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1

Silica: The amazing gel, an essential mineral for radiant health recovery and rejuvenation. Burnaby, B.C: Alive Books, 1993.

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2

Scott, Raymond P. W. Silica gel and bonded phases: Their production, properties, and use in LC. Chichester: Wiley, 1993.

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3

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

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4

Bansal, Narottam P. Influence of several metal ions on the gelation activation energy of silicon tetraethoxide. [Washington, DC]: National Aeronautics and Space Administration, 1989.

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5

Menaa, Bouzid. Bioencapsulation in silica-based nanoporous sol-gel glasses. New York: Nova Science Publishers, 2010.

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6

Hench, L. L. Sol-gel silica: Properties, processing, and technology transfer. Westwood, N.J., U.S.A: Noyes Publications, 1998.

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7

Bouzid, Menaa, ed. Bioencapsulation in silica-based nanoporous sol-gel glasses. Hauppauge, N.Y: Nova Science Publishers, 2009.

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8

Royal Society of Chemistry (Great Britain), ed. Silica-based materials for advanced chemical applications. Cambridge: RSC Pub., 2009.

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9

V, Mchedlishvili B., and Saminskiĭ E. M, eds. Khromatografii͡a︡ biopolimerov na makroporistykh kremnezemakh. Leningrad: Izd-vo "Nauka," Leningradskoe otd-nie, 1986.

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10

Ellis, David J. A study in composition and reaction conditions related to alkali-silica gel expansion. [London]: Queen Mary College, 1987.

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11

1941-, Boulos Edward N., Platts Dennis R, and International Conference on Processing Materials for Properties (1st : 1993 : Honolulu, Hawaii), eds. Glass and optical materials II: Optoelectronics, thin film coating, sol-gel processing. Westerville, Ohio: American Ceramic Society, 1994.

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12

Bowers, Keith Henry. A study of the mechanisms of gel formation with particular reference to the alkali-silica reaction. [London]: Queen Mary College, 1988.

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13

Karim, Salma. Synthesis and study of metal-ion capacities of 8-hydroxyquinoline immobilised on different grades of silica gel. Uxbridge: Brunel University, 1988.

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14

United States. National Aeronautics and Space Administration., ed. Final report on the development of methodologies and solvent systems to replace CFC-113 in the validation of large-scale spacecraft hardware: NASA research grant award no. NAG10-0169. [Washington, DC: National Aeronautics and Space Administration, 1996.

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15

United States. Environmental Protection Agency. Office of Science and Technology. Engineering and Analysis Division., ed. Method 1664: N-hexane extractable material (HEM) and silica gel treated n-hexane extractable material (SGT-HEM) by extraction and gravimetry (oil and grease and total petroleum hydrocarbons). Washington, DC: U.S. Environmental Protection Agency, Office of Water, Engineering and Analysis Division, 1995.

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16

United States. Environmental Protection Agency. Office of Science and Technology. Engineering and Analysis Division, ed. Method 1664: N-hexane extractable material (HEM) and silica gel treated n-hexane extractable material (SGT-HEM) by extraction and gravimetry (oil and grease and total petroleum hydrocarbons). Washington, DC: U.S. Environmental Protection Agency, Office of Water, Engineering and Analysis Division, 1995.

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17

Edwards, Paula Jane. Investigation of a positive correlation between the efficiency of water uptake by silica gel and relative humidity values over a seven week period. Northampton: Nene College, 1995.

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18

Symposium B on Clays and Hydrosilicate Gels in Nuclear Fields (1991 Strasbourg, France). Clays and hydrosilicate gels in nuclear fields: Proceedings of Symposium B on Clays and Hydrosilicate Gels in Nuclear Fields of the 1991 E-MRS Fall Conference, Strasbourg, France, November 4-7, 1991. Amsterdam: North-Holland, 1992.

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19

United States. Environmental Protection Agency. Office of Science and Technology. Engineering and Analysis Division., ed. Method 1664: N-hexane extractable material (HEM) and silica gel treated n-hexane extractable material (SGT-HEM) by extraction and gravimetry (oil and grease and total petroleum hydrocarbons). Washington, DC: U.S. Environmental Protection Agency, Office of Water, Engineering and Analysis Division, 1995.

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20

United States. Environmental Protection Agency. Office of Science and Technology. Engineering and Analysis Division, ed. Method 1664: N-hexane extractable material (HEM) and silica gel treated n-hexane extractable material (SGT-HEM) by extraction and gravimetry (oil and grease and total petroleum hydrocarbons). Washington, DC: U.S. Environmental Protection Agency, Office of Water, Engineering and Analysis Division, 1995.

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21

United States. Environmental Protection Agency. Office of Science and Technology. Engineering and Analysis Division, ed. Method 1664: N-hexane extractable material (HEM) and silica gel treated n-hexane extractable material (SGT-HEM) by extraction and gravimetry (oil and grease and total petroleum hydrocarbons). Washington, DC: U.S. Environmental Protection Agency, Office of Water, Engineering and Analysis Division, 1995.

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22

United States. Environmental Protection Agency. Office of Science and Technology. Engineering and Analysis Division., ed. Method 1664: N-hexane extractable material (HEM) and silica gel treated n-hexane extractable material (SGT-HEM) by extraction and gravimetry (oil and grease and total petroleum hydrocarbons). Washington, DC: U.S. Environmental Protection Agency, Office of Water, Engineering and Analysis Division, 1995.

