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研究生: 黃志遠
Chih-Yuan Huang
論文名稱: 台灣南部晚更新世恆春西臺地腕足動物化石殼體化學成份反映之環境變遷
Late Pleistocene Environmental change reflected by chemical compositions of brachiopod shells from the west Hengchun Hill, Taiwan
指導教授: 米泓生
Mii, Horng-Sheng
學位類別: 碩士
Master
系所名稱: 地球科學系
Department of Earth Sciences
論文出版年: 2005
畢業學年度: 93
語文別: 中文
論文頁數: 86
中文關鍵詞: 穩定同位素微量元素腕足動物恆春西台地
英文關鍵詞: stable isotopes, trace elements, brachiopod, west Hengchun Hill
論文種類: 學術論文
相關次數: 點閱:292下載:84
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  • 本研究採集恆春地區頭溝剖面及貓鼻頭剖面一系列的腕足動物化石,分析其殼體穩定碳氧同位素及微量元素成份,以提供本地區的海洋性同位素地層記錄,並進一步的解析台灣南部恆春西臺地恆春石灰岩及四溝層的古環境變遷。
    我們根據殼體之發光性及不發光殼體中Mn、Fe、Al、Si等微量元素超過最低偵測值的特性來找出受到成岩作用影響的標本點,排除了受到成岩作用影響的數據後,保存良好的殼體穩定碳氧同位素數值均明顯大於保存度不佳之殼體及圍岩之數值,其δ18O值落在-0.61~1.07之間(平均值為0.15 ± 0.31;1σ),δ13C值落在-0.15~2.62之間(平均值為1.44 ± 0.56),保存良好殼體的Mg/Ca比值介於2.2~6.4mmol/mol之間(平均值為3.9 ± 0.9mmol/mol)。保存良好單一殼體氧同位素數值呈現週期性振盪變化,反映出腕足化石殼體記錄了季節性之變化,這更加證明腕足動物碳酸鈣殼體並無受到成岩作用的影響。同一腕足動物化石腕殼及莖殼的氧同位素數值差異不大,因此腕殼及莖殼應該均能與生長當時周圍海水達到同位素平衡,同層位Pictothyris picta、Lequeus orbicularis、Kikaithyris hanzawai平均δ18O值亦相近,故這三個種屬氧同位素數值均能反映出當時的海洋環境。
    恆春石灰岩平均氧同位素數值比四溝層重約0.4,若該地區的溫度變化不大,則恆春石灰岩較偏向形成於冰期時期之環境狀態。當由恆春石灰岩進入四溝層粉砂質泥岩沉積環境時,顯示著一個海進記錄,但氧同位素數值卻不變,故此時的海進主要應是受到構造運動所造成,冰川效應所導致之全球海水面變化可能沒有或只佔極小部份的影響。四溝層下部至上部的腕足動物殼體δ18O值由0.3逐漸變輕至-0.4,但Mg/Ca比值卻只由4.3變輕至4.0 mmol/mol,若腕足動物Mg/Ca比值可類似有孔蟲應用於Mg/Ca比值溫度方程式,則此0.3 mmol/mol之變化僅相當約0.8℃(δ18O約為0.2)之變化,故四溝層沉積時期應處於一融冰的時期。此外,四溝層中期氧同位素數值有一變大0.3 的變化,若溫度及鹽度效應可略,則數值可能反映出全球海水面下降約30公尺,由於此時期恆春半島還是處於一構造活動較劇烈的區域,因此構造活動抬升加上全球海水面下降的雙重影響,造成此時期於四溝層出現一富含生活於半淡水環境下貝類殼體所組成的生物碎屑石灰岩。

    We have analyzed the chemical compositions of brachiopod fossils collected from Toukou and Szekou profiles, Hengchun, Taiwan to construct the Late Pleistocene environment of southern Taiwan. We have collected 124 specimens. Fifty out of these specimens were determined well preserved based on the shell microstructure, luminescent characteristics, minor and trace element compositions, and isotope compositions of samples analyzed.
    The δ18O and δ13C values of well preserved samples are between -0.61 and 1.07 (0.15 ± 0.31;1σ;N = 175) and between -0.15 and 2.62 (1.44 ± 0.56), respectively. Because the seasonal fluctuation of δ18O values were observed within the single shell, there was no significant difference in δ18O values between brachial and pedicle valves of the same specimens, and there is no significant difference in δ18O values among different genera of the same stratigraphic interval, we concluded that the samples studied were in oxygen isotope equilibrium with the seawater they lived in.
