Лай Хуашэн – доктор, кафедра дизайна продукции, Колледж изящных искусств и дизайна, Цюаньчжоуский педагогический университет, Цюаньчжоу, КНР; Университет Сайнс Малайзия, Пенанг, Малайзия
Дэн Вэйбин – преподаватель, кафедра дизайна продукции, Колледж изящных искусств и дизайна, Цюаньчжоуский педагогический университет, Цюаньчжоу, КНР
Бао Цифу – доктор, Инженерия неорганических неметаллических материалов, Школа материаловедения и инженерии, Цзиндэчжэньский керамический университет, Цзиндэчжэнь, КНР
Лин Цэцин – доктор, кафедра промышленного дизайна, Университет Конкорд при Фуцзяньском педагогическом университете, Фучжоу, КНР
1. Feng L., Wang F., Luo H., et al. Phase-separated Tenmoku 'Blue' glaze: microstructure and coloring mechanism // Journal of the European Ceramic Society. 2023. V. 43, No. 14. P. 6581 – 6589.
2. Gol F., Yilmaz A., Kacar E., et al. Reuse of glass waste in the manufacture of ceramic tableware glazes // Ceramics International. 2021. V. 47, No. 15. P. 21061 – 21068.
3. Gol F., Saritas Z. G., C?buk S., et al. Coloring effect f iron oxide content on ceramic glazes and their comparison with similar waste-containing materials // Ceramics International. 2022. V. 48, No. 2. P. 2241 – 2249.
4. Gupta A., Gupta N., Saxena K. K., Goyal S. K. Investigation of the mechanical strength of stone dust and ceramic waste based composite // Materials Today. Proceedings, 2020. V. 44. P. 29 – 33.
5. Israil L. I. Mechanical and microstructural properties of opaque ceramic tiles glazed with some industrial wastes // Glass and Ceramics. 2022. V. 79, No. 7. P. 340 – 347.
6. Li Y. J. Mineral composition and characteristics of Shoushan stone // Fujian Geology. 2005. No. 2. P. 79 – 89.
7. Li Y., Zhu L., Xu W., et al. Stratigraphic section and geochronological studies of the Shoushan basin, Fujian province, South China, and its implications for the mineralization of Shoushan stone // Minerals. 2022. V. 12, No. 12. P. 1542.
8. Liu W. D., Jiang G. J., Xu J. Y., et al. XRD study on the mineral composition and classification of Shoushan stone // Journal of Shanghai Institute of Technology (Natural Science Edition). 2009. No. 3. P. 175 – 178.
9. Bayer Ozturk Z., Dal S. Characterization of industrial ceramic glazes containing chromite processing waste: Experimental factorial design effects on color parameters // Materials Chemistry and Physics. 2022. V. 282. P. 125928.
10. Papulova G. N., Kvasnikov M. Y. Development of compositions of pigmented colored lead-free glazes for improving ceramic product design // Glass and Ceramics. 2021. V. 78, No. 3. P. 129 – 132.
11. Rybak J., Gorbatyuk S. M., Bujanovna-Syury-un K. C., et al. Utilization of mineral waste: A method for expanding the mineral resource base of a mining and smelting company // Metallurgist. 2021. V. 64, No. 9. P. 851 – 861.
12. Sang Z., Fu X., Wu M., et al. Study on the coloring mechanism of longquan light greenish-blue celadon glaze from the Southern Song and Yuan Dynasties // Ceramics International. 2023. V. 49, No. 8. P. 13249 – 13257.
13. Soundarya N. Experimental study on the durability properties of Shahabad stone waste as partial replacement of coarse aggregate in concrete // Materials Today. Proceedings, 2020. V. 47. P. 4630 – 4635.
14. Wang C., Liu K., Chen X., et al. Influence of the thickness of the copper glaze layer on the color and its formation mechanism: materials research express. 2022. V. 9, No. 8. P. 085001.
15. Wang Y., Yu S., Tong M., et al. Deciphering the formation mechanism of ancient jun wares copper red and blue glazes // Journal of Cultural Heritage. 2021. V. 48. P. 29 – 35.
16. Li H., Fang Y., Bao Q. F., et al. Effect of Fe?O? and MnO? content on the glaze color of Jilan glaze // Jiangsu Ceramics. 2023. No. 3. P. 38 – 41.
17. Dong W. X., Liang Y., Liu H. Y., et al. Development of Jilan glaze // Ceramics. 2020. No. 8. P. 38 – 41.
18. Wang H. W. Copper-based blue glaze: pioneering a new era of ceramic craft aesthetics (part 1) // Ceramic Science and Art. 2019. No. 3. P. 4 – 9.
19. Yang Z. H., Gao S. Y., Wang F., et al. Effect of iron oxide on the structure and coloration of Jun porcelain opalescent blue glaze // China Ceramics. 2021. No. 4. P. 62 – 67.
20. Wu J. M., Zhang M. L., Li Q. J., et al. Composition and chromaticity characteristics of Jilan glaze in Ming and Qing dynasty official kilns // Spectroscopy and Spectral Analysis. 2012. No. 8. P. 2254 – 2259.
21. Liu H. G., Zeng X. T., Liao W. J., et al. Preliminary study on imitating Shiwan Guangjun blue glaze using common raw materials // China Ceramic Industry. 2017. No. 4. P. 10 – 16.
22. Yuan M., Hou J., Zhang X., et al.Changsha ware glaze color: composition, nanostructure, and copper and iron speciation // Journal of the American Ceramic Society. 2024. V. 107, No. 11. P. 7577 – 7593.
23. Svarcova S., Hradil D., Hradilova J., Cermakova Z. Pigments – copper-based greens and blues // Archaeological and Anthropological Sciences. 2021. V. 13, No. 11. P. 190.