Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Righi, Dominique
and
Elsass, Françoise
1996.
Characterization of Soil Clay Minerals: Decomposition of X-Ray Diffraction Diagrams and High-Resolution Electron Microscopy.
Clays and Clay Minerals,
Vol. 44,
Issue. 6,
p.
791.
Aoudjit, H.
Elsass, F.
Righi, D.
and
Robert, M.
1996.
Mica weathering in acidic soils by analytical electron microscopy.
Clay Minerals,
Vol. 31,
Issue. 3,
p.
319.
de Santiago Buey, C.
Suarez Barrios, M.
Garcia Romero, E.
Dominguez Diaz, M. C.
and
Doval Montoya, M.
1998.
Electron microscopic study of the illite–smectite transformation in the bentonites from Cerro del Aguila (Toledo, Spain).
Clay Minerals,
Vol. 33,
Issue. 3,
p.
501.
Righi, D.
Huber, K.
and
Keller, C.
1999.
Clay formation and podzol development from postglacial moraines in Switzerland.
Clay Minerals,
Vol. 34,
Issue. 2,
p.
319.
Środoń, J.
1999.
Use of clay minerals in reconstructing geological processes: recent advances and some perspectives.
Clay Minerals,
Vol. 34,
Issue. 1,
p.
27.
Gillot, Florence
Righi, Dominique
and
Elsass, Françoise
2000.
Pedogenic Smectites in Podzols from Central Finland: An Analytical Electron Microscopy Study.
Clays and Clay Minerals,
Vol. 48,
Issue. 6,
p.
655.
Pal, D.K
Srivastava, P
Durge, S.L
and
Bhattacharyya, T
2001.
Role of weathering of fine-grained micas in potassium management of Indian soils.
Applied Clay Science,
Vol. 20,
Issue. 1-2,
p.
39.
Fagel, N.
Robert, C.
Preda, M.
and
Thorez, J.
2001.
Smectite composition as a tracer of deep circulation: the case of the Northern North Atlantic.
Marine Geology,
Vol. 172,
Issue. 3-4,
p.
309.
Khormali, F.
and
Abtahi, A.
2003.
Origin and distribution of clay minerals in calcareous arid and semi-arid soils of Fars Province, southern Iran.
Clay Minerals,
Vol. 38,
Issue. 4,
p.
511.
García-Romero, E.
Vegas, J.
Baldonedo, J.L.
and
Marfil, R.
2005.
Clay minerals as alteration products in basaltic volcaniclastic deposits of La Palma (Canary Islands, Spain).
Sedimentary Geology,
Vol. 174,
Issue. 3-4,
p.
237.
Galán, E.
2006.
Handbook of Clay Science.
Vol. 1,
Issue. ,
p.
1129.
Elsass, F.
2006.
Handbook of Clay Science.
Vol. 1,
Issue. ,
p.
939.
Fesharaki, O.
García-Romero, E.
Cuevas-González, J.
and
López-Martínez, N.
2007.
Clay mineral genesis and chemical evolution in the Miocene sediments of Somosaguas, Madrid Basin, Spain.
Clay Minerals,
Vol. 42,
Issue. 2,
p.
187.
Nguetnkam, J. P.
Kamga, R.
Villiéras, F.
Ekodeck, G. E.
and
Yvon, J.
2007.
Pedogenic formation of smectites in a vertisol developed from granitic rock from Kaélé (Cameroon, Central Africa).
Clay Minerals,
Vol. 42,
Issue. 4,
p.
487.
Hassannezh, H.
Pashaee, A.
Khormali, F.
and
Mohammadia, M.
2008.
Effect of Soil Moisture Regime and Rice Cultivation on Mineralogical Characteristics of Paddy Soils of Mazandaran Province, Northern Iran, Amol.
International Journal of Soil Science,
Vol. 3,
Issue. 3,
p.
138.
Rezapour, S.
Jafarzadeh, A. A.
Samadi, A.
and
Oustan, S.
2009.
Impacts of clay mineralogy and physiographic units on the distribution of potassium forms in calcareous soils in Iran.
Clay Minerals,
Vol. 44,
Issue. 3,
p.
327.
Mavris, Christian
Plötze, Michael
Mirabella, Aldo
Giaccai, Daniele
Valboa, Giuseppe
and
Egli, Markus
2011.
Clay mineral evolution along a soil chronosequence in an Alpine proglacial area.
Geoderma,
Vol. 165,
Issue. 1,
p.
106.
Mavris, Christian
Götze, Jens
Plötze, Michael
and
Egli, Markus
2012.
Weathering and mineralogical evolution in a high Alpine soil chronosequence: A combined approach using SEM–EDX, cathodoluminescence and Nomarski DIC microscopy.
Sedimentary Geology,
Vol. 280,
Issue. ,
p.
108.
Cuadros, J.
2012.
Clay crystal-chemical adaptability and transformation mechanisms.
Clay Minerals,
Vol. 47,
Issue. 2,
p.
147.
Calero, J.
Martín‐García, J. M.
Delgado, G.
Aranda, V.
and
Delgado, R.
2013.
A nano‐scale study in a soil chronosequence from southern Spain.
European Journal of Soil Science,
Vol. 64,
Issue. 2,
p.
192.