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NARROW
GeoRef Subject
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all geography including DSDP/ODP Sites and Legs
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Asia
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Far East
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China (1)
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Japan (1)
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Indian Peninsula
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Russian Federation
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Berea Sandstone (1)
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Primary terms
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Asia
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Far East
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China (1)
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Japan (1)
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Indian Peninsula
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India (1)
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Irkutsk Russian Federation
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Chuya Russian Federation (1)
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Middle East
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Israel (1)
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Atlantic Ocean
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Tertiary
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Mesozoic
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Cretaceous
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Paleozoic
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soils (1)
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carbonate rocks
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limestone (1)
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clastic rocks
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claystone (1)
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sandstone (5)
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shale (1)
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oil sands (1)
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sediments
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sediments
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clastic sediments
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sand (4)
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soils
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soils (1)
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electrokinetics
Identification of the seismoelectric field induced by a slow compressional wave at an ultrasonic frequency
Enhanced electroseismic coupling at charged interfaces
A high-order finite-difference scheme for time-domain modeling of time-varying seismoelectric waves
Electrokinetic-enhanced removal of toluene from physically heterogeneous granular porous media
Purification of Turkish Bentonites and Investigation of the Contact Angle, Surface Free Energy and Zeta Potential Profiles of Organo-Bentonites as a Function of CTAB Concentration
COHESIVE STRENGTH IMPROVEMENT MECHANISM OF KAOLINITE NEAR THE ANODE DURING ELECTROOSMOTIC CHEMICAL TREATMENT
Low-frequency electrical conductivity of aqueous kaolinite suspensions: surface conductance, electrokinetic potentials and counterion mobility
Effect of electrode configuration on electrokinetic stabilization of soft clays
Zeta potential in porous rocks in contact with monovalent and divalent electrolyte aqueous solutions
Natural graphite demand and supply—Implications for electric vehicle battery requirements
Electric vehicles have been promoted to reduce greenhouse gas emissions and lessen U.S. dependence on petroleum for transportation. Growth in U.S. sales of electric vehicles has been hindered by technical difficulties and the high cost of the lithium-ion batteries used to power many electric vehicles (more than 50% of the vehicle cost). Groundbreaking has begun for a lithium-ion battery factory in Nevada that, at capacity, could manufacture enough batteries to power 500,000 electric vehicles of various types and provide economies of scale to reduce the cost of batteries. Currently, primary synthetic graphite derived from petroleum coke is used in the anode of most lithium-ion batteries. An alternate may be the use of natural flake graphite, which would result in estimated graphite cost reductions of more than US$400 per vehicle at 2013 prices. Most natural flake graphite is sourced from China, the world’s leading graphite producer. Sourcing natural flake graphite from deposits in North America could reduce raw material transportation costs and, given China’s growing internal demand for flake graphite for its industries and ongoing environmental, labor, and mining issues, may ensure a more reliable and environmentally conscious supply of graphite. North America has flake graphite resources, and Canada is currently a producer, but most new mining projects in the United States require more than 10 yr to reach production, and demand could exceed supplies of flake graphite. Natural flake graphite may serve only to supplement synthetic graphite, at least for the short-term outlook.