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1

Rashad, Alaa M. Silica Fume in Geopolymers. Cham: Springer Nature Switzerland, 2023. http://dx.doi.org/10.1007/978-3-031-33219-7.

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2

M, Malhotra V., ed. Condensed silica fume in concrete. Boca Raton, Fla: CRC Press, 1987.

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3

Whiting, D. Silica fume concrete for bridge decks. Washington, D.C: National Academy Press, 1998.

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4

V, Lisichkin G., ed. Modifit͡s︡irovannye kremnezemy v sorbt͡s︡ii, katalize i khromatografii. Moskva: "Khimii͡a︡", 1986.

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5

Boddy, Andrea M. The effect of product form and silica content of silica fume on its ability to control alkali-silica reaction. Ottawa: National Library of Canada, 2000.

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6

Pun, Pierre Che Ho. Influence of silica fume on chloride resistance of concrete. Ottawa: National Library of Canada, 1997.

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7

Elias, Wiliam Shila. Effects of silica fume on corrosion resistance of reinforced concrete. Ottawa: National Library of Canada = Bibliothèque nationale du Canada, 1991.

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8

Douglas, E. Compilation of abstracts of papers from recent international conferences and symposia on condensed silica fume in concrete. [Ottawa]: Energy, Mines, and Resources Canada, Canada Centre for Mineral and Energy Technology, 1988.

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9

Smith, Amanda J. Factors affecting the sulphate resistance of mortars containing slag and silica fume. Ottawa: National Library of Canada, 2002.

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10

Pashutinski, Igor. Mechanisms of improved sulphate resistance of concrete containing slag or silica fume. Ottawa: National Library of Canada, 1990.

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11

Nakassa, Ali S. The effects of silica fume pulverized fuel ash and superplasticizer on ferrocement. Manchester: UMIST, 1996.

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12

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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13

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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14

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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15

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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16

Smith, David R. Microporous fumed-silica insulation board as a candidate Standard Reference Material of thermal resistance. Boulder, Colo: U.S. Dept. of Commerce, National Bureau of Standards, 1988.

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17

Brooks, Eric W. Silica fume latex modified concrete bridge deck overlay: Tualatin River Bridge #1417N : final report. Salem, Or: Oregon Dept. of Transportation, Research Unit, 1997.

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18

International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (9th 2007 Warsaw, Poland). Ninth CANMET/ACI international conference on fly ash, silica fume, slag & natural pozzolans in concrete. Edited by Malhotra V. M, Canada Centre for Mineral and Energy Technology., and American Concrete Institute. Farmington Hills, Mich: American Concrete Institute, 2007.

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19

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Insitute of Standards and Technology, 1989.

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20

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Insitute of Standards and Technology, 1989.

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21

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Insitute of Standards and Technology, 1989.

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22

National Institute of Standards and Technology (U.S.), ed. Microporous fumed-silica insulation as a standard reference material of thermal resistance at high temperature. [Washington, D.C.]: U.S. Dept. of Commerce, National Institute of Standards and Technology, 1989.

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23

International, Conference on Fly Ash Silica Fume Slag and Natural Pozzolans in Concrete (7th 2001 Chennai India). Seventh CANMET/ACI International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete: [proceedings of the conference held July 22-27, 2001, in Chennai (Madras), India]. Farmington Hills, MI: American Concrete Institute, 2001.

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24

International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (6th 1998 Bangkok, Thailand). Fly ash, silica fume, slag & natural pozzolans in concrete: Proceedings, Sixth CANMET/ACI International Conference, Bangkok, Thailand, 1998. Edited by Malhotra V. M, Canada Centre for Mineral and Energy Technology., and American Concrete Institute. Farmington Hills, Mich: ACI International, 1998.

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25

International, Conference on Fly Ash Silica Fume Slag and Natural Pozzolans in Concrete (7th 2001 Madras India). Seventh CANMET/ACI International Conference on Fly Ash, Silica Fume, Slag and Natural Pozzolans in Concrete. Farmington Hills, Michigan: ACI International, 2001.

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26

International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (9th 2007 Las Vegas, Nev.). Ninth CANMET/ACI International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete. Edited by Malhotra V. M and American Concrete Institute. Farmington Hills, MI: American Concrete Institute, 2007.

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27

Malhotra, V. M. Pozzolanic and cementitious materials. Amsterdam, The Netherlands: Gordon and Breach, 1996.

