{"product_id":"environmental-issues-and-waste-management-technologies-in-the-ceramic-and-nuclear-industries-ix-paperback-softback-9781574982091","title":"Environmental Issues and Waste Management Technologies in the Ceramic and Nuclear Industries IX (Paperback \/ softback) 9781574982091","description":"\u003cfont face=\"Georgia\"\u003e\r\n\u003cp\u003e\u003cfont size=\"6\"\u003eEnvironmental Issues and Waste Management Technologies in the Ceramic and Nuclear Industries IX\u003c\/font\u003e\u003cbr\u003e\r\n\r\n\r\n\r\n\r\n\r\n\u003c\/p\u003e\n\u003cp\u003e\u003cfont size=\"4\"\u003eJohn D. Vienna (Edited by), JD Vienna (Author), Dane R. Spearing (Edited by)\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003e9781574982091, Wiley\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003ePaperback \/ softback, published 21 March 2006\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003e400 pages\u003cbr\u003e23.4 x 15.4 x 2.6 cm, 0.656 kg\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\r\n\r\n\r\n\r\n\u003cp align=\"justify\"\u003e\u003cstrong\u003e\u003cfont size=\"3\"\u003eIn today's world of increasingly stringent environmental regulations, it is critical to identify and adequately address environmental issues in the ceramic industry to ensure success. In addition, ceramics and glasses play a critical role in the nuclear industry. Nuclear fuels and waste forms for low-level and high-level radioactive, mixed, and hazardous wastes are primarily either ceramic of glass. Effective and responsible environmental stewardship is becoming increasingly more important in the world. These proceedings detail the results of the ongoing effort in these areas. \u003cp\u003eProceedings of the symposium held at the 105th Annual Meeting of The American Ceramic Society, April 27-30, in Nashville, Tennessee; Ceramic Transactions, Volume 155.\u003c\/p\u003e\u003c\/font\u003e\u003c\/strong\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003e\u003cb\u003eCeramics For Waste or Nuclear Applications.\u003cbr\u003e\u003cbr\u003e\u003c\/b\u003eUranium Valences in Perovskite CaTiO3 (E.R. Vance, M.L. Carter, Z. Zhang, K.S. Finnie, S.J. Thomson, B.D. Begg).\u003cbr\u003e\u003cbr\u003eIron-Substituted Barium Hollandite Ceramics for Cesium Immobilization (F. Bart, G. Leturcq, H. Rabiller).\u003cbr\u003e\u003cbr\u003eHollandite-Rich Titanate Ceramics Prepared by Melting in Air (M.L. Carter, E.R. Vance, H. Li).\u003cbr\u003e\u003cbr\u003eHyperfine Interaction Study of Short Range Order in Zircon (H. Jaeger, K. Pletzke, J.M. Hanchar).\u003cbr\u003e\u003cbr\u003eScale-Up of Lithium Aluminate Pellet Manufacturing with a Flowable Powder (G. Hollenberg, L. Bagaassen, R. Kurosky, D. Tonn, W. Carty).\u003cbr\u003e\u003cbr\u003e\u003cb\u003e\u003cbr\u003eMelter Processing and Process Monitoring.\u003c\/b\u003e\u003cbr\u003e\u003cbr\u003eLaboratory Measurement of Glass Melting Rate (D.F. Bickford).\u003cbr\u003e\u003cbr\u003eAnalysis of Feed Melting Processes (J. Matyas, P. Hrma, D.-S. Kim).