• Sulfur
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Lithium/Sulfur Batteries Based on Doped Mesoporous Carbon A sulfur/carbon composite material was prepared by heat treatment of doped mesoporous carbon and elemental sulfur at a temperature inside a stainless steel vessel, which was used in lithium/sulfur batteries that were tested in electrolytes. At 25 C and under a current density of 84mA g-1, the battery based on one embodiment of the invent…

: Fact Sheets

Sulfur/Carbon Composites and Additives for Li/S batteries Disclosure Number 200902242 Technology Summary In this invention we disclose a cathode structure and a class of additives that can significantly improve the cyclability of Li/S batteries and promote the utilization of sulfur in the battery cycles. The first part of this invention describes a bimoda…

: Fact Cards
: Sulfur, Lithium Ion , Cathode...

Lithium-Conducting Sulfur Compound Cathode for Lithium-Sulfur Batteries Lithium-Conducting Sulfur Compound Cathode for Lithium-Sulfur Batteries Disclosure Number 201202924 Technology Summary Lithium-sulfur batteries supply theoretical energy densities five times higher than lithium-ion batteries. Carbon materials are used to improve the poor electronic c…

: Fact Cards
: Sulfur, Lithium Ion , Lithium...

Carbonate Thermochemical Cycle for the Production of Hydrogen Disclosure Number 200401435 Technology Summary The subject invention disclosed herein is a new process for producing hydrogen at a much lower temperature (375 C) than that reported in the currently used sulfur-iodine process. The present invention avoids the use of electrolysis and employs no t…

Industrial utilization of geopressured geothermal energy bi CHAPTER V INDUSTRIAL U T f l GEOPRESSUR Ronald A. Carlson Gary K. Underhill Discussion of the industrial u t energy is currently limited by the 1 distribution. However, the resource assessment activity i n the Bureau of Economic Geology, The University o f , of fairway or potential resource ton County; iwand abo…

Lithium Super-Ionic Sulfide Carbon (LiSISC) Composite for Li-S Batteries Lithium Super-Ionic Sulfide Carbon (LiSISC) Composite for Li-S Batteries Disclosure Number 201102602 Technology Summary The present invention comprises a new material of Lithium Super-Ionic Sulfide Carbon (LiSISC) composite. LiSISC is an engineered nanomaterial of carbon, lithium su…

Comparative study and evaluation of advanced-cycle systems. Final report I / : Comparative Study and Evaluation of Advanced Cycle Systems AF-664, Volume 2, Part 1 Research Project 235-1 Final Report, February 1978 Prepared by Corporate Research and Development GENERAL ELECTRIC COMPANY # 1 River Road Schenectady, New York 12345 Principal lnvesiigaiors 8. D. Pomeroy J.…

: Cost, Factory, Metal...

The Genome of Deep-Sea Vent Chemolithoautotroph Thiomicrospiracrunogena XCL-2 LBNL-60318 Prepr int Title: The Genome of Deep-Sea Vent Chemolithoautotroph Thiomicrospira crunogena XCL-2 Author(s): Kathleen M. Scott, Stefan M. Sievert, et al Division: Genomics Journal Name: PLOS Biology November 14, 2006 Vol. 4 #12 1 1 The Genome of Deep-Sea Vent Chemolithoauto…

The Genome of Deep-Sea Vent Chemolithoautotroph Thiomicrospira crunogena XCL-2 LAWRENCE N AT I O N A L LABORATORY LIVERMORE The Genome of Deep-Sea Vent Chemolithoautotroph Thiomicrospira crunogena XCL-2 K. M. Scott, S. M. Sievert, et al PLOS Biology, v 4, no. 12, November 14, 2006 UCRL-JRNL-227471 1 1 The Genome of Deep-Sea Vent Chemolithoautotroph 2 Thiomicros…

The influence of cut off lows on sulfate burdens over the North Atlantic during April, 1987 BNL-67804 Research by BNL investigators was performed under the auspices of the U.S. Department of Energy under Contract No. DE-AC02-98CH10886. THE INFLUENCE OF CUT-OFF LOWS ON SULFATE BURDENS OVER THE NORTH ATLANTIC DURING APRIL, 1987 Carmen M. Benkovitz, Mark A. Miller, and Stephen E. Schwartz Broo…

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