    Sedimentolgic evidence indicate that there was a transgression event from the Hengchun limestone to the overlain Szekou silty mudstone. However, there was no difference in δ18O values crossing this boundary. Therefore, We suggest that this transgression event shown by the facies change, was mainly caused by the tectonic subsidences rather than ice volume effect. We observed the mean δ18O values changed from 0.3 to -0.4 from the bottom of the Szekou Formation to the upper Szekou Formation. The Mg/Ca ratio only showed 0.3 mmol/mol difference (4.3 to 4.0 mmol/mol) between the same interval. Using the Mg/Ca temperature equation established from foraminiferal shells, the 0.3 mmol/mol difference would equivalent to 0.8℃(0.2 in δ18O) change. Thus, the remaining 0.5 difference in δ18O values might indicate decreasing in continental ice volume.

    目錄 頁碼 Abstract………………………………………………………………v 摘要…………………………………………………………………vii 誌謝…………………………………………………………………ix 目錄……………………………………………………………………x 圖目…………………………………………………………………xiii 表目…………………………………………………………………xix 第一章、緒論…………………………………………………………1 1.1前言……………………………………………………1 1.2穩定碳氧同位素的原理及應用………………………2 1.3碳酸鈣殼體微量元素的應用…………………………6 1.4腕足動物及恆春西臺地的相關研究…………………7 1.4.1腕足動物及其應用………………………………7 1.4.2恆春西台地的相關研究…………………………9 1.5研究目的………………………………………………13 第二章、研究區域及標本……………………………………………14 2.1研究區域……………………………………………14 2.1.1恆春石灰岩……………………………………14 2.1.2四溝層…………………………………………16 2.1.3恆春西台地之沉積環境………………………17 2.2腕足動物化石產狀…………………………………19 第三章、研究方法……………………………………………………21 3.1腕足動物化石處理及鑑定…………………………21 3.2腕足動物化石切片標本製作………………………21 3.3穩定碳氧同位素分析………………………………22 3.4微量元素分析………………………………………23 第四章、結果與討論…………………………………………………25 4.1腕足動物化石保存度………………………………25 4.1.1標本觀察………………………………………25 4.1.2透射光及陰極射線顯微鏡下觀察……………30 4.1.3微量元素………………………………………32 4.1.4穩定碳氧同位素………………………………38 4.2穩定同位素紀錄……………………………………40 4.3氧同位素的週期變化與環境意義…………………45 4.4恆春西台地晚更新世環境變遷……………………57 4.4.1氧同位素地層…………………………………57 4.4.2與海洋岩芯氧同位素地層對比之可能性……60 4.4.3恆春西台地晚更新世古環境重建……………62 第五章、結論…………………………………………………………64 參考文獻………………………………………………………………66 附錄一、腕足動物化石種屬鑑定及數量……………………………76 附錄二、穩定同位素分析之數值……………………………………78 附錄三、電子微探針化學元素分析之數值…………………………82 圖目 圖 頁碼 圖1.1腕足動物殼體示意圖(取自Shrock and Twenhofel, 1953)。A:背視;B:側視;C:後視;D:前視……………9 圖1.2恆春西台地地層層序及接觸關係圖,曲折黑線區域代表不整合接觸(符號說明請參照圖1.3;取自吳 及陳,1990) …………………………………………………11 圖1.3恆春西台地地層層序、接觸關係圖及柱狀圖符號說明 (取自吳及陳1990)。………………………………………12 圖2.1恆春西台地地理位置及其北段之地質圖(取自吳及陳, 1990)。………………………………………………………15 圖2.2恆春西臺地晚更新世地層之沉積體系及沉積環境變遷圖(WLT:萬里桐剖面,SGT:蟳廣嘴剖面;SK1: 頭溝剖面;地層剖面符號說明請參照圖1.3;取自 吳及陳1990)。………………………………………………18 圖2.3腕足動物化石採樣層位及其產狀。A:四溝層腕足動物化石產狀(殼體均保持完整);B:頭溝石灰岩體腕足動物化石呈種屬群聚性;C:貓鼻頭石灰岩體腕 足動物化石產狀(地層剖面符號說明請參照圖1.3)。……20 圖3.1切片於透射光顯微鏡(PL)及陰極射線顯微鏡(CL)下觀察 殼體之微細構造並區分殼體發光和不發光的部分。………22 圖3.2電子微探分析標本的影像處理,的位置上方做記號,圖中黑色的點為以針筆做的記號,紅色的點代表要分析的 位置。 ………………………………………………………24 圖4.1各層位標本保存度比較(SK:四溝層;TK:頭溝石灰岩 體;MBT:貓鼻頭石灰岩體)。 …………………………27 圖4.2各層位化石平均殼長、殼寬及殼厚(SK:四溝層;TK: 頭溝石灰岩體;MBT:貓鼻頭石灰岩體)。………………29 圖4.3殼體標本切片(SK1CF01)於透射光(上圖)及陰極射線(下圖)顯微鏡下的微細構造及發光現象。可觀察到有部份 化石殼體構造不明顯,且有再結晶的現象。………………31 圖4.4殼體標本切片(SK1CF01)於透射光(上圖)及陰極射線(下圖)顯微鏡下的微細構造及發光現象。可觀察到發光較明顯的部位主要集中在殼體破裂處、邊緣以及生長紋附 近。……………………………………………………………33 圖4.5殼體標本切片(SK1PP01)於透射光(上圖)及陰極射線(下圖)顯微鏡下的微細構造及發光現象。可觀察到標本殼 體內部有絲狀發光的現象,以及有一明顯發光區塊。……34 圖4.6殼體標本(SK4PP03)切片於透射光(上圖)及陰極射線(下圖)顯微鏡下的微細構造及發光現象。可觀察到在喙部 有較大的發光區域。…………………………………………35 圖4.7恆春西台地晚更新世腕足動物殼體Mn、Fe、Al、Si元素 含量對Ca含量的莫耳比值(單位:mmol/mol)。………37 圖4.8恆春西台地晚更新世腕足動物殼體的δ18O值對δ13C值分 佈圖。…………………………………………………………39 圖4.9頭溝剖面碳氧同位素地層(SK:四溝層;TK:頭溝石灰 岩體;地層剖面符號說明請參照圖1.3;error bars:2σ)。……42 圖4.10貓鼻頭剖面碳氧同位素地層(MBT:貓鼻頭石灰岩體地 層剖面符號說明請參照圖1.3;error bars:2σ)。…43 圖4.11MBT1PP01標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼 (Brachial valve)生長紋的位置。……………………………47 圖4.12 MBT4PP03標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼 (Brachial valve)生長紋的位置。……………………………47 圖4.13 SK1CF01標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼(Brachial valve)生長紋的位置;灰色虛線表示莖殼 (Pedicle valve)生長紋的位置。………………………………48 圖4.14 SK1CF03標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼 (Brachial valve)生長紋的位置。……………………………48 圖4.15 SK4PP02標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼(Brachial valve)生長紋的位置;灰色虛線表示莖殼 (Pedicle valve)生長紋的位置。………………………………49 圖4.16 SK4PP04標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼(Brachial valve)生長紋的位置;灰色虛線表示莖殼 (Pedicle valve)生長紋的位置。………………………………49 圖4.17 SK7CF02標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼(Brachial valve)生長紋的位置;灰色虛線表示莖殼 (Pedicle valve)生長紋的位置。………………………………50 圖4.18 SK7CF03標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼(Brachial valve)生長紋的位置;灰色虛線表示莖殼 (Pedicle valve)生長紋的位置。………………………………50 圖4.19 SK7PP03標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼(Brachial valve)生長紋的位置;灰色虛線表示莖殼 (Pedicle valve)生長紋的位置。………………………………51 圖4.20 SK8Kh02標本中穩定氧同位素數值於殼體內變化圖;圖中各點均為殼體不發光部分,黑色虛線表示腕殼(Brachial valve)生長紋的位置;灰色虛線表示莖殼 (Pedicle valve)生長紋的位置。………………………………51 圖4.21台灣附近海域水深二十公尺四季鹽度變化。(取自國科 會海洋科學研究中心海洋資料庫網頁)……………………52 圖4.22各層平均Mg/Ca比值和各層平均δ18O的比較(TK:頭溝石灰岩體;SK:四溝層;△T℃vsSK1=各層溫度-SK1 溫度)。………………………………………………………55 圖4.23台灣附近海域水深二十公尺四季平均溫度變化。(取自 國科會海洋科學研究中心海洋資料庫網頁)………………56 圖4.24恆春西臺地晚更新世地層之沉積體系、沉積環境及氧同 位素變遷圖(地層剖面符號說明請參照圖1.3;修改自吳 及陳、1990)。…………………………………………………58 圖4.25頭溝及貓鼻頭剖面氧同位素地層嘗試對比海洋岩芯17950-2及SPECMAP氧同位素地層(修改自游, 2002)。………………………………………………………61 表目 表 頁碼 表3.1電子微探針分析各元素的測定時間以及最低偵測值。……24 表4.1 各層位採到的化石數量及標本保存度(SK:四溝層;TK: 頭溝石灰岩體;MBT:貓鼻頭石灰岩體)。………………26 表4.2各層位化石平均殼長、殼寬及殼厚(SK:四溝層;TK: 頭溝石灰岩體;MBT:貓鼻頭石灰岩體)。………………28 表4.3恆春西台地晚更新世腕足動物化石不發光(NL)殼體、發光(L)殼體、發光圍岩(LM)穩定碳氧同位素數值()統計 比較結果。……………………………………………………41

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