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1.
13kaBP以来滇池地区古环境演化   总被引:6,自引:1,他引:5  
根据DC93一1孔孢粉组合、总有机碳(TOC)、总氮(TN)、碳氮比(C/N)、有机碳同位素δ13Corg、磁化率(χ)、频率磁化率(χfd)等资料,结合14C、210Pb和137Cs测年,滇池地区13ka以来的古环境演化历史经历了以下几个阶段:13—10.2kaBP.气候偏凉湿,湖水深度不大;10.2-7.5kaBP,气候向暖湿过渡.湖水渐深;7.5-4.0kaBP,气候暖湿,出热条件达到最佳配制,湖水也最深.6.5kaBP前后,气温最高,这一时段古气候状况存在次级波动;4.0-2.7kaBP,气候突转干旱.湖水最浅;2.7-1.7kaBP,气候温湿,湖面扩大,湖水变深;1.7kaBP,人类活动影响的加剧,使湖泊环境的变化更为复杂.  相似文献   

2.
鄱阳湖湖口地区4500年来孢粉组合及古气候变迁   总被引:13,自引:3,他引:13  
通过对鄱阳湖湖口梅家刘ZK_2孔沉积物的孢粉分析研究,初步恢复了4500年来湖口地区的古植被演替及古气候变迁历史.其古气候变化经历了以下几个阶段:4.5-3.8kaB.P,气候暖湿;3.8-3.4kaBP,气候凉偏干;3.4—3.0kaB.P,气候温暖偏湿;3.0kaB.P.前后,为一短暂的降温时期,气候凉湿;2.8-2.35kaB.P,气候温暖偏湿;2.35kaBP.以来,气候偏凉,但仍存在数次微弱的冷暖波动.  相似文献   

3.
通过对嘎顺淖尔XK1孔沉积岩芯的岩性特征及多种环境代用指标的综合分析,初步认为:中更新世早中期,29.6 -42.5m(推测时代为距今218.3 kaBP以前),气候温凉偏干,滨湖与洪积相交替;距今218.3-172.8 kaBP气候温凉偏湿, 湖泊面积扩大,以滨浅湖-浅湖沉积为主,并一度出现半深湖环境;距今172.8-93.4 kaBP,沉积环境为湖滨相与洪积相交替,气候特点是冷凉干旱;距今93.4-67.4 kaBP,沉积环境以淡水浅湖为主,夹湖滨相.气候温偏湿;距今67.4-54.0 kaBP ,湖滨相沉积为主,气候温凉偏干;距今54-48.9 kaBP,气候暖湿的浅湖环境,气温较高;距今48.9-42.6 kaBP,凉而且干旱的气候特点,沉积相为湖滨相;42.6-0 kaBP,气候暖湿、凉干交替,浅湖相为主.  相似文献   

4.
古昆仑湖地区183-90kaBP间的微体古生物与环境变迁   总被引:1,自引:0,他引:1  
古昆仑湖位于昆仑山垭口昆仑河谷地,大约在200kaBP前已开始沉积,沉积物为一套灰、灰绿、土黄色粉砂质、砂质粘土,厚约7m.在纳赤台西北剖面5.6-2.4m层段产较多微体化石,介形类有8属12种:Ilyocypris biplicata(Koch),I.bradyi Sars,Eucypris crassa(Mller),E.elliptica(Baird),E.rischtanica Schneider,Candona candida(Mller),Stenocypriscf.major(Baird),Cypridopsis obesa Brady Robertson,Prionocypris gansenensis Huang,Potamocypris villosa(Jurine),P.cf.wolfi Brehm和Limnocythere dubiosa Daday等.轮藻类有Chara aliensis Z.Wang,Chara gansenensis S.Wang和Charasp.根据U系法测年,含化石地层的年龄大约为168-90kaBP,属于倒数第二次冰期至末次间冰期早期.按生物组合和沉积物特征分析,古昆仑湖区在183-90kaBP的环境气候变化大致有两个大的期次、6个小期次:(1)183-130kaBP冷湿期,湖区环境较冷湿,湖泊水质较淡,水温不高.早期(约183-170kaBP),湖面较宽,水体较深,环境动荡,化石贫乏;中期(约170-151.3kaBP),湖面有一定收缩,水质含盐度有所提升,水温仍不高,湖区环境湿度较大;晚期(约151.3-130kaBP),化石贫乏,生态环境、水质条件可能与早期类同.(2)130-90kaBP凉湿期,湖内生态环境较好,生物门类中除介形类外,出现沉水性植物轮藻类,且介形类生物量较前期有很大增加,属种分异度较好.早期(约130-105kaBP),偏冷湿;中期(约105-98kaBP),凉湿,为生物大发展大繁盛时期;晚期(约98-90kaBP),偏凉湿,在98-93kaBP,环境不宜生物生息,化石贫乏;约93-90kaBP,生态环境有所改善,有介形类3属5种,但生物量较小.  相似文献   

