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Glass Melting Technology: A Technical and Economic ... - OSTI

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Wagnerova, S., S. Kasa, P. J<strong>and</strong>acek, <strong>and</strong> F. Paur, “Influence of Intensifying Means upon Technological<br />

Characteristics of <strong>Glass</strong> <strong>Melting</strong> Furnaces,” Ceram.–Silik., 44 [1] 20–25 (2000).<br />

Wang, J., <strong>and</strong> M. G. Carvalho, “Model-Based Study of S<strong>and</strong> Grain Dissolution in Industrial <strong>Glass</strong> Furnaces,” Proc.<br />

Int. Congr. <strong>Glass</strong>, 18th, 735–740 (1998).<br />

Wang, M. C., J. H. Liaw, <strong>and</strong> N. C. Wu, “Blast Furnace Slag as a Raw Material for <strong>Glass</strong> <strong>Melting</strong>,” <strong>Glass</strong> Technol.,<br />

30 [1] 29 (1989).<br />

Warburg Dillion Reed, “U.S. Construction <strong>and</strong> Building Products Analyzer,” Security Analysts’ Report, January<br />

2000.<br />

Warren, G. A., “On Electric <strong>Melting</strong>,” Glastek. Tidskr., 38 [1] 9–16 (1983).<br />

Weinberg, M. C., “Fining of <strong>Glass</strong>es: Present Problems <strong>and</strong> Speculations of Things to Come,” J. Non-Cryst. Solids,<br />

87 [3] 376–386 (1986).<br />

Weiser, S. M., “Fine-Grind Cullet <strong>Technology</strong>. Pt. 2. Results of Plant Production Trials Using Fine-Grind Cullet,”<br />

Ceram. Eng. Sci. Proc., 16 [2] 101–104 (1995).<br />

Weissart, H. W., “Preheating of Raw Material for <strong>Glass</strong> Furnaces,” <strong>Glass</strong> Technol, 30 [6] 201–202 (1989).<br />

Weyl, W. A., Colored <strong>Glass</strong>es. Society of <strong>Glass</strong> <strong>Technology</strong>, Sheffield, Engl<strong>and</strong>, 1951.<br />

Weyl, W., A., “Increasing the Rate of Homogenizing <strong>Glass</strong>es,” J. Can. Ceram. Soc., 1973 [42] 37–43 (1973).<br />

Wiedmann, U., “<strong>Glass</strong>chmelzofen,” European Patent 0,306,657 (8 September 1987).<br />

Wilcox, D. L., “New Concept for Heat Recovery,” Am. Ceram. Soc.Bull, 38, 24 (1959).<br />

Windle, G. V., “Full-scale Evaluation of a Producer Gas-fired <strong>Glass</strong> Furnace,” <strong>Glass</strong> Technol., 25 [2] 66–71 (1984).<br />

Wishnick, D., “The Future of <strong>Glass</strong> <strong>Melting</strong>,” <strong>Glass</strong> Int., 24 [3] 23–24 (2001).<br />

Wood, R. P., “Improvement in <strong>Glass</strong> <strong>Melting</strong> Efficiency,” <strong>Glass</strong> Technol., 22 [2] 79–90 (1981).<br />

Woolley, F. E., “<strong>Melting</strong>/Fining”; pp. 386–393 in Ceramics <strong>and</strong> <strong>Glass</strong>es, Engineered Materials H<strong>and</strong>book, Vol. 4.<br />

ed., S. J. Schneider. ASM International, Materials Park, Ohio, 1991.<br />

Wright, G., “Opportunities for Cost Reduction <strong>and</strong> Improved Efficiency,” <strong>Glass</strong> (London), 61 [1] 13–14, 16 (1984).<br />

Wu, X., <strong>and</strong> R. Viskanta, “Modeling of Heat Transfer in the <strong>Melting</strong> of a [Preheated <strong>and</strong> Unheated] <strong>Glass</strong> Batch,” J.<br />

Non-Cryst. Solids, 80 [1-3] 613–622 (1986).<br />

Wu, Y., <strong>and</strong> A. R. Cooper, “Batch <strong>and</strong> Cullet Preheating for Energy Savings <strong>and</strong> Removal of Air Pollutants,”<br />