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23

DynCorp, ed. Method 1664, revision A: N-hexane extractable material (HEM; oil and grease) and silica gel treated n-hexane extractable material (SGT-HEM; non-polar material) by extraction and gravimetry. Washington, DC: U.S. Environmental Protection Agency, Office of Water, 1999.

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24

Mahmud, Heri Risnayadi. Mengkaji kemungkinan penggunaan model desikator silika gel dengan sirkulasi udara pada desikasi madu: Laporan penelitian. [Jatinangor]: Fakultas Pertanian, Universitas Padjadjaran, 1996.

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25

Sumanti, Debby M. Pengaruh imbangan madu dengan silika gel sebagai desikan terhadap laju desikasi dan karakteristik madu: Laporan penelitian. [Jatinangor]: Fakultas Pertanian, Universitas Padjadjaran, 1997.

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26

Herudiyanto, Marleen. Pengaruh silika gel, kapur tohor, dan gips terhadap laju desikasi dan karakteristik empat jenis madu: Laporan penelitian. [Jatinangor]: Fakultas Pertanian, Universitas Padjadjaran, 1997.

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27

Cheng, Yeu-Chyi. Titania-silica gel-glasses. 1991.

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28

Kaufmann, Klaus N. Silica: The Forgotten Nutrient. 2nd ed. Alive Books, 1995.

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29

Kaufmann, Klaus N. Silica: The Forgotten Nutrient. Alive Books, 1990.

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30

Kaufmann, Klaus N. Silica: The Forgotten Nutrient. 2nd ed. Alive Books, 1990.

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31

Kaufmann, Klaus N. Silicium - Heilung durch Ursubstanz. Helfer Verlag E. Schwabe GmbH, 1997.

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32

Kaufmann, Klaus N. Silica: The Amazing Gel : An Essential Mineral for Radiant Health Recovery and Rejuvenation (Kaufmann Foods) (Kaufmann Foods). Alive Books, 1995.

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33

Williams, Siân Lowri. Photochemistry and photophysics of anthracenes on silica gel. 1996.

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34

Parker, Philip M. The 2007-2012 World Outlook for Silica Gel. ICON Group International, Inc., 2006.

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35

Hench, Larry L. Sol-Gel Silica: Properties, Processing and Technology Transfer. Elsevier Science & Technology Books, 1998.

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36

The 2006-2011 World Outlook for Silica Gel. Icon Group International, Inc., 2005.

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37

Piccaluga, G., A. Corrias, G. Ennas, and A. Musinu. Sol-Gel Preparation and Characterization of Metal-Silica and Metal Oxide-Silica Nanocomposites. Trans Tech Publications, Limited, 2000.

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38

Vasconcelos, Wander Luiz. Topological evolution and properties of sol-gel silica monoliths. 1989.

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39

Chia, Taipau. Laser densification of gel-silica galsses [sic] and optical applications. 1992.

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40

Sol-Gel Preparation and Characterization of Metal-Silica and Metal Oxide-Silica Nanocomposites (Materials Science Foundations). Trans Tech Pubn, 2000.

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41

Parker, Philip M. The 2007-2012 World Outlook for Chemical Catalytic Preparations Excluding Silica Gel Catalyst. ICON Group International, Inc., 2006.

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42

Kunetz, James Michael. The chemical behavior of heavy metal salt solutions within porous sol-gel silica. 1995.

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43

International Conference on Processing Materials for Properties 1993 (Corporate Author), Edward N. Boulos (Editor), and Dennis R. Platts (Editor), eds. Glass and Optical Materials II: Optoelectronics, Thin Film Coating Sol-Gel Processing. American Ceramic Society, 1997.

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44

Wright, John D., and Nico A. J. M. Sommerdijk. Sol-Gel Materials: Chemistry and Applications. Taylor & Francis Group, 2018.

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45

Wright, John D., and Nico A. J. M. Sommerdijk. Sol-Gel Materials: Chemistry and Applications. Taylor & Francis Group, 2018.

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46

Wright, John D., and Nico A. J. M. Sommerdijk. Sol-Gel Materials: Chemistry and Applications. Taylor & Francis Group, 2018.

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47

Wright, John D., and Nico A. J. M. Sommerdijk. Sol-Gel Materials: Chemistry and Applications. Taylor & Francis Group, 2018.

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48

Sol-Gel Materials: Chemistry and Applications (Advanced Chemistry Texts). CRC, 2000.

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49

Method 1664: N-hexane extractable material (HEM) and silica gel treated n-hexane extractable material (SGT-HEM) by extraction and gravimetry (oil and grease and total petroleum hydrocarbons). Washington, DC: U.S. Environmental Protection Agency, Office of Water, Engineering and Analysis Division, 1995.

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50

Segal, David. The Preparation of Materials. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198804079.003.0008.

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Chapter 8 covers aspects of materials preparation. It stresses that the availability of high-purity silicon was essential for the semiconductor industry as were high-purity thin films. Availability of critical materials is mentioned. Specific techniques that are mentioned include the polymerase chain reaction, ion implantation, chemical vapour deposition, plasma spraying and sol-gel processing. Polymer synthesis is also described.
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