5.
40-30kaBP相当于末次冰期大间冰阶或海洋氧同位素MIS3晚期。青藏高原在岁差周期夏季高太阳辐射作用下,据古里雅冰芯与若干孢粉记录指示温度比现在高2-4℃,高原及邻区众多大湖的高湖面记录指示大范围降水丰沛。应用Kutzbach水能平衡方程推算了封闭湖泊流域(青海湖、扎布耶/拉果错、阿克塞钦/甜水海)年平均降水可达640mm,560mm,260mm,分别是现代降水的1.7倍,3倍,5倍。高原及邻区包括祁连山以北和云南部分区域在内的大降水对水系河流产生了重大影响。高原内部河湖串联,水系合并;如色林错、班戈错、纳木错串联为高原上最大的内陆水系;若尔盖古湖外流并入黄河水系;长江上游大水在三峡束狭形成强烈旋涡掏蚀成低于海平面的深槽,形成了深槽中、底部的砂砾沉积。这次高温大降水事件是由高太阳辐射导致的由青藏高原高温热低压加强、热带洋面增暖蒸发强烈、南半球越赤道气流增强共同作用而形成的高原特强夏季风,同时极地冰盖迫使西风带南移也可能加强了对高原尤其是西部的降水.H3事件(27kaBP)促进了高温大降水事件的结束,H4事件(35.5kaBP)则可能短期萎缩了夏季风,使高温大降水事件呈现不稳定性特点。  相似文献   

6.
末次间冰期以来我国东部沙区的古季风变迁   总被引:25,自引:2,他引:25  
根据130ka BP以来东部沙区的地质记录,将本区古季风划分为末次间冰期(130~70kaBP)夏季风为主时期、末次冰期(70~10kaBP)冬季风为主时期和冰后期(10kaBP至今)夏季风为主的不稳定时期3个演化时期,以及末次间冰期(120ka BP和100~95kaBP)冬季风增强期、末次冰期(59~21kaBP)夏季风增强期、冰后期早全新世(10~7.5kaBP)夏季风增强期、中全新世(7.5~4kaBP)夏季风鼎盛期和晚全新世(4kaBP至今)夏季风衰弱期等若干阶段。冬、夏季风的转换以突变为主。夏季风北界位置从末次间冰期的马鬃山-乌兰巴托退至末次冰期的黄土高原砂黄土带北界附近,复又进到全新世最佳期的山丹-雅布赖山一带,最后退到现代阴山北麓-呼伦贝尔一线,反映东亚季风环流的夏季风呈现波动减弱的趋势。影响季风变迁的因素复杂,特别是全新世期间的短周期波动应加强研究。  相似文献   

7.
最近150ka黄土高原夏季风气候格局的演化   总被引:11,自引:2,他引:11  
通过覆盖黄土高原的30个黄土-古土壤剖面磁化率的测量,绘制了倒数第二冰期(约150kaBP)、末次间冰期(约130~74kaBP)、末次冰期间冰段(约59~24kaBP)、末次冰期极盛期(约18kaBP)及全新世气候适宜期(约9kaBP)共5个特征气候期的磁化率等值线略图。以末次冰期极盛期黄土的磁化率作为风成粉尘的原始磁化率,相对于这个本底值的磁化率增量可作为夏季风气候活动在相应地区的指示及其相对强度。据此,初步恢复了由磁化率等值线所反映的各个时期夏季风气候的空间格局,并估计了夏季风平均锋面的活动范围及其北界的可能位置,从而粗略地再现了最近150ka黄土高原夏季风气候格局的演化过程。同时提出,这一演化过程不仅包含了控制东亚季风环流的各个成员的位置、强度及它们之间的相互配置方式等重要信息,而且可能也与极地和穿越赤道的气流有关。  相似文献   

