This site uses cookies to improve your experience. To help us insure we adhere to various privacy regulations, please select your country/region of residence. If you do not select a country, we will assume you are from the United States. Select your Cookie Settings or view our Privacy Policy and Terms of Use.
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Used for the proper function of the website
Used for monitoring website traffic and interactions
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Strictly Necessary: Used for the proper function of the website
Performance/Analytics: Used for monitoring website traffic and interactions
American Superconductor Corporation ( AMSC ), a global power technologies company, announced in conjunction with Global Wind Day 2010 on 15 June that it has achieved a significant milestone by supporting the production of more than 15,000 megawatts (MW) of wind power worldwide with its proprietary power electronic solutions.
Phil Ansell, an aerospace engineer at the University of Illinois Urbana-Champaign, modeled the life cycle carbon dioxide equivalent emissions of liquid hydrogen production required to meet the fuel needs of Chicago’s O’Hare International Airport (ORD) with today’s electric grid mix. Or is it better to liquefy it on site at the airport?
Starting next year, the jointly developed pilot plant will produce major quantities of hydrogen using electricity from renewable sources, mostly from nearby wind power stations. This hydrogen can be stored, loaded into tank trailers or fed directly into the natural gas grid, for use in generating heat or electricity.
To support the initiative, IBM is partnering with the Beijing Municipal Government on a system to enable authorities to pinpoint the type, source and level of emissions and predict air quality in the city. Renewable energy forecasting. Sample user interface from IBM''s Hyref energy forecasting system.
The solicitation was designed as a call for early-stage clean energy innovations that fall within five defined technology areas: energy efficiency; energy storage; AI/machine learning; advanced power electronics/power conditioning; and zero- and negative-carbon emission generation.
Ultimately, technologies developed through this program will be scalable to the megawatt and megawatt-hour levels of power and energy capacity. Deploying advanced power electronics could provide as much as a 25-30% reduction in electricity consumption—or 12 % of total US energy consumption.
About one-third of emissions globally are produced through electricity generation, and Rahman said his mission is to help reduce that amount through engineering solutions. We want to be a solution partner so we can have parties at the table to help solve this problem of high carbon emissions globally.”
Today, new plants in Europe are already planned with a CO2-neutral energy supply from the start. As part of the electric offensive, Mercedes-Benz Cars counts on local emission-free vehicles. With a CO2-neutral energy supply of the plants, we are consistently pursuing this approach and are actively driving sustainability in production.
One avenue to combat this crisis is a rapid reduction in carbon emissions from our daily transportation, one of the leading contributors of CO 2 emissions. Enter electric vehicles: a practical step toward reducing carbon emissions and reinforcing sustainable practices. EVs are game changers in the reduction of vehicle emissions.
His team uses sophisticated simulation and modeling tools to address a dual challenge: scaling scientific discoveries from the lab while adapting to the dynamic realities of modern energygrids. Energy systems are not static, he emphasized. Does this new demand accelerate or hinder our ability to decarbonize the grid?
Fully Solar-Powered Vehicles : The Lightyear 0 and Apteras solar EV aim to run primarily on solar energy, reducing reliance on grid electricity. Green Hydrogen Production : The use of renewable energy sources such as wind and solar to produce hydrogen is making FCEVs a truly clean alternative.
Engineers have discussed the assumed need for localized energy storage as the demand for electricity grows and tapping into EVs could be a clever way of avoiding having to construct warehouse-sized battery hubs. The companies are hoping to sell the concept as a way to help “decarbonize” the energygrid.
“I can envision wide-scale urban power generation with solar on every roof and wind turbines on tall buildings, as well as rural, large, power farms,” Flanagan said in response to the same question. There is so much potential with solar energy and battery storage to help make energy sustainable and reduce carbon emissions.
One of the most common sustainability goals for businesses is reduce CO2 emissions. This is exactly what EVs were designed to do, as they have no tailpipe emissions. However, emissions are about more than just the tailpipe. ones that burn coal) still see a significant amount of emissions from workplace EV charging.
The extent to which renewables should dominate Australia’s energygrids is a major issue in science and politics. Solar and wind are clearly now the cheapest form of electricity. The challenges posed by solar and wind generators are real.
The extent to which renewables should dominate Australia’s energygrids is a major issue in science and politics. Solar and wind are clearly now the cheapest form of electricity. The challenges posed by solar and wind generators are real.
The Challenge of Intermittency and the Role of Batteries The transition to renewable energy sources such as solar and wind power is gaining momentum globally. For instance, during periods of reduced solar irradiance or wind speed, traditional energy sources such as coal often experience a surge in production to meet demand.
An advanced fleet charging management solution should include smart energy management with demand side response capabilities. . The USEF delivers a single common standard to ensure that smart energy products and implementations easily integrate to create a more sustainable, green energy market.
Leverage artificial intelligence, the Internet of Things, big data, and cloud computing to improve business and industrial processes, optimize the supply chain and energy consumption, and reduce carbon footprints. Renewable energy innovations. Enrich and expand solar, wind, hydro, and geothermal energy generation and utilization.
We organize all of the trending information in your field so you don't have to. Join 5,000+ users and stay up to date on the latest articles your peers are reading.
You know about us, now we want to get to know you!
Let's personalize your content
Let's get even more personalized
We recognize your account from another site in our network, please click 'Send Email' below to continue with verifying your account and setting a password.
Let's personalize your content