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21.
亚洲中部干旱区丝绸之路沿线环境演化与东西方文化交流   总被引:6,自引:0,他引:6  
基于环境记录、考古发现,以及同位素资料,对亚洲中部干旱区丝绸之路沿线的全新世以来的环境变化和东西方文化交流进行了梳理。结果表明,研究区独特的地理环境和环境变化过程,深刻地影响着文化的发展和传播。河西走廊受季风影响,表现出季风—西风过渡带干湿变化的模式,晚全新世气候趋向干旱;从新疆到中亚的丝绸之路沿线的环境变化比较一致:在早全新世(BC 6000以前)主要为干旱环境,植被以荒漠类型占优势;中晚全新世,湿润程度增加,草原植被扩展。新疆和中亚全新世中晚期较为湿润的环境为东西文化交流提供了较适宜的环境基础。得益于环境条件的改善,东西方文化交流融合的进程在BC 2000以后明显加速。在BC 2500-2000期间,东西方农业文化在丝绸之路沿线接触融合,是史前丝绸之路的首次贯通;在BC 2000-1000期间,丝绸之路沿线绿洲地带形成了以小麦—/大麦—粟黍—畜牧为特征的混合型经济特征,并扩散到欧亚草原带,和周围的畜牧业形成鲜明的对照,并持续到历史时期。这种空间分异,是地理环境和东西方文化交流共同作用的结果。在史前时期,东西方农业的相向传播和融合,基本沿着山前地带的绿洲蛙跳式前进。到了历史时期,政治版图的变化是影响丝绸之路的首要因素,但环境变化仍然是不可忽略的因素。  相似文献   
22.
正Epidemics are biological disasters resulting from the widespread occurrence of acute and severe infectious diseases that are normally caused by viruses, bacteria and parasites.They are amongst the most destructive of all natural disasters suffered by humans (Gong, 2019). The pathogens that cause epidemics have always existed in nature, understanding the spatiotemporal distribution of past epidemics is important for preventing and controlling future epidemics.  相似文献   
23.
末次冰盛期时吉兰泰盐湖的湖泊状态与古气候特征   总被引:1,自引:1,他引:0  
通过现代季风边缘区的吉兰泰盐湖钻孔JLT11-A孔沉积岩芯的矿物分析,结合地层盘星藻的含量探讨末次冰盛期(LGM)时湖泊的状态和古气候特征。结果显示:在LGM时吉兰泰湖泊沉积矿物主要是石英、长石为主的碎屑岩沉积,含量在85%左右,显示出陆源碎屑矿物的高输入状态,可能指示区域寒冷干旱的环境;其次是以方解石为主的碳酸盐的沉积,含量约为10%;氯化物为主的石盐类矿物一般不足5%,但持续存在,指示湖泊仍然有较高的盐度,因此地层中的淡水藻类盘星藻可能是由河流输入。由于陆源碎屑矿物输入强烈,矿物组合可能难以直接指示吉兰泰盐湖湖水状态。区域的干冷的气候与大多数的古气候记录一致,而与新疆西部的冷湿的环境不同。对比邻近区域的古气候研究结果发现,本区域在LGM时段夏季降水相对于冰消期偏多,而相对于MIS3阶段晚期偏少,整体夏季风减弱。吉兰泰盐湖末次冰盛期到末次冰消期以来矿物组合的变化表明,湖泊环境可能受到夏季太阳辐射、全球与区域温度变化以及夏季风强弱变化的影响。  相似文献   
24.
根据采自青海南部高原曲麻莱、治多地区的圆柏树轮样芯建立的树木年轮年表,重建了近450年来高原春季(4~6月)的最高气温序列。采用多窗谱分析、小波分析和Yamamoto突变检测分析等方法综合研究了重建的高原春季最高气温序列的准周期性及多尺度突变特征。结果显示,青海南部高原地区春季最高气温的变化存在较明显的31~54年低频和2~4年高频准周期波动特征。在30~54年时间尺度上,青海南部高原春季最高气温变化经历了1622~1639年、1798~1816年、1896~1913年和1933~1951年的偏冷期以及1684~1703年、1779~1797年、1817~1835年和1914~1932年的偏暖期。分析还发现,青南高原地区春季最高气温在冷暖期的转换过程中存在着较明显突变现象,在30~40年时间尺度上,Tm序列在1610年、1668年、1816年、1915年和1934年前后的突变是明显的。交叉相关分析显示,在滞后7.5年左右,青海南部高原春季最高气温波动与太阳黑子周期长度的变化呈显著负相关。  相似文献   
25.
