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NARROW
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all geography including DSDP/ODP Sites and Legs
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Japan
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Honshu
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Primary terms
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Atlantic Ocean (1)
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glycine
Delivery of Organic Matter to the Early Earth
Effect of lactate, glycine, and citrate on the kinetics of montmorillonite dissolution
Glycine and lysine adsorption and reactivity on the surface of amorphous silica
A NUCLEAR MAGNETIC RESONANCE (NMR) AND FOURIER-TRANSFORM INFRARED (FTIR) STUDY OF GLYCINE SPECIATION ON A Cd-RICH MONTMORILLONITE
Interaction between glycine and Na-, Ca-and Cu-rich smectites
Glyphosate-hydrotalcite interaction as influenced by pH
Influence of citric acid and glycine on the adsorption of mercury (II) by kaolinite under various pH conditions
Catalysis of nontronite in phenols and glycine transformations
Effect of amino acid (glycine) on the distribution of transition metal (Co-Ni-Zn-Cu) and magnesium divalent ions between silicate gels and aqueous solutions; an experimental study
Amino-acid diagenesis and its implication for late Pleistocene lacustrine sediment, Clear Lake, California
The diagenesis of amino acids in sediments from Clear Lake core CL-80-1 is indicated by changes in amino acid concentrations, compositions, and stereochemistry. Concentrations of total amino acids decrease with depth, but the decrease is not systematic, possibly reflecting a nonuniformity in sedimentary and postdepositional processes affecting the amino acids. Ratios of neutral/acidic amino acids may indicate that the pH of interstitial water is slightly alkaline to slightly acidic and that the organic matter is well humified. Ratios of nonprotein/protein amino acids suggest that some changes in amino acids with depth result from microbial degradations. The extent of racemization of alanine increases with depth; the trends of these data may be explained, in part, by rapid sedimentation within the lake. Agreement between extents of alanine racemization for sediments from equivalent depths in two cores from the lake suggests that diagenetic temperatures are uniform within the sediments of the northern basin of Clear Lake.