{"href":"http://player.captivate.fm/services/oembed?url=http%3A%2F%2Fplayer.captivate.fm%2Fepisode%2F96754f5c-803f-43f0-93bb-16003c2b2533","version":"1.0","provider_name":"Captivate.FM","provider_url":"https://www.captivate.fm","width":600,"height":200,"type":"rich","html":"<iframe style=\"width: 100%; height: 200px;\" title=\"Battery Chemistries and Applications: Part Two\" frameborder=\"0\" scrolling=\"no\" allow=\"clipboard-write\" seamless src=\"http://player.captivate.fm/episode/96754f5c-803f-43f0-93bb-16003c2b2533\"></iframe>","title":"Battery Chemistries and Applications: Part Two","description":"The discussion about the chemistry and applications of batteries continues in this episode with David, Al Warner and Dan Lambert, and The Battery Blarney Duo. They are comparing flow and lead acid batteries in terms of their reliability and need for maintenance. \n\nThey examine the problem if you have an energy-storage battery, such as a zinc manganese battery, as well as the benefit of nickel zinc batteries in which electrodes interact with electrolytes. They also mention that a hybrid system using both nickel zinc and manganese dioxide batteries might be very efficient, and that if manufacturers collaborate, third-party integrators will find it easy to connect these products together into a cohesive unit.\n\nTune in to hear about the various codes and standards affecting stationary batteries plus comments about systems integrators and how they can fail when integrating different types of energy storage.","thumbnail_width":300,"thumbnail_height":300,"thumbnail_url":"https://artwork.captivate.fm/d1bd10e8-635e-493b-bbdc-887e9b4a3e51/GPw8qTm992NjG4loBFRG1Ezs.jpg"}