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Erschienen in: Geotechnical and Geological Engineering 2/2008

01.04.2008 | Original Paper

Comparison of Methods for Determining Specific-surface Area of Fine-grained Soils

verfasst von: D. N. Arnepalli, S. Shanthakumar, B. Hanumantha Rao, D. N. Singh

Erschienen in: Geotechnical and Geological Engineering | Ausgabe 2/2008

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Abstract

Characteristics of fine-grained soils primarily depend on their specific-surface area and hence, reliable determination of this parameter is essential. In this context, researchers have employed quite sophisticated instruments (viz., a BET surface area analyzer, the mercury intrusion porosimetry, internal reflectance spectroscopy, X-Ray diffraction and gas pycnometer etc.) and methodologies (viz., sorption of Methylene Blue dye, Ethylene Glycol Monoethyl Ether and p-Nitrophenol) to determine specific-surface area of these soils. However, most of these methodologies are found to be quite tedious, cost and time intensive. Apart from this, the results obtained are contentious due to the inherent limitations associated with either the instruments employed or the basic assumptions made for computing the specific-surface area of the soil. Hence, it becomes mandatory to evaluate the efficiency of these methodologies for determining specific-surface area of fine-grained soils. With this in view, different types of soils were considered in this study and their specific-surface area was determined, by following different methodologies, and the results were evaluated critically. In addition, attempts were made to develop relationships between the basic properties of fine-grained soils (viz., liquid limit, cation-exchange capacity, activity, and free swell index) and the specific-surface area. These relationships will be of immense help to the practicing engineers and research fraternity.

