Mechanism of Waste Glass Powder in Concrete and Its ASR Risk

LI Li-hua, REN Zeng-le, YANG Jun-chao, LIU Shu-hua

Journal of Changjiang River Scientific Research Institute ›› 2016, Vol. 33 ›› Issue (2) : 94-99.

PDF(1565 KB)
PDF(1565 KB)
Journal of Changjiang River Scientific Research Institute ›› 2016, Vol. 33 ›› Issue (2) : 94-99. DOI: 10.11988/ckyyb.20140871
HYDRAULIC STRUCTURE AND MATERIAL

Mechanism of Waste Glass Powder in Concrete and Its ASR Risk

  • LI Li-hua1, REN Zeng-le1, YANG Jun-chao1, LIU Shu-hua2
Author information +
History +

Abstract

Waste materials are widely used in civil engineering, and waste glass powder can be used as a supplementary cementitious material, which accords with the requirement of sustainable development of building materials. On the basis of a large number of literatures, the feasibility of adding waste glass in concrete is researched. Results show that, as a new potential auxiliary cementitious material, glass powder not only has some special effect on the hydration and hardening of composite cementitious material, but aslo has risk of alkali-silica reaction (ASR). As there is plenty of amorphous silicon dioxide in glass, alkali-aggregate reaction easily takes place, but glass powder can be used as active supplementary cementitious material. Furthermore, we present that waste glass which is grinded into powder can be used as auxiliary cementitious material and discuss the effect of glass powder on the hydration and hardening of composite cementitious material and its ASR risk. Grinding waste glass into powder not only reduces risk of alkali-aggregate reaction, but also promotes fly ash action of glass and improves performances of concrete.

Key words

waste glass powder / concrete / cementitious material / action mechanism / ASR

Cite this article

Download Citations
LI Li-hua, REN Zeng-le, YANG Jun-chao, LIU Shu-hua. Mechanism of Waste Glass Powder in Concrete and Its ASR Risk[J]. Journal of Changjiang River Scientific Research Institute. 2016, 33(2): 94-99 https://doi.org/10.11988/ckyyb.20140871

