Combining two filter paper-based analytical methods to monitor temporal variations in the geochemical properties of fluvial suspended particulate matter
Author:
Affiliation:
1. School of Environmental Sciences; University of East Anglia; Norwich Research Park Norwich NR4 7TJ UK
2. British Geological Survey; Keyworth Nottingham NG12 5GG UK
Funder
Natural Environment Research Council
Publisher
Wiley
Subject
Water Science and Technology
Reference51 articles.
1. Assessment of estuarine sediment and sedimentary organic matter properties by infrared reflectance spectroscopy;Alaoui;Chemical Geology,2011
2. A simple X-ray fluorescence technique for the determination of iron and manganese in soils and concretion;Barnhisel;Soil Science Society of America Proceedings,1969
3. Understanding the influence of suspended solids on water quality and aquatic biota;Bilotta;Water Research,2008
4. Phosphorus dynamics along a river continuum;Bowes;Science of the Total Environment,2003
5. Effect of absorbing matrices on diffuse reflectance infrared spectra;Brimmer;Analytical Chemistry,1986
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