PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Chemical characterization of patnos scoria (Agri, Turkey) and its usability for production of blended cement

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper reports results of investigations on suitability of scoria (PTS), collected from Patnos (Agri) in Turkey, for blended cement production. Scoria (basic pumice) was chosen as cement replacement materials due to its availability and cost in Agri in Turkey. The portland cement was replaced by scoria within the range of 0, 5, 10, 20, 30, 40 and 50%. Characterization of scoria was subjected by the X-ray fluorescence (XRF), X-ray diffraction (XRD), Fourier Transform Infrared (FTIR) spectroscopy, Scanning Electron Microscopy (SEM), BET surface area and porosity, zeta potential (?) and thin sections. The standard tests were conducted for the obtained fresh and hardened states of scoria blended cement paste. Furthermore, the obtained cements were characterized by the XRF. According to experimental results, scoria up to 20% ratio could be added into clinker and it has a good potential of manufacturing blended scoria cement.
Słowa kluczowe
Rocznik
Strony
303--315
Opis fizyczny
Bibliogr. 32 poz.
Twórcy
autor
autor
autor
autor
autor
autor
  • Yuzuncu Yil University, Faculty of Engineering and Architecture, Department of Mining Engineering, 6580, Van, Turkey, tdepci@gmail.com
Bibliografia
  • 1. ARRIGO I, CATALFAMO P, CAVALLARI L, DI PASQUALE S., 2007, Use of zeolitized pumice waste as a water softening agent, Journal of Hazardous Materials, 147, 513–517.
  • 2. AYDIN A.C. AND GÜL R., 2007, Influence of volcanic originated natural materials as additives on the setting time and some mechanical properties of concrete, Construction and Building Materials 21, 1277–1281
  • 3. BINICI H and AKSOGAN O., 2006, Sulfate resistance of plain and blended cement, Cement Concrete Comp., 28:39–46.
  • 4. BLANCO VARELA M. T., MARTÍNEZ RAMÍREZ S., EREÑA, I., GENER M. AND CARMONA P., 2006, Characterization and Pozzolanicity of Zeolitic Rocks from Two Cuban Deposits, Applied Clay Science, V. 33, No. 2, 149–159.
  • 5. ÇAVDAR A. and YETGĠN ġ., 2007, The Effect of Particle Fineness on Properties of Portland Pozzolan Cement Mortars, Turkish Journal of Science & Technology, Volume 4, No 1, 17–23
  • 6. ERSOY B., SARIISIK A., DIKMEN S., SARIISIK G., 2010, Characterization of Acidic Pumice and Determination of Its Electrokinetic Properties in Water, Powder Technology, 197, 129–135.
  • 7. FU X, WANG Y, HUANG S, HOU X, HOU W., 2003, The influences of siliceous waste on blended cement properties, Cement Concrete Res., 33: 851–6.
  • 8. GÜNDÜZ L, SARIIġIK A, DAVRAZ M, UĞUR Ġ, ÇANKIRAN O., (1998), PomzaTeknolojisi Cilt–1. SDÜ Yayını, 285s. Isparta (in Turkish)
  • 9. HOSSAIN K.M.A., 2004, Properties of volcanic pumice based cement and lightweight concrete. Cement and Concrete Research, 34, 283–291.
  • 10. HOSSAIN K. M. A., 2005, Volcanic ash and pumice as cement additives: pozzolanic, alkali–silica reaction and autoclave expansion characteristics, Cement and Concrete Research 35, 1141– 1144
  • 11. HUANG, P. AND FUERSTENAU, W., 2001, The Effect of the Adsorption of Lead and Cadmium Ions on the Interfacial Behavior of Quartz and Talc, Colloids and Furface A: Physicochemical and Engineering Aspects, 177: 147–156.
  • 12. LEA FM., 1976, The chemistry of cement and concrete, 3rd ed. London: Edward Arnold, Ltd.
