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acid-insoluble

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Journal Article
Published: 01 August 2005
Geochemistry: Exploration, Environment, Analysis (2005) 5 (3): 267-277.
...-insoluble residue the mineralizations are expressed by low Ca, Na and Sr values and also low K, Al, Mn, Ga, Rb, Y, V, and F values. The elements Cu, Zn, Pb, Ni, As, Mo, Ag, Sb, and also Ba and W are enriched near the ore bodies. The Cobar acid-insoluble residues have a high quartz content. In contrast...
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Journal Article
Published: 01 April 1979
Micropaleontology (1979) 25 (2): 113-117.
Journal Article
Published: 01 July 1959
Micropaleontology (1959) 5 (3): 369-375.
...John W. Funkhouser; William Robert Evitt Abstract Several techniques useful in the preparation of spores, pollen, hystrichospherids, and similar acid-insoluble microfossils are described. These include oxidation treatments to remove unwanted organic matter; 4 aids in the mechanical separation...
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Mastersizer particle size distribution patterns of the total <b>acid</b> <b>insoluble</b>...
Published: 01 April 2014
Fig. 15. Mastersizer particle size distribution patterns of the total acid insoluble fracton and the <0.2 μm e.s.d., 0.2–1 μm e.s.d. and 1–2 μm e.s.d. fractions from typical samples of chalk (R6) and marl seam (Ysa34) from the regionally hardened chalk, Ferriby Formation (Louth Member
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( facing page ). X-ray diffraction traces of glycerolated <b>acid</b>-<b>insoluble</b> re...
Published: 01 April 2014
Fig. 1 ( facing page ). X-ray diffraction traces of glycerolated acid-insoluble residues from the <2 μm fraction of representative white chalks and marl seams. All samples are dominated by smectite or smectite-rich illite/smectite (peak centred on ∼18 Å) with subordinate illite (peaks at 10 Å
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(a) <b>Acid</b>-<b>insoluble</b> residue data plotted on the discrimination plot of Pearc...
Published: 01 April 2014
Fig. 4. (a) Acid-insoluble residue data plotted on the discrimination plot of Pearce ( 1996 ). Note that PHS 2 (Old Nore Marl) plots separately from the remaining samples and that samples PHS 1 and 3 immediately below and above the Old Nore Marl plot at a location between PHS 2 and the remaining
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The clay mineralogy and variations in <b>acid</b>-<b>insoluble</b> contents (1  m  acetic...
Published: 01 March 2006
F ig . 48. The clay mineralogy and variations in acid-insoluble contents (1 m acetic acid) within the alternating chalk/marl facies of the Lower Chalk, Balland Cliff, Dorset. The XRD patterns are of the glycerolated <2 μm clay fractions. There is considerable variation in the shape
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Distribution of Ba in the <b>acid</b>-<b>insoluble</b> residue of surface rocks, Rosebery...
Published: 01 August 2005
Fig. 1 Distribution of Ba in the acid-insoluble residue of surface rocks, Rosebery mine area. The hatching indicates the area of footwall alteration recognized by geologists.
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Distribution of (Mn × Ba)&#x2F;(Na × Sr) in the <b>acid</b>-<b>insoluble</b> residue of surfac...
Published: 01 August 2005
Fig. 3 Distribution of (Mn × Ba)/(Na × Sr) in the acid-insoluble residue of surface rocks, Rosebery mine area. Note remobilization zone along Mt Black Fault.
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Distribution of Rb&#x2F;K in the <b>acid</b>-<b>insoluble</b> residue of surface rocks, Rosebe...
Published: 01 August 2005
Fig. 4 Distribution of Rb/K in the acid-insoluble residue of surface rocks, Rosebery mine area (cf. Fig. 3). Note absence of Rb-enrichment along the Mt Black Fault.
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Distribution of Rb&#x2F;Al in the <b>acid</b>-<b>insoluble</b> residue of surface rocks, Roseb...
Published: 01 August 2005
Fig. 5 Distribution of Rb/Al in the acid-insoluble residue of surface rocks, Rosebery mine area. Note absence of Rb-enrichment along the Mount Black Fault.
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Distribution of (Mn × Ba) in the <b>acid</b>-<b>insoluble</b> residue of surface rocks in...
Published: 01 August 2005
Fig. 6 Distribution of (Mn × Ba) in the acid-insoluble residue of surface rocks in the Hercules area.
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Distribution of K&#x2F;Na ratio in the <b>acid</b>-<b>insoluble</b> residue of surface rocks i...
Published: 01 August 2005
Fig. 7 Distribution of K/Na ratio in the acid-insoluble residue of surface rocks in the Hercules area.
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Distribution of (K × Mn × Ba × Rb)&#x2F;(Ca × Na × Sr) in the <b>acid</b>-<b>insoluble</b> res...
Published: 01 August 2005
Fig. 9 Distribution of (K × Mn × Ba × Rb)/(Ca × Na × Sr) in the acid-insoluble residue of surface rocks of the Hercules area.
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Distribution of the Rb&#x2F;Al ratio in the <b>acid</b>-<b>insoluble</b> residue of surface ro...
Published: 01 August 2005
Fig. 10 Distribution of the Rb/Al ratio in the acid-insoluble residue of surface rocks in the Hercules area.
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Pattern of K-depletion in <b>acid</b>-<b>insoluble</b> residues of rock and regolith samp...
Published: 01 August 2005
Fig. 19 Pattern of K-depletion in acid-insoluble residues of rock and regolith samples from Wagga Tank deposit. Note secondary dispersion trail.
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Pattern of Zn-enrichment in <b>acid</b>-<b>insoluble</b> residues of rock and regolith sa...
Published: 01 August 2005
Fig. 20 Pattern of Zn-enrichment in acid-insoluble residues of rock and regolith samples from Wagga Tank deposit. Note secondary dispersion trail.
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Calcium in <b>acid</b>-<b>insoluble</b> residue of podzols and Au in corresponding untrea...
Published: 01 August 2005
Fig. 21 Calcium in acid-insoluble residue of podzols and Au in corresponding untreated samples, section 500050E across Volunteer Reef, Lefroy.
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(Mn × Ba) and (Na × Sr) × 10 −4  in the <b>acid</b>-<b>insoluble</b> residue of the vario...
Published: 01 August 2005
Fig. 22 (Mn × Ba) and (Na × Sr) × 10 −4 in the acid-insoluble residue of the various rock units, Rosebery mine area. Note distinction between the alteration related to massive sulphide mineralization (altered footwall) and alteration related to metamorphism (White Spur Formation).
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Distribution of Sr in the <b>acid</b>-<b>insoluble</b> residue of surface rocks, Rosebery...
Published: 01 August 2005
Fig. 2 Distribution of Sr in the acid-insoluble residue of surface rocks, Rosebery mine area.