References

[1] TOPCU I B, CANBAZ M. Properties of Concrete Containing Waste Glass [J]. Cement and Concrete Research, 2004,34(2):267-274.
[2] Environmental Protection Agency. Municipal Solid Waste Generation, Recycling and Disposal in the United States: Facts and Figures for 2005 [R]. Washington,USA: Environmental Protection Agency (EPA), 2006.
[3] Entec Consulting Limited. Report on Ontario Blue Box Material Recovery Facilities [R]. Hertfordshire, UK:Entec Consulting Limited, 2007.
[4] SIDDIQUE R. Waste Materials and By-products in Concrete [M]. New York: Heidelberg, 2008.
[5] 曲 超, 高志扬, 刘数华. 废弃玻璃粉在活性粉末混凝土中的应用研究[J]. 混凝土. 2011,(8), 82-84.
[6] LAM C S, POON C S, CHAN D. Enhancing the Performance of Pre-cast Concrete Blocks by Incorporating Waste Glass–ASR Consideration [J]. Cement & Concrete Composites, 2007,29 (8):616-625.
[7] SHI C J, WU Y Z, RIEFLER C, et al. Characteristics and Pozzolanic Reactivity of Glass Powders [J]. Cement and Concrete Research, 2005,35(5):987-993.
[8] SHI C J, KEREN Z. A Review on the Use of Waste Glasses in the Production of Cement and Concrete Resources [J]. Resources Conservation & Recycling, 2007,52(2):234-247.
[9] MALHOTRA V M, MEHTA P K. Pozzolanic and Cementitious Materials [M]. New York: Gordon and Breach Publishers,1996.
[10]FEDERICO L M, CHIDIAC S E. Waste glass as A Supplementary Cementitious Material in Concrete - Critical Review of Treatment Methods [J]. Cement & Concrete Composites,2009, 31(8):606-610.
[11]AHMAD S, AIMIN X. Performance of Glass Powder as A Pozzolanic Material in Concrete: A Field Trial on Concrete Slabs [J]. Cement and Concrete Research,2006, 36(3):457-468.
[12]JOHNSTON C D. Waste Glass as Coarse Aggregate for Concrete [J]. Astm Journal of Testing & Evaluation, 1974,2(5):344-350.
[13]PARK S B, LEE B C, KIM J H. Studies on Mechanical Properties of Concrete Containing Waste Glass Aggregate[J]. Cement & Concrete Research, 2004, 34(12):2181-2189.
[14]MEYER C, EGOSI N, ANDELA C. Concrete with Waste Glass as Aggregate [C]∥American Society of Civil Engineers. Proceedings of the International Symposium Concrete Technology Unit of ASCE, Scotland, UK, March 19-20, 2001:37-45.
[15]SANGHA C M, ALANI A M, WALDEN P J. Relative Strength of Green Glass Cullet Concrete [J]. Magazine of Concrete Research, 2004, 56(5):293-297.
[16]JIN W, MEYER C, BAXTER S. Glascrete: Concrete with Glass Aggregates [J]. Aci Materials Journal, 2000, 97:208-213.
[17]BAANT Z P, ZI G, MEYER C. Fracture Mechanics of ASR in Concretes with Waste Glass Particles of Different Sizes [J]. Journal of Engineering Mechanics, 2000, 126(3):226-232.
[18]赵 晖, 孙 伟. 废弃阴极射线管玻璃砂对砂浆性能的影响[J]. 硅酸盐学报, 2012 ,40(2):240-246.
[19]SHAYAN A, XU A. Value-added Utilization of Waste Glass in Concrete [J]. Cement and Concrete Research, 2004 ,34(1): 81-89.
[20]JIN W. Alkali-silica Reaction in Concrete with Glass Aggregate: A Chemo-physico-mechanical Approach [D]. New York: Columbia University. 1998.
[21]MCCOY W J, CALDWELL A G. New Approach to Inhibiting Alkali-aggregate Expansion [J]. Journal of American Concrete Institute, 1951,22(9): 693-706.
[22]CHIDIAC S E, FEDERICO L M. Effects of Waste Glass Additions on the Properties and Durability of Fired Clay Brick [J]. Canadian Journal of Civil Engineering, 2007,34(11): 1458-1466.
[23]KOSMATKA S H, KERKHOFF B, PANARESE W C, et al. Design and Control of Concrete Mixtures[C]. Ottawa,Canada: Cement Association of Canada, 2002.
[24]PAPADAKIS V G, PEDERSEN E J, LINDGREEN H. An AFM-SEM Investigation of the Effect of Silica Fume and Fly Ash on Cement Paste Microstructure [J]. Journal of Materials Science, 1999, 34(4):683-690.