中纬度亚洲地区存在主要受季风环流影响的东南部湿润地区(简称季风区)和主要受西风环流控制的内陆干旱区(包括青藏高原北部高寒干旱区,简称西风区)。根据对近年来新发表的气候变化记录证据梳理总结,发现西风区在中—晚全新世气候湿润,与亚洲季风在早—中全新世强盛的格局显著不同。过去千年的西风区中世纪暖期干旱,而小冰期相对湿润,与此相对,万象洞石笋氧同位素记录则显示季风降水在中世纪暖期时整体处于高值,在小冰期处于低值段。在近百年,尤其是近50a,西北干旱区湿度增加,而季风影响范围内的西北东部和华北等地变得更干。不仅如此,在分属西风和季风影响区的青藏高原北部和南部,年代际—百年尺度上降水变化也表现出反相位关系。据此我们提出,亚洲中部西风带控制区在现代间冰期从数千年到年代际的各个时间尺度上均存在不同于季风区的湿度(降水)变化模式,称之为现代间冰期气候变化的西风模式。  相似文献   
26.
Environmental magnetic studies were conducted on a 9.42-m-long sediment core from Gonghai Lake, North China. Radiocarbon dating indicates that the record spans the last 15,000 cal year BP. The principal magnetic mineral in the sediments is pseudo-single domain magnetite of detrital origin with minimal post-depositional alteration. Although the variations in the concentration of detrital magnetic minerals and their grain size throughout the core reflect inputs from both soil erosion and eolian dust, it is shown that their climatic and environmental significance changes with time. In the lowermost part of the core, ~15,000–11,500 cal year BP, the magnetic minerals were supplied mainly by bedrock erosion, soil erosion and dust input when climate ameliorated after the cold and dusty last glacial maximum. The increasing magnetic susceptibility (χ) in this interval may indicate a combination of changes in the lake environment together with catchment-surface stabilization and a decreasing proportion of dust input. In the central part of the core, ~11,500–1,000 cal year BP, the detrital magnetic minerals mainly originated from dust inputs from outside the catchment when the lake catchment was covered by forest, and catchment-derived sediment supply (and thus the lake sediment accumulation rate) were minimal. The generally low concentration of magnetic minerals in this part of the core reflects the highest degree of soil stability and the strongest summer monsoon during the Holocene. In the uppermost part of the core, the last ~1,000 years, detrital magnetic minerals mainly originated from erosion of catchment soils when the vegetation cover was sparse and the sediment accumulation rates were high. Within this part of the core the high magnetic susceptibility reflects strong pedogenesis in the lake catchment, and thus a strong summer monsoon. This scenario is similar to that recorded in loess profiles. Overall, the results document three main stages of summer monsoon history with abrupt shifts from one stage to another: an increasing and variable summer monsoon during the last deglacial, a generally strong summer monsoon in the early and middle Holocene and a weak summer monsoon in the late Holocene. The results also suggest that different interpretational models may need to be applied to lake sediment magnetic mineral assemblages corresponding to different stages of environmental evolution.  相似文献   
27.
