects (, Recent shift from forest to savanna burning in the Amazon basin observed from satellite (, Effects of soil moisture on temperatures, winds, and pollutant concentrations in Los Angeles (, GATOR-GCMM: A global-through urban scale air pollution and weather forecast model. © Stanford University, Stanford, California 94305. (1991) and Ph.D. (1994) Atmospheric Science, University of California at Los Angeles. Part I: Numerical methods for treating the subgrid evolution of discrete size- and composition-resolved contrails from all commercial flights worldwide (, Effects of plume-scale versus grid-scale treatment of aircraft exhaust photochemistry (, An inter-comparative study of the effects of aircraft emissions on surface air quality (, Evolution of nanoparticle size and mixing state near the point of emission (, Enhanced coagulation due to evaporation and its effect on nanoparticle evolution (, Development and application of a new air pollution modeling system. Facebook gives people the power to share and makes the world more open and connected. TED Talk Subtitles and Transcript: Nuclear power: the energy crisis has even die-hard environmentalists reconsidering it. He started this endeavor in 1990 and has been working on it ever since. A discussion that'll make you think -- and might even change your mind. The world and state roadmaps further served as the motivation for over 135 U.S. cities and counties and over 205 international companies to commit to 100% clean, renewable energy, and the scientific justification for the 100% clean, renewable energy movement worldwide. A study of day- and nighttime ozone layers aloft, ozone in national parks, and weather He joined Stanford’s faculty in 1994. data (, Analysis of aerosol interactions with numerical techniques for solving coagulation, nucleation, … Cambridge University Press, New York, 656 pp., 1999. In 2016, he received a Cozzarelli Prize from the Proceedings of the National Academy of Sciences for "outstanding scientific excellence and originality" in his paper on a solution to the U.S. grid reliability problem with 100% penetration of wind, water, and solar power for all purposes. He has also developed roadmaps to transition states and countries to 100% clean, renewable energy for all purposes and computer models to examine grid stability in the presence of high penetrations of renewable energy. Director, Atmosphere/Energy Program Mark Z. 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