journal article Open Access Dec 19, 2017

Calcium-mediated stabilisation of soil organic carbon

View at Publisher Save 10.1007/s10533-017-0410-1
Topics

No keywords indexed for this article. Browse by subject →

References
234
[1]
Aber JD, Melillo JM, McClaugherty CA (1990) Predicting long-term patterns of mass loss, nitrogen dynamics, and soil organic matter formation from initial fine litter chemistry in temperate forest ecosystems. Can J Bot 68(10):2201–2208 10.1139/b90-287
[2]
Adu JK, Oades JM (1978) Physical factors influencing decomposition of organic materials in soil aggregates. Soil Biol Biochem 10(2):109–115 10.1016/0038-0717(78)90080-9
[3]
Ahmed E, Holmström SJM (2014) Siderophores in environmental research: roles and applications. Microb Biotechnol 7(3):196–208 10.1111/1751-7915.12117
[4]
Ahrland S, Chatt J, Davies NR (1958) The relative affinities of ligand atoms for acceptor molecules and ions. Q Rev 12(3):265–276 10.1039/qr9581200265
[5]
Andersson S, Nilsson I, Valeur I (1999) Influence of dolomitic lime on DOC and DON leaching in a forest soil. Biogeochemistry 47(3):295–315 10.1023/a:1006155925844
[6]
Aristilde L, Sposito G (2008) Molecular modeling of metal complexation by a fluoroquinolone antibiotic. Environ Toxicol Chem 27(11):2304–2310 10.1897/08-059.1
[7]
Armstrong ASB, Tanton TW (1992) Gypsum applications to aggregated saline—sodic clay topsoils. J Soil Sci 43(2):249–260 10.1111/j.1365-2389.1992.tb00133.x
[8]
Asano M, Wagai R (2014) Evidence of aggregate hierarchy at micro- to submicron scales in an allophanic Andisol. Geoderma 216:62–74 10.1016/j.geoderma.2013.10.005
[9]
Babel U (1975) Micromorphology of soil organic matter. In: Gieseking JE (ed) Soil components: organic components, vol 1. Springer, Berlin, pp 369–473 10.1007/978-3-642-65915-7_7
[10]
Baldock JA, Skjemstad JO (2000) Role of the soil matrix and minerals in protecting natural organic materials against biological attack. Org Geochem 31(7–8):697–710 10.1016/s0146-6380(00)00049-8
[11]
Baldock J, Aoyama M, Oades J, Grant C (1994) Structural amelioration of a South Australian red-brown earth using calcium and organic amendments. Soil Res 32(3):571–594 10.1071/sr9940571
[12]
Balesdent J, Chenu C, Balabane M (2000) Relationship of soil organic matter dynamics to physical protection and tillage. Soil Tillage Res 53(3–4):215–230 10.1016/s0167-1987(99)00107-5
[13]
Barra CM, Curtius AJ, de Campos RC, Perez DV (2001) Evaluation of four aluminum extraction methods using selected Brazilian soils. Commun Soil Sci Plant Anal 32(11–12):1969–1980 10.1081/css-120000262
[14]
Barta G (2011) Secondary carbonates in loess-paleosoil sequences: a general review. Central Eur J Geosci 3(2):129–146
[15]
Bascomb CL (1968) Distribution of pyrophosphate extractable iron and organic carbon in soils of various groups. J Soil Sci 19(2):251–268 10.1111/j.1365-2389.1968.tb01538.x
[16]
Basile-Doelsch I, Brun T, Borschneck D, Masion A, Marol C, Balesdent J (2009) Effect of landuse on organic matter stabilized in organomineral complexes: a study combining density fractionation, mineralogy and δ13C. Geoderma 151(3):77–86 10.1016/j.geoderma.2009.03.008
[17]
Becze-Deàk J, Langohr R, Verrecchia EP (1997) Small scale secondary CaCO3 accumulations in selected sections of the European loess belt. Morphological forms and potential for paleoenvironmental reconstruction. Geoderma 76(3):221–252 10.1016/s0016-7061(96)00106-1
[18]