干旱区晚第四纪已有较多高湖面与湖泊演化的报道和研究,对于认识区域环境变化有重要意义,但高湖面出现的时间尚存争议,高分辨率的气候环境记录仍相对缺乏.本文通过青海共和盆地达连海湖岸地貌考察和AMS 14C年代学研究,讨论达连海古湖晚第四纪高湖面出现的可能时间;并通过达连海DLH99孔岩芯年代和高分辨率代用指标,讨论高原东北缘末次冰消期以来的气候环境变化.达连海周围存在6级高湖面岸线或台地,14C测年结果显示,最低的两级湖岸堤形成于全新世,其余湖岸台地年代均老于44cal.kaB.P.,当时在达连海地区形成一个较大的古湖泊.DLH99孔显示达连海近15cal.kaB.P.沉积了40.92m的湖相沉积物,平均沉积速率高达2.7mm/a.孢粉资料揭示出,现代干旱的共和盆地在末次冰消期以来存在两个山地针叶林发育阶段,分别位于末次冰消期和全新世早中期.全新世早中期是适合山地针叶林植被发育的气候最宜期,而晚全新世山地森林植被整体衰退.粒度分析结果显示,达连海全新世低水位时期对应于岩芯中部山地森林植被发育的晚期,出现较强烈干旱事件(岩芯深13~15m段),这种湖泊水位与植被所指示的气候变化不一致现象(即低水位时期盆地内耐旱植物和山地乔木花粉同时增加),可能揭示出干旱区山地与盆地环境对区域气候不同响应.达连海存在的系列高湖面和冰消期以来的完整气候记录,为理解晚第四纪季风边缘区气候变化过程及其机制提供了条件.  相似文献   
28.
There has been much recent debate about Holocene climate variation in the monsoon region of China, especially the temporal pattern of variations in precipitation, the time-transgressive nature of the Holocene precipitation maximum, and the extent to which variations in regions influenced by the Indian Summer Monsoon (ISM) and the East Asian Summer Monsoon (EASM) have been synchronous. We summarize and compare carbonate oxygen-isotope records (δ18Ocarb) from ten lakes within the present-day ISM region. We discuss their paleoclimate significance considering the present-day moisture source, isotopic composition of precipitation and the hydrological setting. The δ18Ocarb records are controlled mainly by the isotopic composition of lake water, which in turn is a function of regional Precipitation/Evaporation (P/E) balance and the proportion of precipitation that is monsoon-derived. We normalized the δ18Ocarb data and used these records to generate an integrated moisture index. This index, along with oxygen-isotope records from speleothems and carbon-isotope records (δ13Corg) from peats within the monsoon region, suggests that Holocene climate was broadly synchronous across the monsoon region and, within the limits of accuracy of the existing age models, provides no strong evidence for previously-proposed anti-phasing of the ISM and the EASM. Stable-isotope records from lake sediments and peat bogs have excellent potential for providing high-quality paleoclimate data for monsoon Asia, and complement high-resolution speleothem sequences, which are only found in certain localities.  相似文献   
29.
兰州河谷盆地近1万年的孢粉组合及气候变迁   总被引:7,自引:0,他引:7  
汪世兰  陈发虎 《冰川冻土》1991,13(4):307-314
  相似文献   
30.
An annual (July to June) precipitation reconstruction for the period AD 1760–2010 was developed from a Picea crassifolia regional tree‐ring chronology from two sites in the northern mountainous region of the Hexi Corridor, NW China. This reconstruction explains 52.1% of the actual precipitation variance during the period 1951 to 2010. Spatial correlations with gridded land‐surface data reveal that our reconstruction contains a strong regional precipitation signal for the Hexi Corridor and for the southern margin of the Badain Jaran Desert. Significant spectral peaks were identified at 31.9, 11.1, 8.0, 7.0, 3.2, 2.6 and 2.2 years. A large‐scale comparison indicates that our reconstruction is more consistent with climate records of a Westerly‐dominated Central Asia, and that the Westerlies have a greater impact on the precipitation in this region than the Asian summer monsoon. Our reconstructed precipitation series is significantly correlated with sea‐surface temperature (SST) in the tropical Atlantic Ocean (positive), the tropical Indian Ocean (positive), the western tropical Pacific Ocean (positive), and the western North Pacific Ocean (negative). The spatial correlation patterns between our precipitation reconstruction and SSTs of the Atlantic and Pacific Oceans suggest a connection between regional precipitation variations and the high‐mid‐latitude northern atmospheric circulations (Westerlies and Asian summer monsoon).  相似文献   
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