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Literatur
Zurück zum Zitat Adamson AW (1990) Physical chemistry of surfaces. John Wiley & Sons, New York Adamson AW (1990) Physical chemistry of surfaces. John Wiley & Sons, New York
Zurück zum Zitat Allen T (1990) Particle size measurement. Chapman and Hall, New York Allen T (1990) Particle size measurement. Chapman and Hall, New York
Zurück zum Zitat ASTM D-2487 (1994) Standard test method for classification of soils for engineering purposes (unified soil classification system), Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 206–215 ASTM D-2487 (1994) Standard test method for classification of soils for engineering purposes (unified soil classification system), Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 206–215
Zurück zum Zitat ASTM D-422 (1994) Standard test method for particle size analysis of soils. Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 10–16 ASTM D-422 (1994) Standard test method for particle size analysis of soils. Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 10–16
Zurück zum Zitat ASTM D-427 (1994) Standard test method for shrinkage factors of soils by the mercury method. Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 21–24 ASTM D-427 (1994) Standard test method for shrinkage factors of soils by the mercury method. Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 21–24
Zurück zum Zitat ASTM D-4318 (1994) Standard test method for liquid limit, plastic limit and plasticity index of soils. Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 551–561 ASTM D-4318 (1994) Standard test method for liquid limit, plastic limit and plasticity index of soils. Annual Book of ASTM Standards, 04.08, ASTM International, West Conshohocken, PA, USA, pp 551–561
Zurück zum Zitat ASTM D-4404 (1984) Standard test method for determination of pore volume and pore volume distribution of soil and rock by mercury intrusion porosimetry, Annual Book of ASTM Standards, 12.01, ASTM International, West Conshohocken, PA, USA, pp 1–5 ASTM D-4404 (1984) Standard test method for determination of pore volume and pore volume distribution of soil and rock by mercury intrusion porosimetry, Annual Book of ASTM Standards, 12.01, ASTM International, West Conshohocken, PA, USA, pp 1–5
Zurück zum Zitat Bower CA, Goertzen JO (1959) Surface area of soils and clays by an equilibrium ethylene glycol method. Soil Science 87:289–292CrossRef Bower CA, Goertzen JO (1959) Surface area of soils and clays by an equilibrium ethylene glycol method. Soil Science 87:289–292CrossRef
Zurück zum Zitat Brunauer S, Emmett PH, Teller E (1938) Adsorption of gases in multi-molecular layers. J Am Chem Soc 60:309–319CrossRef Brunauer S, Emmett PH, Teller E (1938) Adsorption of gases in multi-molecular layers. J Am Chem Soc 60:309–319CrossRef
Zurück zum Zitat Carter DL, Heilman MD, Gonzalez CL (1965) Ethylene glycol mono-ethyl ether for determining surface area of silicate minerals. Soil Sci 100(5):356–360CrossRef Carter DL, Heilman MD, Gonzalez CL (1965) Ethylene glycol mono-ethyl ether for determining surface area of silicate minerals. Soil Sci 100(5):356–360CrossRef
Zurück zum Zitat Carter DL, Mortland MM, Kemper WD (1986) Specific surface, methods of soil analysis. American Society of Agronomy, USA Carter DL, Mortland MM, Kemper WD (1986) Specific surface, methods of soil analysis. American Society of Agronomy, USA
Zurück zum Zitat Cerato AB, Lutenegger AJ (2002) Determination of surface area of fine-grained soils by the ethylene glycol mono-ethyl ether (EGME) method. Geotech Testing J 25(3):1–7 Cerato AB, Lutenegger AJ (2002) Determination of surface area of fine-grained soils by the ethylene glycol mono-ethyl ether (EGME) method. Geotech Testing J 25(3):1–7
Zurück zum Zitat Cerato AB, Lutenegger AJ (2004) Determining intrinsic compressibility of fine-grained soils. Journal of Geotechnical and Geoenvironmental Engineering 130(8):872–877CrossRef Cerato AB, Lutenegger AJ (2004) Determining intrinsic compressibility of fine-grained soils. Journal of Geotechnical and Geoenvironmental Engineering 130(8):872–877CrossRef
Zurück zum Zitat Chen G, Pan J, Han B, Yan H (1999) Adsorption of methylene blue on montmorillonite. J Dispersion Sci Technol 20(4):179–1187CrossRef Chen G, Pan J, Han B, Yan H (1999) Adsorption of methylene blue on montmorillonite. J Dispersion Sci Technol 20(4):179–1187CrossRef
Zurück zum Zitat Daniels JL, Inyanh HI, Brochu Jr M (2004) Specific surface area of barrier mixtures at various outgas temperature. J Environ Eng 130(8):867–872CrossRef Daniels JL, Inyanh HI, Brochu Jr M (2004) Specific surface area of barrier mixtures at various outgas temperature. J Environ Eng 130(8):867–872CrossRef
Zurück zum Zitat Dasog GS, Acton DF, Mermut AR, DeJong E (1988) Shrink-swell potential and cracking in clay soils of Saskatchewan. Can J Soil Sci 68:251–260 Dasog GS, Acton DF, Mermut AR, DeJong E (1988) Shrink-swell potential and cracking in clay soils of Saskatchewan. Can J Soil Sci 68:251–260