8.
通过分析阿尔金断裂带西段车尔臣河出山口以西 85°~ 86°E的高精度SPOT卫星影像 ,结合野外考察和年代学研究 ,对阿尔金断裂带西段 3个典型走滑断层的断错地貌进行了研究。在库拉木拉克 ,阿尔金断裂带西段自 (6 0 2± 0 4 7)kaBP以来的左旋滑动速率为 (11 6± 2 6 )mm/a ,自 (15 6 7± 1 19)kaBP以来的左旋滑动速率为 (9 6± 2 6 )mm/a ;阿羌牧场附近 ,自 (2 0 6± 0 16 )kaBP以来的左旋滑动速率为 (12 1± 1 9)mm/a ;达拉库岸萨依附近 ,自 (4 91± 0 39)kaBP以来的左旋滑动速率为(12 2± 3 0 )mm/a。由此得到阿尔金断裂带全新世以来的平均滑动速率约为 (11 4± 2 5 )mm/a。以阿尔金断裂带走向N75°E计算 ,阿尔金断裂带西段左旋走滑所吸收的青藏高原SN向缩短速率为 (3 0±0 6 )mm/a  相似文献   

9.
藏北色林错流域的水文特征   总被引:4,自引:0,他引:4  
本文报道了1997年降1998年夏季对藏北色林错等水体水文特征的考察情况,结果表明,色林错是一个大型深水湖泊,表层水温在下午4:30左右达到最高,清晨7:30左右时最低,浅水区域表层湖水在6月份的极端最高水温为21.2℃,极端最低水温为11.0℃,而日平均水温变幅仅5.6℃,其幅度大于在同一时段湖区内不同区域之间表层水温的变化,色林错湖水的pH值较高咪9.19-9.66;表层水的pH昼夜变化较小,仅0.15,最高值出现在凌晨,同时水体不同区域及深度的pH值基本一致,其溶解氧变化在4.62-5.12mg/L,而且不同深度水层之间的变幅较小,仅0.03-0.35mg/L;但其湖汊浆东如瑞溶解氧的昼认变幅为4.58-5.59mg/l;盐度的日变幅为1.60%-2.20%,考察表明,藏北水体的盐分有一个从河流到湖泊、以及由流水向静水富集的趋势;鱼类的分布与水体盐分的含量密切相关,即鱼类随着水体盐分的增加而消失,代之以嗜盐性卤虫的出现及大量繁衍。  相似文献   

10.
藏西北结则茶卡湖面到高位湖岸线间湖泊记录发育,沿岸湖积物中3个U系年龄分别为14.2±1.2kaBP、38.0±3.5 kaBP和41.6±3.2 kaBP,6个浅井沉积物中CaO、MgO、NaCl、LiCl、B2O3的含量与沉积物形成时代和环境有一定的关联性.在中更新末期,该湖可能处于高湖位期,随着晚更新世初期以来气候变干,湖面开始下降,湖泊逐渐萎缩,湖水盐度逐渐增加,Ca和Mg含量变高,但在30kaBP左右,气候有过短暂湿润期,湖水出现返淡趋势,之后湖水进一步浓缩,湖水中Na、B、Li含量显著增高,盐湖大约在15kaBP左右形成.  相似文献   

11.
利用富集因子和Hakanson潜在生态风险指数法,结合年代学结果,对长江中下游湖泊太白湖、龙感湖、巢湖和西氿沉积物中重金属元素Co、Cr、Cu、Ni、Pb、Zn的富集程度进行了评价,并比较分析了上述重金属的潜在生态风险.结果表明,太白湖和龙感湖沉积物中各重金属富集程度均较低;巢湖沉积物中Co、Cr、Ni的富集程度接近中等水平,而Cu、Pb、Zn的富集已经达到中等水平;西氿沉积物中Co的富集非常低,Cr、Ni富集水平较低,Pb达到中等富集,Cu、Zn达到较高的富集水平.对4个湖泊沉积物中重金属的综合污染程度进行比较:巢湖西氿龙感湖太白湖.各湖泊沉积物中单一元素的潜在生态风险都较低,但是,根据多元素潜在生态评价指数,各湖泊沉积物中重金属存在明显不同的潜在生态风险:巢湖西氿龙感湖太白湖.总体上看,太白湖和巢湖沉积物重金属污染以及潜在生态风险自1965年以来一直在加重,而龙感湖和西氿沉积物在表层有下降的趋势.这种差异与各个湖泊流域内人类活动的方式和强度密切相关.巢湖和西氿流域内城市化、工业化发展迅速,人类活动导致大量重金属元素进入湖泊,给湖泊带来明显的污染;而龙感湖和太白湖流域人类活动主要以农业活动为主,人类活动对重金属的贡献相对较小.  相似文献   

