A Novel Way to Change Color of Allphatle Sulfonated Resin

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Abstract:

The color of allphatle sulfonated acetone-formaldehyde resin has been changed by a novel way of mixing with blue and green dye. The UV spectroscopy and colorimeter were used to characterize the color change. And the water reducing performance of the resin was investigated. The results indicated that the ratio of SAF water reducer to blue dye was 10:5, and that to green dye was 10:4, the color of the SAF water reducer can be efficiently changed. The fluidity of cement paste of SAF water reducer added the blue dye was improved, and the water-reducing rate was almost not influenced by addition of dyes.

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215-219

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April 2012

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© 2012 Trans Tech Publications Ltd. All Rights Reserved

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[1] C Ruan. Concrete admixture and engineering application. JiangXi: JiangXi Sci. and Tech. Press. 2008, 140-202.

Google Scholar

[2] X Zhang. Synthesis and the effects of water-soluble sulfonated aceton- formaldehyde resin on the properties of concrete. Nanjing: Master dissertation of Nanjing University of Technology. 2003, 9.

Google Scholar

[3] M Pei, Y Yang, X Zhang, et al. Synthesis and the effects of water-soluble sulfonated acetone-formaldehyde resin on the properties of concrete. Cement and concrete research. 34(2004) 1417–1420.

DOI: 10.1016/j.cemconres.2004.01.012

Google Scholar

[4] E Zhang. Study on synthesis and applied performances of aliphatic sulphonated superplasticizer. KunMing: Master dissertation of Kunming University of Science and Technology. (2009).

Google Scholar

[5] Z Zhang, D Yang, C Yi, X Qiu. Effect of synthesizing technology of sulfonated acetone formaldehyde polycondensate on its dispersing performance. New Building Materials. 7(2009)79-82.

Google Scholar

[6] H Zhao, W Fu, Y Wang, K Li. Synthesis of aliphatic superplasticizer and its dispersion properties study. New Building Materials. 9(2005) 4-7.

Google Scholar

[7] Y Wang, X Fu. Aliphatic superplasticizer synthetic process. Gansu Sci. Tech. 24(2008)69-71.

Google Scholar

[8] C Miu. The high performance concrete admixtures. Beijing Chemical Industry Press. 2008, 2-14.

Google Scholar

[9] Z Luo, M He, D Wu, et al. A method of using lignosulfonate to modify aliphatic superplasticizer and its preparation. Chinese Invent Patent, CN101665337A.

Google Scholar

[10] G Chen. A method preparation of using dilute black liquor to modify and graft the concrete aliphatic superplasticizer of carbonyl group. Chinese Invent Patent, CN101234865- A.

Google Scholar

[11] A. A. M Mahmoud, M.S. H Shehab, A. S El-Dieb. Concrete mixtures incorporating synthesized sulfonated acetophenone-formaldehyde resin as superplasticizer. Cement & Concrete Composites. 32 (2010)392-397.

DOI: 10.1016/j.cemconcomp.2010.02.005

Google Scholar

[12] H Guo, Q Liu, Z Wang, S Cui, P Yang. Analysis on Structure and Chromogenic group of Sulfonated Acetone–formaldehyde Resin. Concrete. Accepted.

Google Scholar