\u003cbr\u003e\u003cbr\u003eElectron Equivalents Redox Model for High Level Waste Vitrification (C.M. Jantzen, D.C. Koopman, C.C. Herman, J.B. Pickett, J.R. Zamecnik).\u003cbr\u003e\u003cbr\u003eSulfate Retention during Waste Glass Melting (P. Hrma, J.D. Vienna, W.C. Buchmiller, J.S. Ricklefs).\u003cbr\u003e\u003cbr\u003eThe Characterization and Dissolution of High Level Waste Calcine in Alkali Borosilicate Glass (S. Morgan, P.B. Rose, R.J. Hand, N.C. Hyatt, W.E. Lee, C.R. Scales).\u003cbr\u003e\u003cbr\u003eSummary of Results from 786-A Minimelter Run with Marcobatch 3 (Sludge Batch 2) Baseline Feed Using Frit 320 (M.E. Smith, D.H. Miller).\u003cbr\u003e\u003cbr\u003eNumerical Models of Waste Glass Melters Part I-Lumped Parameter Analysis of DWPF (H.N. Guerrero, D.F. Bickford).\u003cbr\u003e\u003cbr\u003eNumerical Models of Waste Glass Melters Part II-Computational Modeling of DWPF (H.N. Guerrero, D.F. Bickford, H. Naseri-Neshat).\u003cbr\u003e\u003cbr\u003eTailored Electrical Driving as a Means of Controlling Heat Distribution and Convection Patterns in Joule-Heated Waste Glass Melters (J.A. Fort, D.L. Lessor).\u003cbr\u003e\u003cbr\u003eEffects of Poly(Acrylic Acid) on the Rheological Properties of Aqueous Melter Feed Slurries for Nuclear Waste Vitrification (H. Zhao, I.S. Muller, I.L. Pegg).\u003cbr\u003e\u003cbr\u003eFrequency Modulated Continuous Wave Monitoring of Refractory Walls (B. Varghese, R. Zoughi, C. DeConink, M. Velez, R. Moore).\u003cbr\u003e\u003cbr\u003eCombustion Control Experimentations at a Pilot Scale Glass Furnace (S. Keyvan, R.A. Rossow, M. Velez, W.L. Headrick, R.E. Moore, C. Romero).\u003cbr\u003e\u003cbr\u003e\u003cb\u003e\u003cbr\u003eWaste Vitrification Programs.\u003c\/b\u003e\u003cbr\u003e\u003cbr\u003eCompletion of the Vitrification Campaign at the West Valley Demonstration Project (R.A. Palmer, H.M. Houston, A.J. Misercola).\u003cbr\u003e\u003cbr\u003eReview of the French Vitrification Program (R. Do Quang, P. Mougnard, C. Ladirat, A. Prodhomme).\u003cbr\u003e\u003cbr\u003eExamination of DWPF Melter Materials After 8 Years of Service (D.C. Iverson, K.J. Imrich, D.F. Bickford, J.T. Gee, C.F. Jenkins, F.M. Heckendorn).\u003cbr\u003e\u003cbr\u003eTesting to Demonstrate Regulatory Compliance of Glass Waste Forms for Immobilization of Radioactive Wastes at the Hanford Site (D.B. Blumenkranz, S. Kelly, D.J. Swanberg, C.A. Musick).\u003cbr\u003e\u003cbr\u003eCold Crucible Induction-Heated Melter Test Results with Surrogate DOE High-Level Wastes (C.C. Herman, D.F. Bickford, D.K. Peeler, R. Goles, J.D. Vienna, A. Aloy, S. Stafanovsky, D. Gombert, J. Richardson).\u003cbr\u003e\u003cbr\u003eCrucible-Scale Vitrification Studies with Hanford Tank AZ-102 High Sulfate-Containing Low Activity Waste (C.L. Crawford, R.F. Schumacher, D.M. Ferrara, N.E. Bibler).\u003cbr\u003e\u003cbr\u003e\u003cb\u003e\u003cbr\u003eGlass Formulation and Property Models.\u003c\/b\u003e\u003cbr\u003e\u003cbr\u003ePreliminary Glass Development and Testing for In-Container Vitrification of Hanford Low-Activity Waste (J.D. Vienna, D.-S. Kim, M.J. Schweiger, P. Hrma, J. Matyás, J.V. Crum, D.E. Smith).