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ix | |
Introduction to Book Series |
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xv | |
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What goes around comes around: Today's environmental geochemistry |
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1 | (8) |
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Section I: Today's Environmental Geochemistry---A Review of New Concepts and Innovative Practices |
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Modification of Goldschmidt's geochemical classification of the elements to include arsenic, mercury, and lead as biophile elements |
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9 | (24) |
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Metal ions speciation in the environment: Distribution, toxicities and analyses |
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33 | (24) |
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International practice in high-level nuclear waste management |
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57 | (22) |
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Phytoremediation of some heavy metals by agronomic crops |
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79 | (20) |
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Environmental geochemistry of trace metal pollution in urban watersheds |
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99 | (36) |
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Section II: Geochemistry in Surface- and Groundwater Research |
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Geochemical cycling of trace and rare earth elements in Lake Tanganyika and its major tributaries |
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135 | (38) |
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Baseline water chemistry, nitrate concentrations, and aquifer sensitivity of glacial sequences in LaGrange County, Indiana |
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173 | (22) |
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Agriculture-induced contamination of surface water and groundwater in Portugal |
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195 | (12) |
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Provenance and geochemistry of sediments in arsenic-affected areas of gangetic West Bengal, India |
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207 | (22) |
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Rock-water interaction and its control on chemical composition of groundwater |
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229 | (18) |
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Section III: Lithosphere-Hydrosphere Interactions: Applications of Geochemical Principles |
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Association of dissolved organic carbon with stream discharge and dissolved metals concentrations in black shale-draining streams |
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247 | (26) |
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Mineral control of minor, trace and rare earth elements during black shale weathering at near-neutral pH |
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273 | (30) |
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Hydrogeology of uranium-bearing groundwater in forest catchments in the humid temperate climate: A case study in the Kanamaru area, Yamagata, Japan |
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303 | (24) |
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Section IV: Geochemistry in Soils Research |
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Effects of incubation time and arsenic load on arsenic bioaccessibility in three Florida soils amended with sodium arsenate |
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327 | (18) |
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A greenhouse study on soil-arsenic forms and their bioaccessibility in two chemically variant Florida soils amended with sodium arsenate pesticide: Preliminary results |
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345 | (18) |
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Dissolution chemistry of inorganic selenium in alkaline mine soils |
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363 | (18) |
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Factors affecting spatial patterns of vadose-zone nitrate in south-central Kansas |
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381 | (26) |
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Using GIS to display complex soil salinity patterns in an inland salt marsh |
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407 | (28) |
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Section V: Environmental Biogeochemistry---Concepts and Case Studies |
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Understanding spatial variability and its application to biogeochemistry analysis |
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435 | (28) |
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Use of plants in biotechnology: Synthesis of metal nanoparticles by inactivated plant tissues, plant extracts, and living plants |
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463 | (24) |
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Phytorestoration of metal-contaminated industrial wasteland: A greenhouse feasibility study |
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487 | (16) |
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Linkages between diet and metal accumulation in crayfish |
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503 | (12) |
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Relations among land cover, vegetation index, and nitrate concentrations in streams of the Enoree River Basin, piedmont region of South Carolina, USA |
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515 | (28) |
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Section VI: Application of Geochemical Principles in Environmental Quality and Remediation Research |
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Remediation of arsenical pesticide applied soils using water treatment residuals: Preliminary greenhouse results |
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543 | (18) |
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Water quality issues in the outer coastal plains: New Jersey |
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561 | (30) |
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Spatial and Temporal Trends in Surface Water Quality in a Segment of the San Antonio River, Texas |
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591 | (18) |
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Beneficial utilization of drinking-water treatment residuals as contaminant-mitigating agents |
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609 | (28) |
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Are soils the culprit? Linking natural and anthropogenic watershed processes to the degradation of the Chesapeake Bay |
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637 | (28) |
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Section VII: Applications of New Analytical and Quantitave Methods in Environmental Geochemistry Research |
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Characterizing the surface chemistry of oxides with X-ray photoelectron spectroscopy: Assessment regarding surface oxygen valence charge and acid-base properties |
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665 | (20) |
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Arsenic speciation in soils: An analytical challenge for understanding arsenic biogeochemistry |
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685 | (24) |
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Surficial characterization of dioxin in Midland, Michigan, using non-Euclidean geostatistics |
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709 | (24) |
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Black shale weathering contribution to stream chemistry using end-member mixing analysis |
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733 | (20) |
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Current trends and future directions in environmental geochemistry research |
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753 | (6) |
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Index |
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759 | |