[25]MEYER C, BAXTER S, JIN W. Potential of Waste Glass for Concrete Masonry Blocks [C]∥American Society of Civil Engineers. Proceedings of the ASCE Fourth Materials Engineering Conference, Washington, USA, November 10-14,1996: 666-673.
[26]SOBOLEV K, TURKER P, SOBOLEVA S, et al. Utilization of Waste Glass in ECO Cement: Strength Properties and Microstructural Observations [J]. Waste Management, 2007, 27(7):971–976.
[27]SCHWARZ N, CAM H, NEITHALATH N. Influence of A Fine Glass Powder on the Durability Characteristics of Concrete and Its Comparison to Fly Ash [J]. Cement & Concrete Composites,2008 ,30(6):486-496.
[28]IDIR R, CYR M, TAGNIT-HAMOU A. Pozzolanic Properties of Fine and Coarse Color-mixed Glass Cullet [J]. Cement & Concrete Composites, 2011, 33(1):19-29.
[29]IDIR R, CYR M, TAGNIT-HAMOU A. Use of Fine Glass as ASR Inhibitor in Glass Aggregate Mortars [J]. Construction and Building Materials, 2010,24(7):1309-1312.
[30]MEYER C, BAXTER S. Use of Recycled Glass for Concrete Masonry Blocks Final Report 97-15 [R]. Albany, New York: New York State Energy Research and Development Authority, 1997.
[31]SHI C, WU Y, SHAO Y, et al. Alkali-aggregate Reaction of Concrete Containing Ground Glass Powder [C]∥ Nanjing University of Science and Technology. Proceedings of the 12th International Conference on AAR in Concrete, 2004, October 15-19 :789-795.
[32]LALDJI S, TAGNIT-HAMOU A. Glass Frit for Concrete Structures: A New, Alternative Cementitious Material [J]. Canadian Journal of Civil Engineering, 2007, 34(7): 793-802.
[33]SCHWARZ N, NEITHALATH N. Influence of A Fine Glass Powder on Cement Hydration: Comparison to Fly Ash and Modeling the Degree of Hydration [J]. Cement and Concrete Research, 2008, 38(4): 429-436.
[34]TERRO M J. Properties of Concrete Made with Recycled Crushed Glass at Elevated Temperatures [J]. Building & Environment, 2006,41(5): 633-639.
[35]CHEN C, HUANG R, WU J, et al. Waste E-glass Particles Used in Cementitious Mixtures[J]. Cement and Concrete Research, 2006,36(3): 449-456.
[36]DYER T D, DHIR R K. Chemical Reactions of Glass Cullet Used as Cement Component [J]. Journal of Materials in Civil Engineering, 2001,13(6): 412-417.
[37]杨 晶. 废玻璃微粉在再生混凝土中的辅助胶凝作用研究[D]. 昆明:昆明理工大学, 2010.
[38]柯国军, 柏纪平, 谭大维. 废玻璃用于水泥混凝土的研究进展[J].南华大学学报(自然科学版), 2010,24 (3): 96-102.
[39]WANG Z, SHI C J, SONG J M. Effect of Glass Powder on Chloride Ion Transport and Alkali-aggregate Reaction Expansion of Lightweight Aggregate Concrete [J]. Journal of Wuhan University of Technology (Materials Science Edition), 2009,24(2): 312-317.
[40]刘数华, 阎培渝. 石灰石粉对水泥浆体填充效应和砂浆孔结构的影响[J]. 硅酸盐学报. 2008, 36 (1): 69-72.
[41] 刘数华, 王 军. 石灰石粉对砂浆孔结构的影响[J]. 建筑材料学报. 2011, 14 (4): 532-535.
[42]饶美娟,刘数华, 方坤河. 石灰石粉对水泥基材料水化动力学的影响[J]. 建筑材料学报. 2009,12 (6):734-736.
[43]刘数华, 阎培渝. 石灰石粉在复合胶凝材料中的水化性能[J]. 硅酸盐学报. 2008, 36(10):1401-1405.
[44]LIU S H, YAN P Y. Effect of Limestone Powder on Microstructure of Concrete [J]. Journal of Wuhan University of Technology (Materials Science Edition), 2010, 25(2): 328-331.
[45]URHAN S. Alkali Silica and Pozzolanic Reactions in Concrete(Part 1): Interpretation of Published Results and An Hypothesis Concerning the Mechanism [J]. Cement and Concrete Research, 1987,17(1): 141-152.
[46]BUCHWALD A, KAPS C, HOHMANN M. Alkali-activated Binders and Pozzolan Cement Binders-compete Binder Reaction or Two Sides of the Same Story? [C]∥Concrete Society of Southern Africa. Proceedings of the 11th International Congress on the Chemistry of Cement (ICCC), Durban, South Africa, May 11-16, 2003: 1238-1246.
PDF(1565 KB)

Accesses

Citation

Detail

Sections
Recommended

/