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28

International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (4th 1991 Istanbul, Turkey). Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, fourth international conference, Istanbul, Turkey, May 1992. Edited by Malhotra V. M, Canada Centre for Mineral and Energy Technology., and American Concrete Institute. Detroit, Mich: American Concrete Institute, 1993.

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29

M, Malhotra V., and International Conference on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete (5th : 1995 : Milwaukee, Wis.), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, fifth international conference, Milwaukee, Wisconsin, USA, 1995. Detroit: American Concrete Institute, 1995.

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30

M, Malhotra V., American Concrete Institute, Canada Centre for Mineral and Energy Technology., Canadian Society for Civil Engineering., and International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, (2nd : 1986 : Madrid, Spain), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, second international conference, Madrid, Spain, 1986. Detroit: American Concrete Institute, 1986.

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31

M, Malhotra V., American Concrete Institute, Canada Centre for Mineraland Energy Technology., Norges tekniske hogskole, and International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, (3rd : 1989 : Trondheim, Norway), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, third international conference, Trondheim, Norway, 1989. Detroit: American Concrete Institute, 1989.

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32

M, Malhotra V., American Concrete Institute, Canada Centre for Mineral and Energy Technology., Norges tekniske hogskole, and International Conference on the Use of Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete, (3rd : 1989 : Trondheim, Norway), eds. Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings, third international conference, Trondheim, Norway, 1989. Detroit: American Concrete Institute, 1989.

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33

International, Conference on Fly Ash Silica Fume Slag and natural Pozzolans in Concrete (5th 1995 Milwaukee Wis ). Fly ash, silica fume, slag, and natural pozzolans in concrete: Proceedings fifth International Conference, Milwaukee, Wisconsin, USA, 1995. Detroit: American Concrete Institute, 1995.

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34

National Council for Cement and Building Materials (India), Cement Manufacturers' Association (India), and Construction Industry Development Council, eds. National Seminar on Performance Enhancement of Cements and Concretes by Use of Flyash, Slag, Silica Fume, and Chemical Admixtures, New Delhi, 15-17 January 1998: Proceedings. [New Delhi: The National Council, 1998.

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35

M, Malhotra V., Canada Centre for Mineral and Energy Technology., and American Concrete Institute, eds. Ninth CANMET/ACI International Conference on Recent Advances in Concrete Technology. Farmington Hills, Mich: American Concrete Institute, 2007.

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36

English, Joe. Predicting the compressive strength of high-performance silica fume concrete by Bayesian methods: Joint C-SHRP/Newfoundland Bayesian application. Ottawa: Canadian Strategic Highway Research Program, Transportation Association of Canada, 1995.

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37

Chan, Willy G. The use of rapid scan boltammetry to study the effects of adding silica fume and commercial corrosion inhibitors to cured cement paste containing embedded iron exposed. Ottawa: National Library of Canada, 1996.

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38

General Castings Co., Liberty Road Facility, Delaware, Ohio. Atlanta, Ga.?]: U.S. Department of Health and Human Services, Public Health Service, Centers for Disease Control and Prevention, National Institute for Occupational Safety and Health, 1992.

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39

Gahir, Jagdeep, and Samdish Abrol. Effect of Silica Fumes on Cement Concrete. Independently Published, 2018.

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40

Smedley, Julia, Finlay Dick, and Steven Sadhra. Chemical hazards. Oxford University Press, 2013. http://dx.doi.org/10.1093/med/9780199651627.003.0002.

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Abstract:
Chemical hazards: classification and labelling 42Chemical hazards, sampling and analysis methods 44Particles, fibres, fumes, and mistsCoal dust 49Cotton dust 50Flour dust 51Grain dust 52Wood dust 53Crystalline silica (quartz) 54Asbestos 55Machine-made mineral fibre 56Diesel engine exhaust emissions ...
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41

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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42

Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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43

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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44

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2018.

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45

Malhotra, V. M., V. S. Ramachandran, R. F. Feldman, and Pierre-Claude Aïtcin. Condensed Silica Fume in Concrete. CRC Press, 2018. http://dx.doi.org/10.1201/9781351070843.

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46

Malhotra, V. M. Condensed Silica Fume in Concrete. Taylor & Francis Group, 2017.

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47

McGrath, Patrick. Internal self-dessication of silica fume concrete. 1989.

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48

Al-Eesa, Azmi Sami Said. Silica fume concrete in hot and temperate environments. 1990.

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49

Shehata, Medhat H. The effects of fly ash and silica fume on alkali silica reaction in concrete. 2001.

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50

Condensed Silica Fume in Concrete (Fip State of Art Report). American Society of Civil Engineers, 1988.

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