Zurück zum Zitat Dolinar B, Trauner L (2004) Liquid limit and specific surface of clay particles. Geotech Testing J 27(6):580–584 Dolinar B, Trauner L (2004) Liquid limit and specific surface of clay particles. Geotech Testing J 27(6):580–584
Zurück zum Zitat Dos SMPP, DeCastro E (1965) Soil erosion in roads. Proc 6th Int Conf Soil Mech Foundation Eng 1:116–118 Dos SMPP, DeCastro E (1965) Soil erosion in roads. Proc 6th Int Conf Soil Mech Foundation Eng 1:116–118
Zurück zum Zitat Dyal RS, Hendricks SB (1950) Total surface area of clays in polar liquids as a characteristic index. Soil Sci 69:421–432CrossRef Dyal RS, Hendricks SB (1950) Total surface area of clays in polar liquids as a characteristic index. Soil Sci 69:421–432CrossRef
Zurück zum Zitat Dyal RS, Hendricks SB (1952) Formation of mixed layer minerals by potassium fixation in montmorillonite. Soil Sci Soc Am Proc 16:45–48CrossRef Dyal RS, Hendricks SB (1952) Formation of mixed layer minerals by potassium fixation in montmorillonite. Soil Sci Soc Am Proc 16:45–48CrossRef
Zurück zum Zitat Eltantawy IM, Arnold PW (1973) Reappraisal of ethylene glycol mono-ethyl ether (EGME) method for surface area estimations of clays. J Soil Sci 24:232–238CrossRef Eltantawy IM, Arnold PW (1973) Reappraisal of ethylene glycol mono-ethyl ether (EGME) method for surface area estimations of clays. J Soil Sci 24:232–238CrossRef
Zurück zum Zitat Eltantawy IM, Arnold PW (1974) Ethylene glycol sorption by homoionic montmorillonites. J Soil Sci 25:99–110CrossRef Eltantawy IM, Arnold PW (1974) Ethylene glycol sorption by homoionic montmorillonites. J Soil Sci 25:99–110CrossRef
Zurück zum Zitat Enustun BV, Gunnink BW, Demirel T (1990) Phase transition porosimetry and surface area determination. J Colloid Interf Sci 134(1):264–274CrossRef Enustun BV, Gunnink BW, Demirel T (1990) Phase transition porosimetry and surface area determination. J Colloid Interf Sci 134(1):264–274CrossRef
Zurück zum Zitat Erdal C (2002) Relationship between methylene blue value, initial soil suction and swelling percent of expansive soils. J Eng Environ Sci 26:521–529 Erdal C (2002) Relationship between methylene blue value, initial soil suction and swelling percent of expansive soils. J Eng Environ Sci 26:521–529
Zurück zum Zitat Farrar DM, Coleman JD (1967) The correlation of surface area with other properties of nineteen British clay soils. J Soil Sci 18(1):118–124CrossRef Farrar DM, Coleman JD (1967) The correlation of surface area with other properties of nineteen British clay soils. J Soil Sci 18(1):118–124CrossRef
Zurück zum Zitat IS 2720 Part XXIV (1976) Methods of test for soils determination of cation exchange capacity. Indian Standards Institute, New Delhi, India IS 2720 Part XXIV (1976) Methods of test for soils determination of cation exchange capacity. Indian Standards Institute, New Delhi, India
Zurück zum Zitat JCPDS, Powder Diffraction File 44 7354-CD ROM (1994), International Centre for Diffraction Data. Pennsylvania, USA JCPDS, Powder Diffraction File 44 7354-CD ROM (1994), International Centre for Diffraction Data. Pennsylvania, USA
Zurück zum Zitat Langmuir I (1918) The adsorption of gases on plane surfaces of glass, mica and platinum, J Am Chem Soc 40:1361–1402CrossRef Langmuir I (1918) The adsorption of gases on plane surfaces of glass, mica and platinum, J Am Chem Soc 40:1361–1402CrossRef
Zurück zum Zitat Low PF (1980) The swelling of clay: II. Montmorillonite, Soil Sci Soc Am J 44(4):667–676CrossRef Low PF (1980) The swelling of clay: II. Montmorillonite, Soil Sci Soc Am J 44(4):667–676CrossRef
Zurück zum Zitat Mitchell JK (1993) Fundamentals of soil behavior. John Wiley & Sons, New York Mitchell JK (1993) Fundamentals of soil behavior. John Wiley & Sons, New York
Zurück zum Zitat Morgenstern NR, Balasubramanian BI (1980) Effects of pore fluid on the swelling of clay-shale. Proc 4th Int Conf Expansive Soils 1:190–205 Morgenstern NR, Balasubramanian BI (1980) Effects of pore fluid on the swelling of clay-shale. Proc 4th Int Conf Expansive Soils 1:190–205
Zurück zum Zitat Mortland MM, Kemper WD (1965) Specific surface, methods of soil analysis. American Society of Agronomy, USA Mortland MM, Kemper WD (1965) Specific surface, methods of soil analysis. American Society of Agronomy, USA
Zurück zum Zitat Mulla DJ, Low PF, Roth CB (1985) Measurement of the specific surface area of clays by internal reflectance spectroscopy. Clays Clay Minerals 33(5):391–396CrossRef Mulla DJ, Low PF, Roth CB (1985) Measurement of the specific surface area of clays by internal reflectance spectroscopy. Clays Clay Minerals 33(5):391–396CrossRef
Zurück zum Zitat Newman ACD (1983) The specific surface of soils determined by water sorption. J Soil Sci 34:23–32CrossRef Newman ACD (1983) The specific surface of soils determined by water sorption. J Soil Sci 34:23–32CrossRef
Zurück zum Zitat Nixon JF (1991) Discrete ice lens theory for frost heave in soils. Can Geotech J 28:843–859CrossRef Nixon JF (1991) Discrete ice lens theory for frost heave in soils. Can Geotech J 28:843–859CrossRef
