Parte della serie di videogiochi Inazuma Eleven, la serie animata è un adattamento della prima metà del videogioco di ruolo Inazuma Eleven Eiyuu-tachi no Great Road, dal quale è tratto anche il seguito Inazuma Eleven Orion no Kokuin, in onda in Giappone il 5 ottobre 2018. "Inazuma Eleven: la bilancia di Ares") è un anime del 2018 prodotto da OLM. Inazuma Eleven Ares (イナズマイレブンアレスの天秤(てんびん) Inazuma Irebun Aresu no Tenbin?, lett.This is the third Inazuma Eleven series to receive an English dub after the original series and Inazuma Eleven GO. An English dub of the series produced by SDI Media began airing on Disney XD on April 13, 2019, replacing Yo-kai Watch, another anime based on a Level-5 video game series by the same dubbing company. A sequel Inazuma Eleven: Orion no Kokuin started airing on October 5, 2018. "Inazuma Eleven: Scale of Ares") is a 2018 Japanese television anime television series produced by OLM. Inazuma Eleven: Ares (イナズマイレブン アレスの天秤, Inazuma Irebun Aresu no Tenbin, lit.The transition from a fossil-fuel-driven economy to one based on clean renewable energy is one of the main problems that our society currently faces. One of the major challenges of the wide implementation of renewables, mainly wind and solar, is their grid integration. It is well known that the time profiles of wind and solar power generation, which widely vary in time, do not fit the power consumption profile. One of the most promising solutions to the problem of variability of renewable power is energy storage, which was recently dubbed “the Holy Grail” of the renewable energy. The main idea of energy storage is to convert electrical energy, which is not directly storable, into another, storable form of energy. After storing the latter, it can be converted back to electricity, thus smoothing the variable electrical input. There are many energy storage technologies under development, based in general on physical and/or chemical principles. Among the most promising storable forms of energy is the energy of hydrogen. In hydrogen-based energy storage, there are three main elements: (i) conversion of the excess of electricity to hydrogen by electrolysis (ii) storage of the produced hydrogen (iii) conversion of the stored hydrogen back to electricity (re-electrification). The processes of electrolysis and hydrogen storage are relatively well developed. However, the conversion of hydrogen to electricity is still under development. Fuel cells are the main candidates for that conversion. The anodic and cathodic compartments of the electrochemical cell are separated by a proton exchange membrane the latter is one of the key components of the entire BioGenerator. The membrane needs to meet a number of requirements, such as mechanical strength, high proton conductivity, low ferric ions diffusivity, long-term chemical stability and low cost. It was already found experimentally that most popular commercially available ion-exchange membranes (Nafion-117, Nafion-115, Nafion-112, Neosepta CMS, bipolar Selemion HSF) do not satisfy a number of the above-mentioned requirements. Among them, the bipolar Selemion HSF membrane showed the best performance, but was still far from ideal. Several attempts were made in our laboratory to develop membranes that could meet most of the above-mentioned requirements.
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