Resources to Boost Your Battery I.Q.

Publications

Publications: Technical Manual BCIS-04B: Recommended Storage Battery Specifications
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Publications: Technical Manual BCIS-04C: Recommended Practice for Start-Stop
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Publications: Technical Manual BCIS-05: Specifications for Electric Vehicle Batteries
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Publications: Technical Manual BCIS-06-08: Specifications for Cycle Life Testing of EV
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Publications: Technical Manual BCIS-09: Battery Flame Retardant Venting System
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Publications: Technical Manual BCIS-09B: Recommended Practice to Evaluate Electrolyte Retention
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Publications: Technical Manual BCIS-09C: Recommended Practice to Evaluate Electrolyte Retention
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Publications: Technical Manual BCIS-11: Standardized Testing Methods for Polypropylene Resin
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Publications: Technical Manual BCIS-12A: BCI Recommended Test Procedures For Leady Oxide
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Publications: Technical Manual BCIS-12B: BCI Recommended Test Procedures For Electrode Active
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Publications: Technical Manual BCIS-13: Specification Reference for Standby Batteries
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Publications: Technical Manual BCIS-14: Determine Capacity of Industrial Storage Batteries
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Dr. John Uhrie, Doe Run

With improved cooperation among stakeholders, increased research funding, and by following the circular economy example of lead batteries, the U.S. can regain domestic supply chain security and advance a low-carbon and renewable energy future.

Dr. John Uhrie, Vice President of Exploration, Research and Technical Development, The Doe Run Company