Zurück zum Zitat Orchiston HD (1959) Adsorption of water vapor: VI. ca-soils at 258°K. Soil Sci 87:350–352 Orchiston HD (1959) Adsorption of water vapor: VI. ca-soils at 258°K. Soil Sci 87:350–352
Zurück zum Zitat Orchiston HD (1959) Adsorption of water vapor: VII. allophane and some clay materials at 258 °K, Soil Sci 88:159–163CrossRef Orchiston HD (1959) Adsorption of water vapor: VII. allophane and some clay materials at 258 °K, Soil Sci 88:159–163CrossRef
Zurück zum Zitat Hang PT, Brindley GW (1970) Methylene blue absorption by clay minerals: determination of surface areas and cation exchange capacities. Clays Clay Minerals 18:203–212CrossRef Hang PT, Brindley GW (1970) Methylene blue absorption by clay minerals: determination of surface areas and cation exchange capacities. Clays Clay Minerals 18:203–212CrossRef
Zurück zum Zitat Quirk JP (1955) Significance of surface areas calculated from water vapor sorption isotherms by use of the BET equation. Soil Science 80:423–430CrossRef Quirk JP (1955) Significance of surface areas calculated from water vapor sorption isotherms by use of the BET equation. Soil Science 80:423–430CrossRef
Zurück zum Zitat Rai PB, Murari K (1963) Studies in surface area measurements of soils: I comparison of different methods. Soil Sci 96:331–335CrossRef Rai PB, Murari K (1963) Studies in surface area measurements of soils: I comparison of different methods. Soil Sci 96:331–335CrossRef
Zurück zum Zitat Ristori GG, Sparvoli E, Landi L, Martelloni C (1989) Measurement of specific surface areas of soils by p-nitrophenol adsorption. Appl Clay Sci 4:521–532CrossRef Ristori GG, Sparvoli E, Landi L, Martelloni C (1989) Measurement of specific surface areas of soils by p-nitrophenol adsorption. Appl Clay Sci 4:521–532CrossRef
Zurück zum Zitat Rootare HM, Prenzlow CF (1967) Surface area from mercury porosimeter measurements. J Phys Chem 71(8):2733–2736CrossRef Rootare HM, Prenzlow CF (1967) Surface area from mercury porosimeter measurements. J Phys Chem 71(8):2733–2736CrossRef
Zurück zum Zitat Ross GJ (1978) Relationships of specific surface area and clay content to shrink-swell potential of soils having different clay mineralogic compositions. Can J Soil Sci 58:159–166CrossRef Ross GJ (1978) Relationships of specific surface area and clay content to shrink-swell potential of soils having different clay mineralogic compositions. Can J Soil Sci 58:159–166CrossRef
Zurück zum Zitat Santamarina JC, Klein KA, Wang YH, Prencke E (2002) Specific surface area: determination and relevance. Can Geotech J 39:233–241CrossRef Santamarina JC, Klein KA, Wang YH, Prencke E (2002) Specific surface area: determination and relevance. Can Geotech J 39:233–241CrossRef
Zurück zum Zitat Shah PH (2005) Some Studies on Electrical Properties of Soils, Ph.D. Thesis, Submitted to Department of Civil Engineering, IIT Bombay, India Shah PH (2005) Some Studies on Electrical Properties of Soils, Ph.D. Thesis, Submitted to Department of Civil Engineering, IIT Bombay, India
Zurück zum Zitat Sridharan A, Rao G, Venkatappa R (1972) Surface area determination of clays. Geotech Eng 3:127–132 Sridharan A, Rao G, Venkatappa R (1972) Surface area determination of clays. Geotech Eng 3:127–132
Zurück zum Zitat Thakur VKS, Singh DN (2005) Rapid Determination of swelling pressure of clay minerals. J Testing Eval ASTM 33(4):1–7CrossRef Thakur VKS, Singh DN (2005) Rapid Determination of swelling pressure of clay minerals. J Testing Eval ASTM 33(4):1–7CrossRef
Zurück zum Zitat Tiller KG, Smith LH (1990) Limitations of EGME retention to estimate surface area of soils. Aust J Soil Sci 28:1–26CrossRef Tiller KG, Smith LH (1990) Limitations of EGME retention to estimate surface area of soils. Aust J Soil Sci 28:1–26CrossRef
Zurück zum Zitat Tuul J, Innes WB (1962) Inorganic oxide air adsorption at room temperature and correlation with surface area. Anal Chem 36(7):818–820CrossRef Tuul J, Innes WB (1962) Inorganic oxide air adsorption at room temperature and correlation with surface area. Anal Chem 36(7):818–820CrossRef
Zurück zum Zitat Warkentin BP (1972) Use of the liquid limit in characterizing the clay soils. Can J of Soil Sci 52:457–464 Warkentin BP (1972) Use of the liquid limit in characterizing the clay soils. Can J of Soil Sci 52:457–464
Zurück zum Zitat Zerwer A, Santamarina JC (1994) Double layers in pyrometamorphosed bentonite: index properties and complex permittivity. Appl Clay Sci 9:283–291CrossRef Zerwer A, Santamarina JC (1994) Double layers in pyrometamorphosed bentonite: index properties and complex permittivity. Appl Clay Sci 9:283–291CrossRef
Metadaten
Titel
Comparison of Methods for Determining Specific-surface Area of Fine-grained Soils
verfasst von
D. N. Arnepalli
S. Shanthakumar
B. Hanumantha Rao
D. N. Singh
Publikationsdatum
01.04.2008
Verlag
Springer Netherlands
Erschienen in
Geotechnical and Geological Engineering / Ausgabe 2/2008
Print ISSN: 0960-3182
Elektronische ISSN: 1573-1529
DOI
https://doi.org/10.1007/s10706-007-9152-5

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