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首页> 外文期刊>Quaternary Science Reviews: The International Multidisciplinary Review Journal >Stromatolites in caves of the Dead Sea Fault Escarpment: implications to latest Pleistocene lake levels and tectonic subsidence
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Stromatolites in caves of the Dead Sea Fault Escarpment: implications to latest Pleistocene lake levels and tectonic subsidence

机译:死海断层悬崖洞穴中的层间岩:对最新更新世湖平面和构造沉降的影响

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A varied assemblage of algal stromatolites was encountered in caves along the northern section of the Dead Sea Fault Escarpment. The caves are situated at the lower part of the escarpment at altitudes -310 to -188 m relative to mean sea level (m.s.l.), i.e. ca 110-230 m above the present Dead Sea level. The cave stromatolites are mainly composed of aragonite yielding U-Th ages of similar to 75-17 ka. The altitude, mineralogy and ages, as well as comparison with previously documented stromatolite outcrops in the area, ascribe the cave stromatolites to the aragonite-precipitating hypersaline Lake Lisan-the Late Pleistocene predecessor of the Dead Sea. The stromatolites are used as a lake level gauge, based on the algae being reliant upon the light of the upper water layer. Preservation of the original structure and aragonite mineralogy of the stromatolites, suggests a closed system regarding the radioactive elements, enabling reliable U-Th dating. A curve of Lake Lisan levels is constructed based on the stromatolite ages and cave elevations. The following points are noted: (1) Lake levels of -247 m relative to m.s.l., are recorded at similar to 75-72.5 ka: (2) relatively high lake levels above -220 m relative to m.s.l., are achieved at similar to 41.5 ka, and are still recorded at similar to 17 ka; (3) the peak level is -188 m relative to m.s.l., at similar to 35.5-29.5 ka. These results indicate lake stands up to 80 m higher than previously accepted, for large parts of the Lake Lisan time span. This difference is explained by tectonic subsidence of up to 2.2 m/ka within the Dead Sea depression since the latest Pleistocene. This subsidence rate is in the same order of magnitude with previously calculated subsidence rates for the Dead Sea depression [Begin, Z.B., Zilberman, E., 1997. Main Stages and Rate of the Relief Development in Israel. Geological Survey of Israel reports Jerusalem]. Unlike previous Lake Lisan level estimations, the new curve is measured at the relatively stable shoulders of the Dead Sea depression.
机译:在死海断层悬崖北部的山洞中遇到了各种各样的藻类叠层石。这些洞穴位于悬崖的下部,相对于平均海平面(m.s.l.),即当前死海平面以上的大约110-230 m的高度为-310至-188 m。洞穴叠层石主要由文石组成,产生的U-Th年龄类似于75-17 ka。海拔,矿物学和年龄,以及与该地区先前记录的叠层石露头的比较,将洞穴叠层石归因于文石沉淀的超盐湖利桑湖-死海晚更新世的前身。基于藻类依赖于上部水层的光线,叠层石被用作湖泊液位计。保留了叠层石的原始结构和文石矿物学,表明了有关放射性元素的封闭系统,从而实现了可靠的U-Th定年。根据叠层岩的年龄和洞穴的高程,绘制了利桑湖水位曲线。需要注意以下几点:(1)相对于MSL的湖泊水位-247 m,以类似于75-72.5 ka的速度记录:(2)相对于MSL的-220 m以上的湖泊水位相对较高,达到了41.5 ka,并且仍记录为与17 ka类似; (3)相对于m.s.l.的峰值水平为-188 m,类似于35.5-29.5 ka。这些结果表明,在利桑湖时间段的大部分时间里,湖泊的水位比以前接受的高度高80 m。自最近的更新世以来,死海凹陷内的构造沉降高达2.2 m / ka可以解释这种差异。该沉陷率与先前计算的死海萧条沉陷率处于相同的数量级[Begin,Z.B.,Zilberman,E.,1997。以色列救济发展的主要阶段和速率。以色列地质调查局报告耶路撒冷]。与先前的利桑湖水位估算不同,新曲线是在死海洼地相对稳定的路肩处测量的。

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