  • 13. LURA, P., BENTZ, D. P., LANGE, D. A., KOVLER, K., AND BENTUR, A., 2004, Pumice aggregates for internal water curing. Kovler, K., Marchand, J., Mindess, S., and Weiss, J., eds., Proceedings of International RILEM Symposium on Concrete Science and Engineering: A Tribute to Arnon Bentur, 137–151. Evanston:RILEM Publications S.A.R.L.
  • 14. MEHTA, P.K., 1981, Studies On Blended Portland Cements Containing Santorin Earth, Cement and Concrete Research, 4, 507–518.
  • 15. ÖNER M., ERDOĞDU K., GÜNLÜ A., 2003, Effect of components fineness on strenght of blast furnace slag cement, Cement and Concrete Research 33, 463–469.
  • 16. PRASANPHAN S. and NUNTIYA A., 2006, Contributed Paper Electrokinetic Properties of Kaolins, Sodium Feldspar and Quartz, Chiang Mai J. Sci. 33(2) : 183–190.
  • 17. PERRAKI T., AND ORFANOUDAKI A., 2004, Mineralogical Study of Zeolites from Pentalofos Area, Thrace, Greece, Applied Clay Science, V. 25, No. 1–2, 9–16.
  • 18. PLANUNGS ENGINEERING MANAGEMENT (PEM), 1984, On investigations of Turkish natural pozzolans as cement admixtures, Planungs Engineering Management Report. Ankara, Düsseldorf.
  • 19. SARASWATHY V, MURALIDHARAN S, THANGAVEL K, SRINIVASAN S., 2003, Influence of activated fly ash on corrosion–resistance and strength of concrete, Cement Concrete Res., 25:673–80.
  • 20. SERSALE G.P., 1987, Portland–zeolite–cement for minimizing alkali–aggregate expansion. Cement Concrete Res., 17:404–10.
  • 21. TARGAN S, OLGUN A, ERDOGAN Y, SEVINC V., 2003, Influence of natural pozzolan, colemanite ore waste, bottom ash and fly ash on the properties of portland cement, Cement and Concrete Research 33 1175–1182.
  • 22. TS 25, 2008, Natural pozzolan (Trass) for use in cement and concrete – Definitions, requirements and conformity criteria. In Turkish Standards
  • 23. TSE EN 197 – 1, 2002, Cement– Part 1: Compositions and conformity criteria for common cements. In Turkish Standards
  • 24. TSE EN 196 – 1, 2002, Methods of testing cement–Part 1: Determination of strength. In Turkish Standards
  • 25. TSE EN 196 – 3, 2002, Methods of testing cement–Part 3: Determination of setting time and soundness. In Turkish Standards
  • 26. T.R. PRIME MINISTRY, STATE PLANNING ORGANIZATION REPORT, 2001, (in Turkish).
  • 27. TUNÇ S. and DUMAN O., 2009, Effects of Electrolytes on the Electrokinetic Properties of Pumice Suspensions, Journal of Dispersion Science and Technology, 30, 548 – 555.
  • 28. Türkiye Çimento Müstahsilleri Birliği AraĢtırmaların Gözden Geçirilmesi ve Durum Değerlendirmesi Raporu; Traslar ve Traslı Çimentolar., 2003, TÇMB/AR–GE Enstitüsü, Ankara (in Turkish).
  • 29. VUK T, GABROVSEK R, KAUCIC V., 2002, The influence of mineral admixtures on sulfate resistance of limestone cement pastes aged in cold MgSO4 solution. Cem. Conc. Comp., 32:943–8.
  • 30. YAZICIOĞLU S. and DEMĠREL B., 2006, The Effect of the Pumice of Elazığ Region used as a Pozzolanic Additive on the Compressive Strength of Concrete in Increasing Cure Ages, Science and Eng. J of Fırat Univ. 18 (3), 367–374.
  • 31. YETGIN ġ. and ÇAVDAR A., 2006, Study of Effects of Natural Pozzolan on Properties of Cement Mortars, Journal of Materials in Civil Engineering, 18/6, 813–816.
  • 32. YILMAZ B., 2009, Effects of Molecular and Electrokinetic Properties of Pozzolans on Hydration, ACI Materials Journal 106 (2), 128–137.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BAT2-0003-0082
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.