亚热带资源与环境学报
亞熱帶資源與環境學報
아열대자원여배경학보
JOURNAL OF SUBTROPICAL RESOURCES AND ENVIRONMENT
2011年
3期
31-39
,共9页
胡凡根%李志忠%姜修洋%靳建辉%张辉%赵倩%马鹏
鬍凡根%李誌忠%薑脩洋%靳建輝%張輝%趙倩%馬鵬
호범근%리지충%강수양%근건휘%장휘%조천%마붕
泥炭%腐殖化度%全新世%古气候%福建天湖山
泥炭%腐殖化度%全新世%古氣候%福建天湖山
니탄%부식화도%전신세%고기후%복건천호산
peat%humification%Holocene%paleaoclimate%Tianhu Mountain in Fujian province
以14C测年为基础,构建了天湖山泥炭剖面的年代序列,通过对研究区泥炭腐殖化度与有机质的分析研究,发现两者呈现出很好的相关性,共同记录了研究区约9.5kaBP以来的气候变化,可划分出3个主要阶段:1)早期(9.5 ka BP-6.3 ka BP)泥炭腐殖化度最低,指示气候湿热,其中7.9ka BP-6.3kaBP为整个剖面腐殖化度最低值阶段,可能为研究区全新世气候最适宜期(全新世大暖期)阶段;2)中期(6.3 ka BP~2.8 ka BP)泥炭腐殖化度较低,指示气候温凉湿润;3)晚期(2.8 ka BP以来),泥炭腐殖化度偏高,波动较大,指示气候温凉偏于.利用redfit红色噪声谱分析发现,有机质含量变化时间序列中存在948a、268a、342a的准周期,反映了中低纬度亚热带季风区气候变化对太阳活动的响应.
以14C測年為基礎,構建瞭天湖山泥炭剖麵的年代序列,通過對研究區泥炭腐殖化度與有機質的分析研究,髮現兩者呈現齣很好的相關性,共同記錄瞭研究區約9.5kaBP以來的氣候變化,可劃分齣3箇主要階段:1)早期(9.5 ka BP-6.3 ka BP)泥炭腐殖化度最低,指示氣候濕熱,其中7.9ka BP-6.3kaBP為整箇剖麵腐殖化度最低值階段,可能為研究區全新世氣候最適宜期(全新世大暖期)階段;2)中期(6.3 ka BP~2.8 ka BP)泥炭腐殖化度較低,指示氣候溫涼濕潤;3)晚期(2.8 ka BP以來),泥炭腐殖化度偏高,波動較大,指示氣候溫涼偏于.利用redfit紅色譟聲譜分析髮現,有機質含量變化時間序列中存在948a、268a、342a的準週期,反映瞭中低緯度亞熱帶季風區氣候變化對太暘活動的響應.
이14C측년위기출,구건료천호산니탄부면적년대서렬,통과대연구구니탄부식화도여유궤질적분석연구,발현량자정현출흔호적상관성,공동기록료연구구약9.5kaBP이래적기후변화,가화분출3개주요계단:1)조기(9.5 ka BP-6.3 ka BP)니탄부식화도최저,지시기후습열,기중7.9ka BP-6.3kaBP위정개부면부식화도최저치계단,가능위연구구전신세기후최괄의기(전신세대난기)계단;2)중기(6.3 ka BP~2.8 ka BP)니탄부식화도교저,지시기후온량습윤;3)만기(2.8 ka BP이래),니탄부식화도편고,파동교대,지시기후온량편우.이용redfit홍색조성보분석발현,유궤질함량변화시간서렬중존재948a、268a、342a적준주기,반영료중저위도아열대계풍구기후변화대태양활동적향응.
The age series of a peat profile at Tianhu Mountain in northern Fujian province was construtted on the basis of radiocarbon date. The geography location of the profile in the southern subtropic is sensitive to global climate changes. The age series shows that the peat profile formed mainly since 9. 5ka BP. According to the analysis of the peat humification and organic content of the profile, we find that both of the proxies show well correlation and make a clear identification of climatic shifts in Holocene. Holocene climate changes can be divided into three phases in the region : 1 ) lower humification phase (9.5 ka BP-6. 3 ka BP) with the lowest during 7.9 ka BP-6.3 ka BP, which suggests hot and moist climate, and may be corresponding to the Holocene optimum of the studied area ; 2) low humification phase (6.3 ka BP -2. 8 ka BP), indicating a warm and moist climate state; 3) the latest phase (since 2. 8 ka BP) of high humification with large fluctuation, reflecting a dry and cool climate condition. In addition, using red noise spectrum analysis with the redfit 3.8 organic record show some aquasi-periods of 948 a, 268 a, 342 a consistent with solar activity cycles, which suggested that summer monsoon climate change was probably sensitive to the secular solar activity.