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1

Association, Portland Cement. Soil-cement inspector's manual. 2nd ed. Skokie, Ill: Portland Cement Association, 1988.

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2

Association, Portland Cement. Soil-cement inspector's manual. Skokie, IL: Portland Cement Association, 2001.

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3

Perera, H. C. Stabilization of soil with cement. London: North East London Polytechnic, 1985.

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4

United States. Bureau of Reclamation. Denver Office, ed. Embankment dams: Soil-cement slope protection. Denver, Colo: U.S. Department of the Interior, Bureau of Reclamation, Denver Office, 1990.

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5

Bhatty, Javed I. Use of cement kiln dust in stabilizing clay soils. [Skokie, Ill.]: Portland Cement Association, 1996.

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6

Acchar, Wilson, and Sheyla K. J. Marques. Ecological Soil-Cement Bricks from Waste Materials. Cham: Springer International Publishing, 2016. http://dx.doi.org/10.1007/978-3-319-28920-5.

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7

Association, Portland Cement, ed. Soil-cement slope protection for embankments: Construction. Skokie, Ill: Portland Cement Association, 1988.

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8

Doboku Kenkyūjo (Japan). Gijutsu Suishin Honbu. Sekō Gijutsu Chīmu. Appugurēdo soiru (kairyōdo) o mochiita tsuchi kōzōbutsu ni kansuru kenkyū. Tsukuba-shi: Doboku Kenkyūjo, 2010.

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9

Mhango, Brian J. Semi-detailed soil and land capability survey of Chilanga Cement Limited, Shimabala Quarry-Area, Lusaka Province. [Chilanga, Zambia]: Soil Survey Unit, Research Branch, Mount Makulu Central Research Station, 1988.

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10

Rananand, Nibon. Performance of lateritic soil-cement roads in Thailand. Bangkok, Thailand: Dept. of Highways, Ministry of Communications, 1985.

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11

Ruenkrairergsa, Teeracharti. Stability of granitic soil mixed with asphalt cement. Bangkok, Thailand: Dept. of Highways, Ministry of Communications, 1985.

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12

Pieńkos, Kazimierz. Badania wpływu wybranych czynników warunkujących stabilizację cementem gruntowych dróg leśnych. Warszawa: Wydawn. SGGW, 1994.

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13

Jones, Chester W. Use of fly ash in soil-cement: Literature review. Denver, Colo: Geotechnical Branch, Division of Research and Laboratory Services, Engineering and Research Center, U.S. Dept. of the Interior, Bureau of Reclamation, 1986.

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14

Bruce, Donald A. An introduction to the deep soil mixing methods as used in geotechnical applications. McLean, VA: U.S. Dept. of Transportation, Federal Highway Administration, Research, Development, and Technology, Turner-Fairbank Highway Research Center, 2000.

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15

F, Rogers C. D., Glendinning S, Dixon N. Dr, and Institution of Civil Engineers (Great Britain). East Midlands Geotechnical Group., eds. Lime stabilisation: Proceedings of the seminar held at Loughborough University Civil & Building Engineering Department on 25 September, 1996. London: Thomas Telford, 1996.

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16

Ruenkrairergsa, Teeracharti. Proposed specifications for soil-cement base construction in Thailand. Bangkok, Thailand: Dept. of Highways, Ministry of Communications, 1985.

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17

Farrar, Jeffrey A. Heat of neutralization method for determining cement content in soilcrete: Jackson Lake Dam modification. Denver, Colo: U.S. Dept. of the Interior, Bureau of Reclamation, Geotechnical Services Branch, Research and Laboratory Services Division, Denver Office, 1989.

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18

Hossain, Zakaria. Environment-friendly cement composite (EFFC) for soil reinforcement and earth slope protection. Hauppauge, NY, USA: Nova Science Publishers, 2009.

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19

Hossain, Zakaria. Environment-friendly cement composite (EFFC) for soil reinforcement and earth slope protection. Hauppauge, NY, USA: Nova Science Publishers, 2009.

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20

Gooding, Dominic Edward Maxwell. Improved processes for the production of soil-cement building blocks. [s.l.]: typescript, 1994.

