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Pinnoite Deposit in DaQaidam Saline Lake, Qaidam Basin, China: Hydroclimatic, Sedimentologic, and Geochemical Constraints

机译:柴达木盆地大柴达木盐湖中的Pinnoite矿床:水文气候,沉积学和地球化学约束

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Mg-borates were traditionally thought to be diagenetic products of other primary borate minerals. Here we report results from the study of pinnoite deposit from DaQaidam saline lake, indicating that pinnoite minerals are primary in origin. Within the detecting limit of X-ray powder diffraction analysis (XRD) analysis, no other borate minerals than pinnoite are detected from the Mg-borate deposit. The cemented pinnoite orebody shows the sedimentary structure of light-dark lamination couplets, which signal marked seasonal variations in brine chemistry. The scanning electronic microscopy coupled with an energy dispersive X-ray spectrometer (SEM-EDX) examination reveals that all pinnoite minerals displayed euhedral, giving no indication of diagenetic origin. A marked shift in lithology from clastic sediment to evaporitic deposit reflects a critical change in sedimentation regime associated with abrupt changes in hydroclimatic conditions. The deposition of the pinnoite ore-layer containing abundant hydromagnesite marked the beginning of the evaporite formation and the end of the clastic deposition. This suggests that aridification occurred abruptly and the saline lake was much more alkaline than today in the early-stage of the evaporite deposition. The intensified summer evaporation and seasonal variations in water chemistry brought about a shallow to nearly desiccated paleo-lake with pH exceeding 9.3, Mg/Ca ratio 39, and boron concentration 600 mg/L, which favored pinnoite precipitation and the formation of pinnoite deposit in the central DaQaidam saline lake.
机译:传统上认为硼酸镁是其他主要硼酸盐矿物的成岩产物。在这里,我们报告了来自大柴达木盐湖品脱矿床研究的结果,表明品脱矿床矿物是主要来源。在X射线粉末衍射分析(XRD)分析的检测极限内,从硼酸镁矿床中未检出除品脱石之外的其他硼酸盐矿物。胶结的松脱岩矿体显示出浅暗的层状对联的沉积结构,这标志着盐水化学的明显季节性变化。扫描电子显微镜与能量色散X射线光谱仪(SEM-EDX)的检查结果表明,所有品脱石矿物均显示为正片,没有任何成岩成因的迹象。岩性从碎屑沉积物到蒸发沉积物的显着变化反映了与水文气候条件突然变化有关的沉积方式的重要变化。含丰富菱镁矿的品脱石矿石层的沉积标志着蒸发岩形成的开始和碎屑沉积的结束。这表明在蒸发岩沉积的早期阶段,干旱化突然发生,盐湖的碱性比今天强得多。夏季蒸发的加剧和水化学的季节性变化导致了一个浅水至近干燥的古湖,pH超过9.3,Mg / Ca比> 39,硼浓度> 600 mg / L,有利于斑脱石的沉淀和斑脱石的形成。沉积在大柴达木盐湖中央。

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