Ceram. Eng. Sci. Proc. 13 [3-4] 91–103 (1992).<br />

Wu, Y., <strong>and</strong> A. R. Cooper, “Batch <strong>and</strong> Cullet Preheating Can Save Energy,” <strong>Glass</strong> Ind, 73 [8] 10–13 (1992).<br />

Wu, Y., <strong>and</strong> A. R. Cooper, “Thermodynamics <strong>and</strong> Kinetics of Batch <strong>and</strong> Cullet Preheat for Energy Savings <strong>and</strong><br />

Removal of Air Pollutants,” Trans. Indian Ceram. Soc., 50 [6] 145–150 (1991).<br />

Yamamoto, J., “Pelletizing <strong>Technology</strong> of <strong>Glass</strong> Batch,” Int. Congr. <strong>Glass</strong>, 10th, 3, 1–4 (1974).<br />

Yi, J.J.L., <strong>and</strong> P. R. Strutt, “<strong>Glass</strong> Formation by Laser <strong>Melting</strong>,” pp. 491–499 in Advances in the Fusion of <strong>Glass</strong>,<br />

ed., D. F. Bickford. American Ceramic Society, Westervillle, Ohio, 1988.<br />

Yoshikawa, H., <strong>and</strong> Y. Kawase, “Significance or Redox Reactions in <strong>Glass</strong> Refining Processes,” Glastech. Ber.<br />

<strong>Glass</strong> Sci. Technol., 70 [2] 31–40 (1997).<br />

Young, D. A., “Furnace Gains Efficiency by Recapturing Waste Heat,” R&D (Cahners), 26 [3] 86 (1984).<br />

Zaliznyak, D. V., M. Y. Firer, V. V. Konovalov, V. I. Chechetkin, <strong>and</strong> V. G. Dunaev, “The Effect of Thermal<br />

Preparation of the Raw Mix in <strong>Glass</strong> Fusion,” <strong>Glass</strong> Ceram. (Engl. Transl.), 16 [10] 550–556 (1959).<br />

Zhilin, A. A., A. N. Zamyatin, <strong>and</strong> V. K. Shiff, “Mathematical Modelling of <strong>Glass</strong> Melt Heat Exchange in a<br />

Cylindrical Induction Furnace,” <strong>Glass</strong> Ceram. (Engl. Transl.), 51 [3] 122–127 (1994).<br />

Zhiqiang, Y., <strong>and</strong> Z. Zhihao, “Basic Flow Pattern <strong>and</strong> Its Variation in Different Types of <strong>Glass</strong> Tank Furnaces,”<br />

Glastech. Ber. <strong>Glass</strong> Sci. Technol., 70 [6] 165–172 (1997).<br />

Zippe, B.-H., “<strong>Economic</strong>s of Cullet Preheating,” <strong>Glass</strong> Int., 1992 [June] 8–9 (1992).<br />

Zippe, B.-H., “Reliable Batch <strong>and</strong> Cullet Preheater for <strong>Glass</strong> Furnaces,” <strong>Glass</strong> Technol, 35 [2] 58–60 (1994).<br />

Zippe, B.-H., “Reliable Cullet Preheater for <strong>Glass</strong> Furnaces,” Ceram. Eng. Sci. Proc., 12 [3-4] 550–555 (1991).<br />

Zippe, B. H., “Pelletisation of <strong>Glass</strong> Batch,” <strong>Glass</strong> Int., 1982 [December] 25 (1982).<br />

Zippe, B. H., “Pelletizing Raw Materials for Improved <strong>Glass</strong> Manufacture,” <strong>Glass</strong> (London), 53 [11] 346–347, 50–<br />

51, 65 (1976).<br />

*This glass literature bibliography was compiled by by Pat LaCourse, engineering <strong>and</strong> science librarian at Scholes<br />

Library, a special academic library with extensive resources in ceramic <strong>and</strong> glass engineering <strong>and</strong> materials science<br />

located at the New York State College of Ceramics at Alfred University, Alfred, NY, electronic databases <strong>and</strong> print<br />

abstracts searched included Ceramic Abstracts, Chemical Abstracts, E.I. Compendex, FirstSearch, ScienceDirect,<br />

<strong>and</strong> Ingenta. Expertise in the areas of foreign patent information <strong>and</strong> Russian glass science literature was<br />

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