Anger DA, Bissonette N, Legere A, Samson N (1993) Microbial and biochemical changes induced by rotation and tillage in a soil under barley production. Can J Soil Sci 73:39–50
Article
Google Scholar
Bätz N, Verrecchia EP, Lane SN (2015) Organic matter processing and soil evolution in a braided river system. Catena 126:86–97. https://doi.org/10.1016/j.catena.2014.10.013
Article
CAS
Google Scholar
Bengtsson G, Törneman N (2004) Dissolved organic carbon dynamics in the peat-streamwater interface. Biogeochemistry 70:93–116. https://doi.org/10.1023/B:BIOG.0000049338.81809.7c
Article
CAS
Google Scholar
Cabezas A, Comín FA (2010) Carbon and nitrogen accretion in the topsoil of the Middle Ebro River floodplains (NE Spain): implications for their ecological restoration. Ecol Eng 36:640–652. https://doi.org/10.1016/j.ecoleng.2008.07.021
Article
Google Scholar
Cerli C, Celi L, Kaiser K, Guggenberger G, Johansson M-B, Cignetti A, Zanini E (2008) Changes in humic substances along an age sequence of Norway spruce stands planted on former agricultural land. Org Geochem 39(9):1269–1280. https://doi.org/10.1016/j.orggeochem.2008.06.001
Article
CAS
Google Scholar
Chen Y, Senesi N, Schnitzer M (1978) Chemical and physical characteristics of humic and fulvic acids extracted from soils of the Mediterranean region. Geoderma 20(2):87–104
Article
CAS
Google Scholar
Conte P, Piccolo A (1998) High pressure size exclusion chromatography (HPSEC) of humic substances: molecular sizes, analytical parameters, and column performance. Chemosphere 38:517–528. https://doi.org/10.1016/S0045-6535(98)00198-2
Article
Google Scholar
Corenblit D, Steiger J, Gurnell AM, Tabacchi E, Roques L (2009) Control of sediment dynamics by vegetation as a key function driving biogeomorphic succession within fluvial corridors. Earth Surf Proc Land 34:1790–1810. https://doi.org/10.1002/esp.1876
Article
Google Scholar
Corenblit D, Steiger J, González E, Gurnell AM, Charrier G, Darrozes J, Dousseau J, Julien F, Lambs L, Larrue S, Roussel E, Vautier F, Voldoire O (2014) The biogeomorphological life cycle of poplars during the fluvial biogeomorphological succession: a special focus on Populus nigra L. Earth Surf Proc Land 39:546–567. https://doi.org/10.1002/esp.3515
Article
Google Scholar
D’Orazio V, Senesi N (2009) Spectroscopic properties of humic acids isolated from rhizosphere and bulk soil compartments and fractionated by size-exclusion chromatography. Soil Biol Biochem 41:1775–1781. https://doi.org/10.1016/j.soilbio.2008.02.001
Article
CAS
Google Scholar
Davies-Vollum KS, Smith ND (2008) Factors affecting the accumulation of organic rich deposits in a modern avulsive floodplain: examples from the Cumberland Marshes, Saskatchewan, Canada. J Sediment Res 78:683–692. https://doi.org/10.2110/jsr.2008.077
Article
Google Scholar
Debska B, Gonet I (2007) Share of hydrophilic and hydrophobic fractions in humic acids formed as a result of post-harvest residue decompositon. Pol J Soil Sci 40(1):57–65
CAS
Google Scholar
Dębska B, Drąg M, Banach-Szott M (2007) Molecular size distribution and hydrophilic and hydrophobic properties of humic acids isolated from forest soil. Soil Water Res 2(2):45–53
Article
Google Scholar
Dębska B, Długosz J, Piotrowska-Długosz A, Banach-Szott M (2016) The impact of bio-fertilizer on the soil organic matter status and carbon sequestration—results from a field-scale study. J Soils Sediments 16(10):2335–2343. https://doi.org/10.1007/s11368-016-1430-5
Article
CAS
Google Scholar
Doering M, Uehlinger U, Ackermann T, Woodtli M, Tockner K (2011) Spatiotemporal heterogeneity of soil and sediment respiration in a river-floodplain mosaic (Tagliamento, NE Italy). Freshw Biol 56:1297–1311. https://doi.org/10.1111/j.1365-2427.2011.02569.x
