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1.由于部分文章,图片所引用参考文献较多,为不影响原文章阅读,故将参考文献单独列示。

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星│彩虹桥の闪光——方柱石

参考文献

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[6] 马媛媛.Eu单掺及Ce_(3+)和...柱石荧光粉的合成及光谱研究[D].新疆师范大学, 2017.

[7] 廖任庆.一颗钙柱石的宝石学特征测试分析[J].宝石和宝石学杂志, 2020, 22(2).

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[9] 程静 等.Eu2O3掺杂天然方柱石蓝色长余辉发光特性[J].新疆师范大学学报, 2017, 37(2).

[10] 任芊芊 等.浅黄色方柱石化学成分及热处理结果分析[J].宝石和宝石学杂志, 2016, 18(2).

[11] 邓心仪.方柱石的宝石学特征与发光性研究[D].中国地质大学(北京), 2021.

[12] 叶旭 等.拉曼面扫描无损鉴定矿物包裹体:以彩虹方柱石中的磁铁矿包裹体为例[J].光谱学与光谱分析, 2019, 41(7).

[13] 丁薇 等.拉曼面扫描无损鉴定矿物包裹体:马达加斯加黄色方柱石的谱学特征研究[J].光谱学与光谱分析, 2022, 42(7).

[14] mindat.mindat[EB/OL].[2022-10-6].https://zh.mindat.org/.

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[16] 出门看风景.紫色方柱石的多色性[EB/OL].[2022-10-6].https://www.giabbs.com/post/58104589.

[17] 漫悲歌.发颗好玩稀有的宝石,荧光+光致变色方柱石[EB/OL].[2022-10-6].https://www.giabbs.com/post/4471992.

[18] 漫悲歌.发颗好玩稀有的宝石,荧光+光致变色方柱石[EB/OL].[2022-10-6].https://www.giabbs.com/post/4471992.

[19] 一桶天下.黄色方柱石观赏[EB/OL].[2022-10-6].https://www.giabbs.com/post/3700422.

[20] 百度百科.若泽·博尼法西奥·德·安德拉达·席尔瓦[EB/OL].[2022-106].https://baike.baidu.com/item/%E8%8B%A5%E6%B3%BD%C2%B7%E5%8D%9A%E5%B0%BC%E6%B3%95%E8%A5%BF%E5%A5%A5%C2%B7%E5%BE%B7%C2%B7%E5%AE%89%E5%BE%B7%E6%8B%89%E8%BE%BE%C2%B7%E5%B8%AD%E5%B0%94%E7%93%A6/9473153?fr=aladdin.

[21] Zeitschrift für Kristallographie (1931): 81: 110.

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[23] Levien, L. and Papike, J.J. (1976): Scapolite crystal chemistry: Aluminium-silicon distributions, carbonate group disorder, and thermal expansion. Amer. Mineral., 61, 864-877.

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[28] Pan, Y., Fleet, M.E., and Ray, G.E. (1994): Scapolite in two Canadian gold deposits: Nickel Plate, British Columbia and Hemlo, Ontario. Canadian Mineralogist: 32: 825-837.

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[30] Teertstra, D.K. and Sherriff, B.L. (1997): Substitutional mechanisms, compositional trends and the end-member formulae of scapolite. Chemical Geology, 136, 233-260.

[31] Seto, Y., Shimobayashi, N., Miyake, A. & Kitamura, M. (2004): Composition and I4/m - P42/n phase transition in scapolite solid solutions. American Mineralogist 89, 257-265.

[32] Christy, A.G. & Gatedal, K. (2005): Extremely Pb-rich rock-forming silicates including a beryllian scapolite and associated minerals in a skarn from Långban, Värmland, Sweden. Mineralogical Magazine, 69, 995-1018.

[33] Antao, S.M., Hassan, I. (2008) Increase in Al-Si and Na-Ca disorder with temperature in scapolite Me32.9. The Canadian Mineralogist 46, 1577-1591

[34] Sokolova, E., Hawthorne, F.C. (2008): The crystal chemistry of the scapolite-group minerals. I. Crystal structure and long-range order. The Canadian Mineralogist 46, 1527-1554.

[35] Hawthorne, F.C. & Sokolova, E. (2008): The crystal chemistry of the scapolite-group minerals. II. The origin of the I4/m ↹ P42/n phase transition and the nonlinear variations in chemical composition. Canadian Mineralogist 46, 1555-1575.

[36] Anato, S.M. & Hassan, I. (2011): The structures of marialite (Me6) and meionite (Me93) in space groups P42/n and I4/m, and the absence of phase transitions in the scapolite series. Powder Diffraction 26, 119-125.

[37] Antao, S.M. & Hassan, I. (2011): Complete Al-Si order in scapolite Me37.5, ideally Ca3Na5[Al8Si16O48]Cl(CO3), and implications for antiphase domain boundaries (APBs). Canadian Mineralogist, 49, 581-586.

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