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21

Casias, T. J. Soil laboratory compaction techniques applied to roller-compacted concrete. Denver, Colo: Geotechnical Services Branch, Research and Laboratory Services Division, Denver Office, U.S. Dept. of the Interior, Bureau of Reclamation, 1989.

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22

Association, Portland Cement, ed. Soil-cement for facing slopes and lining channels, reservoirs and lagoons. Skokie, Ill: Portland Cement Association, 1986.

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23

Congress, Indian Roads. Guidelines for soil and granular material stabilization using Cement, Lime & Fly Ash. New Delhi: Indian Road Congress, 2010.

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24

Lay, Russell D. Frost heave of a Montana silt treated with reduced cement contents. Provo, Utah: Brigham Young University, 2005.

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25

S, Adaska Wayne, ed. Controlled low-strength materials: Wayne S. Adaska, editor. Detroit, Mich: American Concrete Institute, 1994.

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26

Logan, T. J. Mine spoil reclamation with sewage sludge stabilized with cement kiln dust and flue gas desulfurization byproduct (N-viro soil process). S.l: s.n, 1993.

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27

Logan, T. J. Mine spoil reclamation with sewage sludge stabilized with cement kiln dust and flue gas desulfurization by product (N-viro soil process). S.l: s.n, 1992.

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28

Stark, Timothy D. Hyperbolic stress-strain parameters for structured/cemented silts. [Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1996.

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29

Soil-Cement Laboratory Handbook. Portland Cement Assn, 1992.

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30

Association, Portland Cement. Soil Cement Construction Handbook. Portland Cement Assn, 1995.

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31

Sherwood, P. T. Soil Stabilization With Cement and Lime. Stationery Office Books (TSO), 1994.

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32

Acchar, Wilson, and Sheyla K. J. Marques. Ecological Soil-Cement Bricks from Waste Materials. Springer London, Limited, 2016.

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33

Acchar, Wilson, and Sheyla K. J. Marques. Ecological Soil-Cement Bricks from Waste Materials. Springer, 2016.

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34

Guyer, J. Paul. Introduction to Soil Stabilization with Portland Cement. Independently Published, 2018.

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35

Lloyd N. (Lloyd Noble) 1895-1 Brown. Lacquer Cement Method of Making Soil Monoliths; B0795. Creative Media Partners, LLC, 2021.

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36

Guyer, J. Paul. Introduction to Soil Cement for Protection of Levees. Independently Published, 2017.

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37

Yim, C. W. A. Fracture characteristics of concretes and cement-stabilized soil. 1986.

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38

Environment-friendly cement composite (EFFC) for soil reinforcement and earth slope protection. Hauppauge, NY, USA: Nova Science Publishers, 2009.

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39

Fendukly, L. M. Dynamic loading of soil-cement for flexible pavement design. 1991.

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40

Innovations in Controlled Low-Strength Material (Flowable Fill). ASTM International, 2004.

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41

Ultrafine Cement In Pressure Grouting. American Society of Civil Engineers, 2010.

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42

Li, Mingdong, Junxia Liu, Jinxiang Yi, and Lingzhi Shan. Properties and Applications of Soil Improved by Cement and Eps Beads. CAYLEY NIELSON PRESS, INC., 2022.

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43

Geopolymers: Structure, processing, properties and industrial applications. Boca Raton, Fla: CRC, 2009.

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44

Suggested specifications for soil-cement slope protection for embankments (central-plant mixing method). Skokie, Ill: Portland Cement Association, 1986.

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45

Economic analysis of soil-cement base construction as compared to crushed rock base. Bangkok, Thailand: Dept. of Highways, Ministry of Communications, 1985.

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46

Pneumatic Flow Mixing Method. Taylor & Francis Group, 2020.

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47

Kitazume, Masaki. Pneumatic Flow Mixing Method. Taylor & Francis Group, 2016.

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48

Kitazume, Masaki. Pneumatic Flow Mixing Method. Taylor & Francis Group, 2016.

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49

Pneumatic Flow Mixing Method. Taylor & Francis Group, 2016.

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50

Hansen, Kenneth D. Erosion and abrasion resistance of soil-cement and roller-compacted concrete (PCA research and development bulletin). Portland Cement Association, 2002.

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