Article
Google Scholar
Dziamski A, Banach-Szott M, Dębska B (2015) The effect of long-term irrigation of meadows on the state of organic matter. Acta Sci Pol Agr 14(2):15–27
Google Scholar
Findlay SEG, Sinsabaugh RL (2003) Aquatic ecosystems—interactivity of dissolved organic matter. Acad Press, Elsevier Science, USA
Food and Agriculture Organization of the United Nations (2014) World reference base for soil resources. World Soil Resources Reports 103. Rome: FAO, pp.132
Gonet SS, Dębska B (2006) Dissolved organic carbon and dissolved nitrogen in soil under different fertilization treatments. Plant Soil Environ 52(2):55–63
Article
CAS
Google Scholar
Gonet SS, Dębska B, Zaujec A, Banach-Szott M, Szombathova N (2007) Effect of the tree species and soil-and-climate conditions on the properties of humus in forest soils. In: Gonet SS, Markiewicz M (eds) Role of organic matter in the environment. PTSH, Wrocław, pp 61–98
Google Scholar
Griffith SM, Schnitzer M (1975) Analytical characteristics of humic and fulvic acids extracted from tropical volcanic soils. Soil Sci Soc Am Proc 39:861–867
Article
CAS
Google Scholar
Guimaraes DV, Silva Gonzaga MI, da Silva TO, da Silva TL, da Silva Dias N, Silva Matias MI (2013) Soil organic matter pools and carbon fractions in soil under different land uses. Soil Till Res 126:177–182. https://doi.org/10.1016/j.still.2012.07.010
Article
Google Scholar
Haynes RJ (2005) Labile organic matter fractions as central components of the quality of agricultural soils. Adv Agron 85:221–268. https://doi.org/10.1016/S0065-2113(04)85005-3
Article
CAS
Google Scholar
Her N, Amy G, Foss D, Cho J, Yoon Y, Kosenka P (2002) Optimization of methods for detecting and characterizing NOM by HPLC-size-exclusion chromatography with UV and on-line detection. Environ Sci Technol 36:1069–1076. https://doi.org/10.1021/es015505j
Article
CAS
Google Scholar
Hoffmann T, Glatzel S, Dikau R (2009) A carbon storage perspective on alluvial sediment storage in the Rhine catchment. Geomorphology 108:127–137. https://doi.org/10.1016/j.geomorph.2007.11.015
Article
Google Scholar
Kobierski M, Piotrowska A (2010) Profile distribution of heavy metals and enzymatic activity in Fluvisols of the Vistula river valley, Poland. Fresen Environ Bull 19(2a):303–311
CAS
Google Scholar
Kondratowicz-Maciejewska K, Banach-Szott M, Kobierski M (2010) Physicochemical properties of humic acids of Fluvisols from Unisław Basin. Soil Sci Ann 61(4):123–127
CAS
Google Scholar
Kordowski J (2013) The role of blocks of dead ice in the deposition of late glacial sediments in a large valley: a case study from the Vistula river valley in the Grudziądz Basin, north Poland. Geogr Pol 86(4):341–361
Article
Google Scholar
Langhans SD, Richard U, Rueegg J, Uehlinger U, Edwards P, Doering M, Tockner K (2012) Environmental heterogeneity affects input, storage, and transformation of coarse particulate organic matter in a floodplain mosaic. Aquat Sci 75:335–348. https://doi.org/10.1007/s00027-012-0277-0
Article
CAS
Google Scholar
Lanyi K (2010) Assessment of the relations between the spectroscopic characteristics of soils and their ability to adsorb organic pollutants. Microchem J 79:249–256. https://doi.org/10.1016/j.microc.2004.08.008
Article
CAS
Google Scholar
Lepane V, Leeben A, Malashenko O (2004) Characterization of sediment pore-water dissolved organic matter of lakes by high-performance size exclusion chromatography. Aquat Sci 66(2):185–194. https://doi.org/10.1007/s00027-004-0703-z
Article
CAS
Google Scholar
Maie N, Yamashita Y, Cory RM, Boyer J, Jaffe R (2012) Application of excitation emission matrix fluorescence monitoring in the assessment of spatial and seasonal drivers of dissolved organic matter composition: sources and physical disturbance controls. Appl Geochem 27(4):917–929. https://doi.org/10.1016/j.apgeochem.2011.12.021