Bélanger N, Paré D, Hendershot WH (2008) Chapter 27—determining nutrient availability in forest soils. In: Carter MR, Gregorich EG (eds) Soil sampling and methods of analysis. Canadian Society of Soil Science, Pinawa, p 1224
[19]
Benedetti MF, Milne CJ, Kinniburgh DG, Van Riemsdijk WH, Koopal LK (1995) Metal ion binding to humic substances: application of the non-ideal competitive adsorption model. Environ Sci Technol 29(2):446–457 10.1021/es00002a022
[20]
Bertrand I, Delfosse O, Mary B (2007) Carbon and nitrogen mineralization in acidic, limed and calcareous agricultural soils: apparent and actual effects. Soil Biol Biochem 39(1):276–288 10.1016/j.soilbio.2006.07.016
[21]
Bindschedler S, Cailleau G, Braissant O, Milliere L, Job D, Verrecchia EP (2014) Unravelling the enigmatic origin of calcitic nanofibres in soils and caves: purely physicochemical or biogenic processes? Biogeosciences 11(10):2809–2825 10.5194/bg-11-2809-2014
[22]
Bindschedler S, Cailleau G, Verrecchia E (2016) Role of fungi in the biomineralization of calcite. Minerals 6(2):41 10.3390/min6020041
[23]
Blagodatskaya EV, Anderson T-H (1999) Adaptive responses of soil microbial communities under experimental acid stress in controlled laboratory studies. Appl Soil Ecol 11(2–3):207–216 10.1016/s0929-1393(98)00148-6
[24]
Bogatko S, Cauët E, Bylaska E, Schenter G, Fulton J, Weare J (2013) The aqueous Ca2+ system, in comparison with Zn2+, Fe3+, and Al3+: an ab initio molecular dynamics study. Chem Eur J 19(9):3047–3060 10.1002/chem.201202821
[25]
Boudot J-P (1992) Relative efficiency of complexed aluminum noncrystalline Al hydroxide, allophane and imogolite in retarding the biodegradation of citric acid. Geoderma 52(1):29–39 10.1016/0016-7061(92)90073-g
[26]
Briedis C, de Moraes Sá JC, Caires EF, de Fátima Navarro J, Inagaki TM, Boer A, de Oliveira Ferreira A, Neto CQ, Canalli LB, Bürkner dos Santos J (2012a) Changes in organic matter pools and increases in carbon sequestration in response to surface liming in an oxisol under long-term no-till. Soil Sci Soc Am J 76(1):151–160 10.2136/sssaj2011.0128
[27]
Briedis C, Sá JCdM, Caires EF, Navarro JdF, Inagaki TM, Boer A, Neto CQ, Ferreira AdO, Canalli LB, Santos JBd (2012b) Soil organic matter pools and carbon-protection mechanisms in aggregate classes influenced by surface liming in a no-till system. Geoderma 170:80–88 10.1016/j.geoderma.2011.10.011
[28]
Brinza L, Schofield PF, Hodson ME, Weller S, Ignatyev K, Geraki K, Quinn PD, Mosselmans JFW (2014) Combining µXANES and µXRD mapping to analyse the heterogeneity in calcium carbonate granules excreted by the earthworm Lumbricus terrestris. J Synchrotron Radiat 21(Pt 1):235–241 10.1107/s160057751303083x
[29]
Brodowski S, Amelung W, Haumaier L, Zech W (2007) Black carbon contribution to stable humus in German arable soils. Geoderma 139(1–2):220–228 10.1016/j.geoderma.2007.02.004
[30]
Bronick CJ, Lal R (2005) Soil structure and management: a review. Geoderma 124(1–2):3–22 10.1016/j.geoderma.2004.03.005
[31]
Brovkin V, Goll D (2015) Land unlikely to become large carbon source. Nat Geosci 8(12):893 10.1038/ngeo2598
[32]
Bruckert S, Gaiffe M, Duquet B, Tavant Y, Tavant H (1986) Rôle du flux de calcium sur la stabilisation de la matière organique des sols. Ann Sci Univ France Comté Besançon 4(6):25–29
[33]
Cailleau G, Braissant O, Verrecchia EP (2004) Biomineralization in plants as a long-term carbon sink. Naturwissenschaften 91(4):191–194 10.1007/s00114-004-0512-1
[34]
Cailleau G, Braissant O, Dupraz C, Aragno M, Verrecchia EP (2005) Biologically induced accumulations of CaCO3 in orthox soils of Biga, Ivory Coast. Catena 59(1):1–17 10.1016/j.catena.2004.06.002
