![]() They also help us monitor performance as well as identify and address any issues as effectively as possible. These cookies are anonymous and used to analyze and remember what choices you have made and how you as a visitor use our website. ![]() Without these cookies, we cannot guarantee that the website is functioning properly. These cookies are necessary to run the core functionalities of this website, e.g. Wind power emits no CO 2 when producing energy and it is the fastest growing energy source in the EU. We carry out an Environmental Product Declaration (EPD) to assess the impact of both onshore and offshore wind projects. The largest environmental impact of wind power is during the building phase due to production of equipment and transportation. Whenever there is excess of supply of electricity from wind and solar energy, it can be used in various ways with sector coupling applications, such as hydrogen, power-to-heat or batteries for e-mobility. Sector coupling will play a key role in our strategy to use renewable energy sources. Integrating electricity from renewable energy sources into these sectors through the use of technology is called sector coupling. To protect the climate, fossil fuels must not only be reduced in the electricity sector, but also in sectors such as transport, heat and industry. It is combined with a battery storage facility to support the integration of renewable energy into the system. In the Netherlands, we have constructed a solar park at the Haringvliet wind farm. In our renewable hybrid power plants we get the most out of the combined potential of solar, wind and battery technology and support balancing of the grid system. Solar power works best in the summer, when wind energy output tends to be lower, and wind generation is most effective in winter, when solar energy is low. Wind and solar energy complement one another well. Synergies of wind, sun and battery storage
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