\u003cbr\u003e\u003cbr\u003eEvaluation of Melt Rate through Higher Waste Loading (T.H. Lorier, P.S. McGrier).\u003cbr\u003e\u003cbr\u003eSpinel Crystallization in HLW Glass Melts: Cation Exchange Systematics and the Role of Rh2 O3 in Spinel Formation (S. Annamalai, H. Gan, M. Chaudhuri, W.K. Kot, I.L. Pegg).\u003cbr\u003e\u003cbr\u003eComposition Effects on the Vapor Hydration of Waste Glasses (A.C. Buechele, F. Lofaj, I.S. Muller, C.T.F. Mooers, I.L. Pegg).\u003cbr\u003e\u003cbr\u003eGlass Composition-TCLP Response Model for Waste Glasses (D.-S. Kim, J.D. Vienna).\u003cbr\u003e\u003cbr\u003e\u003cb\u003e\u003cbr\u003eAlternate Waste Forms and Processes.\u003c\/b\u003e\u003cbr\u003e\u003cbr\u003eIron Phosphate Glass for Immobilization of Hanford LAW (C.W. Kim, D. Zhu, D.E. Day, D.-S. Kim, J.D. Vienna, D.K. Peeler, T.E. Day, T. Neidt).\u003cbr\u003e\u003cbr\u003eCharacterization and Performance of Fluidized Bed Steam Reforming (FBSR) Product as a Final Waste Form (C.M. Jantzen).\u003cbr\u003e\u003cbr\u003eMicrostructure of Emulsion-Based Polymeric Waste Forms for Encapsulating Low-Level, Radioactive and Toxic Metal Wastes (R. Evans, A. Quach, G. Xia, B.J. Zelinski, W.P. Ela, D.P. Birnie III, A.E. Sáez, H.D. Smith, G.L. Smith).\u003cbr\u003e\u003cbr\u003eLeach Resistance of Encapsulated Salts in Polymeric Waste Forms Fabricated Using an Aqueous-Based Route (A. Quach, G. Xia, R. Evans, A.E. Sáez, B.J. Zelinski, H. Smith, G. Smith, D.P. Birnie III, W.P. Ela).\u003cbr\u003e\u003cbr\u003eThermal Processing Optimization for Simulated Hanford Waste Glass (AZ 101) (A. Giordana, W.G. Ramsey, T.F. Meaker, B. Kauffman, M. McCarthy, K. Guilbeau, J.D. Smith, F.S. Miller, T. Sanders, E.W. Bohannan, J. Powell, M. Reich, J. Jordan, L. Ventre, R.E. Barletta, A.A. Ramsey, G. Maise, B. Manowitz, M. Steinberg, F. Salzano).\u003cbr\u003e\u003cbr\u003eAging Behavior of a Sodalite Based Ceramic Waste Form (J.F. Jue, S.M. Frank, T.P. OHolleran, T.L. Barber, S.G. Johnson, K.M. Goff, W. Sinkler).\u003cbr\u003e\u003cbr\u003eProcess for Selective Removal and Concentration of Actinides and Heavy Metals from Water by B.P. Kiran, A.W. Apblett).\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\u003cp\u003e\u003cfont size=\"3\"\u003eSubject Areas: Mechanical engineering \u0026amp; materials [\u003ca title=\"See our other books on Mechanical engineering \u0026amp; materials\" href=\"https:\/\/freshlyprintedbooks.co.uk\/search?q=%22Mechanical%20engineering%20\u0026amp;%20materials%20%5BTG%5D%22\"\u003eTG\u003c\/a\u003e]\u003c\/font\u003e\u003c\/p\u003e\r\n\r\n\r\n\u003c\/font\u003e","brand":"Wiley-American Ceramic Society","offers":[{"title":"Brand New","offer_id":52446146724120,"sku":"9781574982091","price":89.88,"currency_code":"GBP","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0730\/2037\/5320\/files\/9781574982091.jpg?v=1785110545","url":"https:\/\/freshlyprintedbooks.co.uk\/products\/environmental-issues-and-waste-management-technologies-in-the-ceramic-and-nuclear-industries-ix-paperback-softback-9781574982091","provider":"Freshly Printed Books","version":"1.0","type":"link"}