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首页> 外文期刊>Journal of earth system science >Structural and luminescent characterisation of uraniferous fluorapatite and haematite associated with phosphatic rocks of the Bijawar group in Sagar District, Madhya Pradesh (India)
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Structural and luminescent characterisation of uraniferous fluorapatite and haematite associated with phosphatic rocks of the Bijawar group in Sagar District, Madhya Pradesh (India)

机译:印度中央邦萨加尔地区比贾瓦尔群的磷矿相关的尿素性氟磷灰石和赤铁矿的结构和发光特征

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The structural and spectroscopic characteristics of phosphatic ferruginous shale samples from the Bijawar Group rocks from Sagar District of Madhya Pradesh (India) have been probed for identification of uranium species. Fluorapatite (Ca$_{5}$(PO$_{4}$)$_{3}$F, FAP) and haematite ($lpha$-Fe$_{2}$O$_{3}$) were identified as the main phases in the separated mineral concentrates. The photoluminescence (PL) and X-ray absorption near edge spectroscopy (XANES) studies pointed to a strong experimental evidence of both U(IV) and U(VI) oxidation states in the mineral concentrate portion obtained from the same parent host rock. The PL spectrum has confirmed the charge transfer (fa??d) transition bands in UV and near-UV regions with emission peaks at ca. 290, 313, 336, 399 and 416 nm, which has been attributed to the substitution of Ca$^{2+}$ ions by U(IV) in FAP and broad structureless emission due to stabilisation of U(VI) as UO$_6^{6-}$ in haematite. Time-resolved spectroscopy studies have revealed biexponential decay components lasting 2a??5 ns for U(IV) species and 10 $mu$s for U(VI) species. These characterisations revealed the fundamental information about the oxidation state and form of uranium in this region. Remediation measures for the Bijawar region are also suggested.
机译:已探究了来自印度中央邦萨加尔地区Bijawar组岩石的磷质铁质页岩样品的结构和光谱特征,以鉴定铀物种。氟磷灰石(Ca $ _ {5} $(PO $ _ {4} $)$ _ {3} $ F,FAP)和赤铁矿($ alpha $ -Fe $ _ {2} $ O $ _ {{3} $ )被确定为分离出的精矿中的主要相。近缘光谱学(XANES)的光致发光(PL)和X射线吸收研究表明,从同一母体母岩中获得的精矿部分中的U(IV)和U(VI)氧化态都有很强的实验证据。 PL光谱已经证实了在UV和近UV区域中的电荷转移(fa d d)跃迁带,其发射峰在约5nm处。 290、313、336、399和416 nm,这归因于FAP中的U(IV)取代了Ca $ ^ {2 +} $离子,并且由于U(VI)稳定为UO $而产生了广泛的无结构发射_6 ^ {6-} $赤铁矿。时间分辨光谱研究表明,U(IV)物种的双指数衰减分量持续2a?5 ns,而U(VI)物种的持续时间为10μs。这些特征揭示了有关该区域铀的氧化态和形式的基本信息。还建议对比贾瓦尔地区采取补救措施。

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