Analysis of the late Hirnantian and early Rhuddanian Unconformities of Southern Ontario: Evidence for Far Field Glacioeustatic Effects

IF 1.3 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Canadian Journal of Earth Sciences Pub Date : 2023-12-18 DOI:10.1139/cjes-2023-0041
C. Farnam, Carlton Brett
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Abstract

Several unconformities have been previously recognized in the Late Ordovician and early Silurian strata of southern Ontario. We examined the Georgian Bay, Queenston, Whirlpool, Manitoulin, Power Glen, Cabot Head formations and associated unconformities. Detailed sequence stratigraphic and chemostratigraphic analysis of Late Ordovician and early Silurian outcrops between Niagara, New York and Manitoulin Island, Ontario reveals new insights on the timing of the erosional unconformities and the Ordovician–Silurian boundary. We recognize three significant lowstand unconformities in this interval, which are referred to as the Cherokee, S1B and S2 unconformities. Additional small-scale surfaces are present but do not reflect any major change in sea level or pause in sedimentation. Using δ13Ccarb chemostratigraphy, biostratigraphy and sequence stratigraphy we tentatively correlate units and the mentioned unconformities from southern Ontario to other eastern North American sections of comparable age, showing how glacioeustasy had a widespread effect on the deposition and removal of strata in far-field, subtropical basins. The Cherokee Unconformity appears to be a composite erosion surface found across eastern North America that formed during the two or more episodes of glacioeustatic sea level fall in the early to middle Hirnantian. The overlying S1B and S2 unconformities can also be found across eastern North America and appear to be the result of glacioeustatic sea level fall occurring during the early Silurian. Additionally, these new insights on the timing of these erosional unconformities help better constrain the placement of the Ordovician/Silurian Boundary in Ontario.
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安大略省南部希尔南晚期和罗丹早期不整合地层分析:远场冰蚀作用的证据
在安大略省南部的晚奥陶世和早志留纪地层中,以前曾发现过几处不整合地层。我们考察了乔治亚湾、奎恩斯顿、漩涡、马尼图林、Power Glen、卡博特海德地层及相关的不整合地层。对纽约州尼亚加拉和安大略省马尼吐林岛之间的晚奥陶世和早志留纪露头地层进行了详细的层序地层学和化合地层学分析,揭示了侵蚀性不整合地层和奥陶世-志留纪边界的时间。我们在这一区间发现了三个重要的低地表不整合地层,分别被称为切诺基、S1B 和 S2 不整合地层。另外还有一些小规模的地表,但并不反映海平面的重大变化或沉积的停顿。利用 δ13Ccarb 化学地层学、生物地层学和层序地层学,我们将安大略省南部的单元和提到的不整合地层与北美东部其他具有可比年龄的地段进行了初步关联,显示了冰川作用是如何对远地亚热带盆地地层的沉积和移除产生广泛影响的。切诺基不连续面似乎是北美东部的一个复合侵蚀面,形成于希尔南蒂早期至中期的两次或多次冰川海平面下降过程中。上覆的 S1B 和 S2 非地层也遍布北美东部,似乎是志留纪早期冰川海平面下降的结果。此外,对这些侵蚀性不整合地层时间的新认识有助于更好地确定安大略奥陶纪/志留纪界线的位置。
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来源期刊
Canadian Journal of Earth Sciences
Canadian Journal of Earth Sciences 地学-地球科学综合
CiteScore
2.80
自引率
7.10%
发文量
66
审稿时长
6-12 weeks
期刊介绍: The Canadian Journal of Earth Sciences reports current research in climate and environmental geoscience; geoarchaeology and forensic geoscience; geochronology and geochemistry; geophysics; GIS and geomatics; hydrology; mineralogy and petrology; mining and engineering geology; ore deposits and economic geology; paleontology, petroleum geology and basin analysis; physical geography and Quaternary geoscience; planetary geoscience; sedimentology and stratigraphy; soil sciences; and structural geology and tectonics. It also publishes special issues that focus on information and studies about a particular segment of earth sciences.
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