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Reduce peak loads for pump power and optimise self-consumption of solar power: The solution for the Freckenhorst combined wastewater pumping station is a combination of a photovoltaic installation and the new TESVOLT TPS HV 80 E outdoor storage system, which was delivered. . Reduce peak loads for pump power and optimise self-consumption of solar power: The solution for the Freckenhorst combined wastewater pumping station is a combination of a photovoltaic installation and the new TESVOLT TPS HV 80 E outdoor storage system, which was delivered. . Because solar adoption at wastewater treatment plants is still relatively new, there is little known about these facilities, including where they are, what drove them to choose solar, and if solar has been a success. A team of researchers looks to fill in those gaps with a new project. Intro: The. . By harnessing sunlight, treatment facilities can reduce their energy costs by up to 95%, directing those savings back into infrastructure improvements, saving money, and revolutionizing waste treatment. For. . Researchers at Stanford University have even developed an innovative battery technology that can harness the energy from the mixing of salty ocean water and freshwater, further enhancing the renewable energy capabilities of coastal wastewater treatment facilities. It is energy saving, environmental protection, suitable for remote or power shortage areas. Containerized mobile treatment systems are ready to use immediately on delivery and cater from. .