Article
CAS
Google Scholar
McCarthy P (2001) The principles of humic substances. Soil Sci 166:738–751
Article
Google Scholar
Morozova GS, Smith ND (2003) Organic matter deposition in the Saskatchewan River floodplain (Cumberland Marshes, Canada): effects of progradational avulsions. Sediment Geol 157:15–29. https://doi.org/10.1016/S0037-0738(02)00192-6
Article
CAS
Google Scholar
Nissinen TK, Miettinen IT, Martikainen PJ, Vartiainen T (2001) Molecular size distribution of natural organic matter in raw and drinking waters. Chemosphere 45:865–873. https://doi.org/10.1016/S0045-6535(01)00103-5
Article
CAS
Google Scholar
PN-EN ISO 11260 (2011) Soil quality—determination of effective cation exchange capacity and base saturation- method by sieving and sedimentation
PN-ISO-11277 (2005) Soil quality—determination of particle size distribution in mineral soil material level using level barium chloride solution
Preuße G, Friedrich S, Salzer R (2000) Retention behavior of humic substances in reversed phase HPLC. Fresen J Anal Chem 368:268–273. https://doi.org/10.1007/s002160000457
Article
Google Scholar
Rosa E, Dębska B, Banach-Szott M, Tobiasova E (2015) Use of HPLC, py-GCMS, FTiR methods in the studies of the composition of soil dissolved organic matter. Pol J Soil Sci XLVIII/1:101–110. https://doi.org/10.17951/pjss/2015.48.1.101
Article
Google Scholar
Saint-Laurent D, Lavoie L, Drouin A, St-Laurent J, Chaleb B (2010) Floodplain sedimentation rates, soil properties and recent flood history in southern Quebec. Glob Planet Chang 70:76–91. https://doi.org/10.1016/j.gloplacha.2009.11.009
Article
Google Scholar
Spaccini R, Piccolo A, Conte P, Haberhauer G, Gerzabek MH (2002) Increased soil organic carbon sequestration through hydrophobic protection by humic substances. Soil Biol Biochem 34:1839–1851. https://doi.org/10.1016/S0038-0717(02)00197-9
Article
CAS
Google Scholar
Ward JH (1963) Hierarchical grouping to optimise an objective function. J Am Stat Assoc 58:236–244
Article
Google Scholar
Watanabe A, Moroi K, Sato H, Tsutsuki K, Maie N, Melling L, Jaffe R (2012) Contributions of humic substances to the dissolved organic carbon pool in wetlands from different climates. Chemosphere 88:1265–1268. https://doi.org/10.1016/j.chemosphere.2012.04.005
Article
CAS
Google Scholar
Weil RR, Magdoff F (2004) Significance of soil organic matter to soil quality and health. In: Magdoff F, Weil RR (eds) Soil organic matter in sustainable agriculture. CRC Press, London, pp 1–43
Google Scholar
Wierzbicki G, Mazgajski M (2011) Ice-jam flood of the Vistula River in the Varsaw Basin during February and March 2010. Sci Rev - Eng Environ Sci 51:52–60
Google Scholar
Williams CJ, Yamashita Y, Wilson HF, Jaffe R, Xenopoulus MA (2010) Unraveling the role of land use and microbial activity in shaping dissolved organic matter characteristics in stream ecosystems. Limnol Oceanogr 55:1159–1171. https://doi.org/10.4319/lo.2010.55.3.1159
Article
CAS
Google Scholar
Wu FC, Evans RD, Dillon PJ (2003) Separation and characterization of NOM by high-performance liquid chromatography and on-line three-dimensional excitation emission matrix fluorescence detection. Environ Sci 37:3687–3693. https://doi.org/10.1021/es020244e
Article
CAS
Google Scholar
Wu FC, Evans RD, Dillon PJ, Cai YR (2007) Rapid quantification of humic and fulvic acids by HPLC in natural waters. Appl Geochem 22:1598–1605. https://doi.org/10.1016/j.apgeochem.2007.03.043
Article
CAS
Google Scholar
Zwoliński Z (1992) Sedimentology and geomorphology of overbank flows on meandering river floodplains. Geomorphology 4:367–379
Article
Google Scholar