Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Loiseau, P.
and
Caurant, D.
2010.
Glass–ceramic nuclear waste forms obtained by crystallization of SiO2–Al2O3–CaO–ZrO2–TiO2 glasses containing lanthanides (Ce, Nd, Eu, Gd, Yb) and actinides (Th): Study of the crystallization from the surface.
Journal of Nuclear Materials,
Vol. 402,
Issue. 1,
p.
38.
2010.
Waste Immobilization in Glass and Ceramic Based Hosts.
p.
241.
Bingham, P A
Connelly, A J
Hyatt, N C
and
Hand, R J
2011.
Corrosion of glass contact refractories for the vitrification of radioactive wastes: a review.
International Materials Reviews,
Vol. 56,
Issue. 4,
p.
226.
Ojovan, Michael I.
and
Lee, William E.
2011.
Glassy Wasteforms for Nuclear Waste Immobilization.
Metallurgical and Materials Transactions A,
Vol. 42,
Issue. 4,
p.
837.
Sengupta, Pranesh
2012.
A review on immobilization of phosphate containing high level nuclear wastes within glass matrix – Present status and future challenges.
Journal of Hazardous Materials,
Vol. 235-236,
Issue. ,
p.
17.
Mohd Juoi, Jariah
Arudra, Dilip
Rosli, Zulkifli Mohd
Toibah, A.R.
Shamsuri, Siti Rahmah
and
Azuraien, Japper Jaafar
2012.
Physical and Mechanical Properties of Glass Composite Material Made from Incinerated Scheduled Waste Slag and SLS Waste Glass.
Advanced Materials Research,
Vol. 626,
Issue. ,
p.
280.
Deptula, Andrzej
Milkowska, Magdalena
Lada, Wieslawa
Olczak, Tadeusz
Wawszczak, Danuta
Smolinski, Tomasz
Brykala, Marcin
Chmielewski, Andrzej G.
Zaza, Fabio
and
Goretta, Kenneth C.
2012.
Vitrification of Nuclear Wastes by Complex Sol-Gel Process.
Advanced Materials Research,
Vol. 518-523,
Issue. ,
p.
3216.
Lee, William Edward
Gilbert, Matthew
Murphy, Samuel Thomas
Grimes, Robin William
and
Green, D. J.
2013.
Opportunities for Advanced Ceramics and Composites in the Nuclear Sector.
Journal of the American Ceramic Society,
Vol. 96,
Issue. 7,
p.
2005.
Mowry, Curtis D.
Brady, Patrick V.
Garino, Terry J.
Nenoff, Tina M.
and
Jantzen, C. M.
2015.
Development and Durability Testing of a Low‐Temperature Sintering Bi–Si–Zn Oxide Glass Composite Material (GCM) 129I Waste Form.
Journal of the American Ceramic Society,
Vol. 98,
Issue. 10,
p.
3094.
Chouard, N.
Caurant, D.
Majérus, O.
Dussossoy, J. L.
Klimin, S.
Pytalev, D.
Baddour-Hadjean, R.
and
Pereira-Ramos, J. P.
2015.
Effect of MoO3, Nd2O3, and RuO2 on the crystallization of soda–lime aluminoborosilicate glasses.
Journal of Materials Science,
Vol. 50,
Issue. 1,
p.
219.
Robbins, Rebecca A.
and
Ojovan, Michael I.
2016.
Vitreous Materials for Nuclear Waste Immobilisation and IAEA Support Activities.
MRS Advances,
Vol. 1,
Issue. 63-64,
p.
4201.
Nurzilla, M.
Wahab, Z. A.
Hassan, J.
Matori, K. A.
and
Zamratul, M. I. M.
2016.
Synthesis and luminescence properties of Pr doped SLS–ZnO glass composite material for red phosphors.
Journal of Materials Science: Materials in Electronics,
Vol. 27,
Issue. 12,
p.
13323.
Ojovan, Michael I.
Petrov, Vladislav A.
and
Yudintsev, Sergey V.
2021.
Glass Crystalline Materials as Advanced Nuclear Wasteforms.
Sustainability,
Vol. 13,
Issue. 8,
p.
4117.
Pilania, Ritu Kumari
Pathak, Nidhi
Saini, Mahesh
Sooraj, Kandathil Parambil
Ranjan, Mukesh
and
Dube, Charu Lata
2023.
Synthesis of the chemically durable glass-ceramic matrix for radioactive waste immobilisation.
Ceramics International,
Vol. 49,
Issue. 10,
p.
15931.
Kumar, Naveen
Aggarwal, Nupur
and
Kumar, Naveen
2023.
Ceramics for high-level nuclear waste immobilization.
Vol. 2755,
Issue. ,
p.
020016.
Pilania, Ritu Kumari
and
Dube, Charu Lata
2023.
Matrices for radioactive waste immobilization: a review.
Frontiers in Materials,
Vol. 10,
Issue. ,
Hwang, Jaewoong
Koo, Jaseung
and
Lee, Keunyoung
2024.
Characterization of glass composite material by pressureless sintering of soil and its application to uranium contaminated soil as a waste form.
Radiochimica Acta,
Vol. 112,
Issue. 3,
p.
197.