[35]
Cailleau G, Verrecchia EP, Braissant O, Emmanuel L (2009) The biogenic origin of needle fibre calcite. Sedimentology 56(6):1858–1875 10.1111/j.1365-3091.2009.01060.x
[36]
Campbell EE, Paustian K (2015) Current developments in soil organic matter modeling and the expansion of model applications: a review. Environ Res Lett 10(12):123004 10.1088/1748-9326/10/12/123004
[37]
Carmeis Filho ACA, Penn CJ, Crusciol CAC, Calonego JC (2017) Lime and phosphogypsum impacts on soil organic matter pools in a tropical oxisol under long-term no-till conditions. Agric Ecosyst Environ 241:11–23 10.1016/j.agee.2017.02.027
[38]
Carter P (1978) Adsorption of amino acid-containing organic matter by calcite and quartz. Geochim Cosmochim Acta 42(8):1239–1242 10.1016/0016-7037(78)90117-5
[39]
Certini G, Corti G, Ugolini FC (2000) Vertical trends of oxalate concentration in two soils under Abies alba from Tuscany (Italy). J Plant Nutr Soil Sci 163(2):173–177 10.1002/(sici)1522-2624(200004)163:2<173::aid-jpln173>3.0.co;2-h
[40]
Chan KY, Heenan DP (1999) Lime-induced loss of soil organic carbon and effect on aggregate stability. Soil Sci Soc Am J 63(6):1841–1844 10.2136/sssaj1999.6361841x
[41]
Chassin P (1979) Determination of the angle of contact of humic acids diols solutions—consequences on the mechanisms of aggregate destruction. Ann Agron 30(6):481–491
[42]
Chen Y, Barak P (1982) Iron nutrition of plants in calcareous soils. In: Brady NC (ed) Advances in agronomy. Academic Press, Waltham, pp 217–240
[43]
Chenu C (1989) Influence of a fungal polysaccharide, scleroglucan, on clay microstructures. Soil Biol Biochem 21(2):299–305 10.1016/0038-0717(89)90108-9
[44]
Chenu C, Cosentino D (2011) Microbial regulation of soil structural dynamics. In: Ritz K, Young IM (eds) The architecture and biology of soils: life in inner space. CABI, Cambridge, pp 37–70 10.1079/9781845935320.0037
[45]
Chenu C, Plante AF (2006) Clay-sized organo-mineral complexes in a cultivation chronosequence: revisiting the concept of the ‘primary organo-mineral complex’. Eur J Soil Sci 57(4):596–607 10.1111/j.1365-2389.2006.00834.x
[46]
Clarholm M, Skyllberg U (2013) Translocation of metals by trees and fungi regulates pH, soil organic matter turnover and nitrogen availability in acidic forest soils. Soil Biol Biochem 63:142–153 10.1016/j.soilbio.2013.03.019
[47]
Clough A, Skjemstad JO (2000) Physical and chemical protection of soil organic carbon in three agricultural soils with different contents of calcium carbonate. Aust J Soil Res 38(5):1005–1016 10.1071/sr99102
[48]
Czarnes S, Hallett PD, Bengough AG, Young IM (2000) Root- and microbial-derived mucilages affect soil structure and water transport. Eur J Soil Sci 51(3):435–443 10.1046/j.1365-2389.2000.00327.x
[49]
de Kerchove AJ, Elimelech M (2007) Formation of polysaccharide gel layers in the presence of Ca2+ and K+ ions: measurements and mechanisms. Biomacromol 8(1):113–121 10.1021/bm060670i
[50]
Denef K, Six J, Merckx R, Paustian K (2004) Carbon sequestration in microaggregates of no-tillage soils with different clay mineralogy. Soil Sci Soc Am J 68(6):1935–1944 10.2136/sssaj2004.1935

Showing 50 of 234 references

Metrics
820
Citations
234
References
Details
Published
Dec 19, 2017
Vol/Issue
137(1-2)
Pages
27-49
License
View
Funding
Canton de Vaud
Cite This Article
Mike C. Rowley, Stéphanie Grand, Eric P. Verrecchia (2017). Calcium-mediated stabilisation of soil organic carbon. Biogeochemistry, 137(1-2), 27-49. https://doi.org/10.1007/s10533-017-0410-1