In-situ monitoring of hydration kinetics of cement pastes by low-field NMR

Anming She , Wu Yao , Yongqi Wei

Journal of Wuhan University of Technology Materials Science Edition ›› 2010, Vol. 25 ›› Issue (4) : 692 -695.

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Journal of Wuhan University of Technology Materials Science Edition ›› 2010, Vol. 25 ›› Issue (4) : 692 -695. DOI: 10.1007/s11595-010-0072-5
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In-situ monitoring of hydration kinetics of cement pastes by low-field NMR

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Abstract

Low field NMR technique was applied to investigate the hydration of cement pastes with different water to cement ratios or addition of superplasticizer. As a nondestructive method, this technique can be used to monitor the hydration kinetics process by following the changes of longitudinal relaxation time (T 1) of water constrained in the pastes. The experimental results indicate that the T 1 distributions of water in the fresh paste normally exhibite bimodal distribution, where the large peak is corresponding to the free water while the small one is contributed by the water stored in the flocculations. Time dependence of the weighted average T 1 has a good agreement with the hydration process and could be divided into four stages, i e, initial period, dormant period, accelerated period and steady period. The hydration mechanism of each stage was described based on the theory of cement chemistry. In addition, the total signal intensity, which is proportional to the content of the physically bound water in the samples, decrease successively during the hydration reflecting the consumption of physically bound water by hydration reactions.

Keywords

cement / hydration kinetics / low field NMR / relaxation time

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Anming She, Wu Yao, Yongqi Wei. In-situ monitoring of hydration kinetics of cement pastes by low-field NMR. Journal of Wuhan University of Technology Materials Science Edition, 2010, 25(4): 692-695 DOI:10.1007/s11595-010-0072-5

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References

[1]

Langan B. W., Weng K., Ward M. A. Effect of Silica Fume and Fly Ash on Heat of Hydration of Portland Cement[J]. Cement and Concrete Research, 2002, 32(7): 1045-1051.

[2]

Sun Z., Thomas V., Shah Surendra P. Rheometric and Ultrasonic Investigations of Viscoelastic Properties of Fresh Portland Cement Pastes[J]. Cement and Concrete Research, 2006, 36(2): 278-287.

[3]

Kurtis K. E., Rodrigues F. A. Early Age Hydration of Rice Hull Ash Cement Examined by Transmission Soft X-ray Microscopy[J]. Cement and Concrete Research, 2003, 33(4): 509-515.

[4]

Xiao L., Li Z. Early-age Hydration of Fresh Concrete Monitored by Non-contact Electrical Resistivity Measurement[J]. Cement and Concrete Research, 2008, 38(3): 312-319.

[5]

Peterson Vanessa K., Neumann Dan A., Livingston R. A. Hydration of Cement: The Application of Quasielastic and Inelastic Neutron Scattering[C]. Physica B: Condensed MatterProceedings of the Eighth International Conference on Neutron Scattering, 2006, 385–386(Part1): 481-486.

[6]

Nikolaus N. NMR Relaxometry Study of Cement Hydration in the Presence of Different Oxidic Fine Fraction Materials[C]. Solid State Nuclear Magnetic Resonance 31st Congress Ampere, Magnetic Resonance and Related Phenomena, 2004, 25(1–3): 80-83.

[7]

Bohris A. J., Goerke U., Mcdonald P. J., . A broad Line NMR and MRI Study of Water and Water Transport in Portland Cement Pastes[J]. Magnetic Resonance Imaging, 1998, 16(5–6): 455-461.

[8]

Wang Z., Xiao L., Liu T. Application of Multi-exponential Inversion Method to NMR Measurements [J]. Science in China Series G, 2004, 47(3): 265-276.

[9]

Brownstein K. R., Tarr T. C. Importance of Classical Diffusion in NMR Studies of Water in Biological Cells[J]. Physical Review A, 1979, 19(6): 2446-2453.

[10]

Faure Pamela F., Stephane R. Proton NMR Relaxation as a Probe for Setting Cement Pastes[J]. Magnetic Resonance Imaging, 2008, 26(8): 1183-1196.

[11]

Sidney Mindness J. Francis Young David [M], 2003 Concrete 2nd ed. Upper Saddle River, NJ Prentice Hall

[12]

Netzel D. A., Turner J. P. 1H NMR Study of the Hydration Kinetics of Coal Fly Ash and Spent Oil Shale[J]. Fuel, 2001, 80(3): 303-312.

[13]

Nestle N., Zimmermann C., Dakkouri M., . Transient High Concentrations of Chain Anions in Hydrating Cement — indications from Proton Spin Relaxation Measurements [J]. Journal of Physics D-Applied Physics, 2002, 35(2): 166-171.

[14]

Mehta P. K., Monteiro J. M. Concrete: Microstructure, Properties, and Materials [M], 2006 3rd ed. New York McGraw Hill Companies

[15]

Prince W., Edwards-Lajnef M., Aitcin P. C. Interaction between Ettringite and a Polynaphthalene Sulfonate Super-Plasticizer in a Cementitious Paste[J]. Cement and Concrete Research, 2002, 32(1): 79-85.

[16]

Johann P., Panagiotis C., Christian H. New Model Describing Distribution of Adsorbed Superplasticizer on the Surface of Hydrating Cement Grain[J]. Journal of Building Materials, 2007, 10(1): 7-13.

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