Geoscience Reference
In-Depth Information
Pittam N, Foster I, Mighall T (2009) An integrated lake-catchment approach for determining sedi-
ment source changes at Aqualate Mere, Central England. J Paleolimnol 42:215-232
Polyakov VO, Nearing MA (2004) Rare earth element oxides for tracing sediment movement.
Catena 55:255-276
Polyakov VO, Kimoto A, Nearing MA, Nichols MH (2009) Tracing sediment movement on a
semiarid watershed using rare earth elements. Soil Sci Soc Am J 73:1559-1565
Porto P, Walling D, Callegari G (2005) Investigating sediment sources within a small catchment in
southern Italy. In: Walling D, Horowitz A (eds) Sediment bugets I. IAHS Press no 291. Walling-
ford, UK, pp 113-122
Pye K (2004) Forensic examination of rocks, sediments, soils, and dust using scanning electron
microscopy and X-ray chemical microanalysis. In: Pye K, Croft DJ (eds) Forensic geosciences:
principles, techniques, and applications, vol 232. Geological Society, London, Special Publica-
tions, pp 103-122
Reynolds PH, Pe-Piper G, Piper DJW, Grist AM (2009) Single-grain detrital-muscovite ages from
Lower Cretaceous sandstones, Scotian basin, and their implications for provenance. Bull Can
Petrol Geol 57:63-80
Ritchie J, Ritchie C (2008) Bibliography of publications of 137 Cs studies related to erosion and
sediment deposition. Medmrežje: http://www.ars.usda.gov/Main/docs.htm
Rollinson H (1993) Using geochemical data: evaluation, presentation, interpretation. Longman,
Harlow
Rowan J, Goodwill P, Franks S (2000) Uncertainty estimation in fingerprinting suspended sediment
sources. In: Foster IDL (ed) Tracers in geomorpholog pp 279-290
Rowan JS, Black S, Franks SW (2012) Sediment fingerprinting as an environmental forensics tool
explaining cyanobacteria blooms in lakes. Appl Geogr 32:832-843
Russell M, Walling D, Hodgkinson R (2001) Suspended sediment sources in two small lowland
agricultural catchments in the UK. J Hydrol 252:1-24
Singh P (2009) Major, trace and REE geochemistry of the Ganga river sediments: influence of
provenance and sedimentary processes. Chem Geol 266:242-255
Slattery MC, Walden J, Burt TP (2000) Use of mineral magnetic measurements to fingerprinting
suspended sediment sources: results from a linear mixing model. In: Foster IDL (ed) Tracers in
geomorphology. Wiley, Chichester
Small I, Rowan J, Franks S (2002) Quantitative sediment fingerprinting using a Bayesian uncertainty
estimation framework. Int Assoc Hydrol Sci Publ 276:443-450
Small IF, Rowan JS, Franks SW, Wyatt A, Duck RW (2004) Bayesian sediment fingerprinting
provides a robust tool for environmental forensic geoscience application. In: Pye K, Croft DJ
(eds) Forensic geoscience: principles, techniques and applications, vol 232. Geological Society,
London, Special Publications, pp 207-213
Stuut J, Prins M, Schneider R, Weltje G, Jansen J, Postma G (2002) A 300-kyr record of aridity
and wind strength in southwestern Africa: inferences from grain-size distributions of sediments
on Walvis Ridge, SE Atlantic. Mar Geol 180:221-233
Syvitski J, Vörösmarty C, Kettner A, Green P (2005) Impact of humans on the flux of terrestrial
sediment to the global coastal ocean. Science 308:376-380
Takeda A, Kimura K, Yamasaki S (2004) Analysis of 57 elements in Japanese soils, with special
reference to soil group and agricultural use. Geoderma 119:291-307
Taylor A, Blake W, Couldrick L, Keith-Roach M (2012) Sorption behaviour of beryllium-7 and
implications for its use as a sediment tracer. Geoderma 187-188:16-23
USEPA (1999) Protocol for developing Sediment TMDLs. Office of Water (4503F), United States
Environmental Protection Agency, Washington DC, EPA 841-B-004, p 132
Veevers J, Saeed A (2007) Central Antarctic provenance of Permian sandstones in Dronning Maud
Land and the Karoo Basin: integration of U-Pb and T-DM ages and host-rock affinity from detrital
zircons. Sediment Geol 202:653-676
Search WWH ::




Custom Search