12.
洞庭湖冲淤变化分析(1956-1995年)   总被引:22,自引:1,他引:22       下载免费PDF全文
施修端  夏薇  杨彬 《湖泊科学》1999,11(3):199-205
根据1956-1995年洞庭湖水文泥沙原型观测和地形测绘等翔实资料,运用输沙量法和地形法对洞庭湖冲瘀变化进行了认真的统计分析,分析结果表明,洞庭湖来水量以四水为主,占57.8%,来沙量以四口为主,多年平均沉积率为74.0%,出湖仅占26.0%;淤积量及湖水沙量随着四分流分沙比的减少而减少。  相似文献   

13.
长江中下游湖泊沉积物生物可利用磷分布特征   总被引:24,自引:5,他引:24  
利用化学提取方法对太湖6个样点,巢湖4个样点和龙感湖3个样点的表层沉积物和沉积物柱样进行了生物可利用磷(BAP)测定.北太湖表层沉积物的平均含量为259.5mg/kg,而西部湖区平均含量为114 6mg/kg,湖心区平均含量为40.6 mg/kg,而东太湖平均含量为50.7 mg/kg,呈显著北高南低的特点.巢湖西部湖区表层沉积物的BAP平均含量为 254.2 mg/kg,而东部湖区BAP含量降低为101.9mg/kg.龙感湖表层沉积物BAP平均含量为67.8 mg/kg.显著表明污染程度较高的湖区沉积物的BAP相应较高.BAP在沉积物中随深度呈指数降低,显示生物可利用磷在沉积作用下向稳定的非活性磷转化.夏季沉积物中的BAP由于生物活性的增强向溶解态活性磷转化过程增强,显示为较低的BAP含量.BAP 含量与水体溶解态活性磷呈正相关关系,且该相关性在BAP含量较低的样点好于高BAP的样点.  相似文献   

14.
The evolutions of diatom floras and the total phosphorous (TP) concentrations in the historical period were reconstructed for two lakes, Longgan and Taibai in the middle Yangtze River,based on high resolutional fossil diatom study from two sediment cores and an established regional diatom-TP transfer function. The TP concentration in Longgan Lake changed slightly in the range of 36-62 μg/L and kept its middle trophic level in the past 200 years. The changes of diatom assemblages reflect a macrophyte-dominated history of the lake. During the nineteenth century, the lake TP concentration increased comparatively, corresponding to the increase in abundance of benthic diatoms. The progressive increase of epiphytic diatoms since the onset of the twentieth century indicates the development of aquatic plants, coinciding with the twice drops of water TP level. The TP concentration in Taibai Lake kept a stable status about 50 μg/L before 1953 AD, while diatoms dominated by facultative planktonic Aulacoseira granulata shifted quickly to epiphytic diatom species, indicating a rapid expansion of aquatic vegetation. During 1953-1970 AD, the coverage of aquatic plants decreased greatly inferred by the low abundance of epiphytic diatoms as well as declined planktonic types, and the reconstructed TP concentration shows an obvious rising trend firstly, suggesting the beginning of the lake eutrophication. The lake was in the eutrophic condition after 1970, coinciding with the successive increase of planktonic diatoms. The comparison of the two lakes suggests the internal adjustment and purification function of aquatic plants for nutrients in water. The discrepancy of TP trends in the two lakes after 1960 reflects two different patterns of lake environmental response to human disturbance. Sediments in Taibai Lake clearly recorded the process of lake ecological transformation from the macrophyte-dominated stage to the algae-dominated stage. The limits of TP concentration (68-118 μg/L) in the transitional state can be considered as the critical value between the two stable ecosystems. Further work will be necessary to provide more evidence from the sediments in more eutrophic lakes for the primary inference. The reconstructive TP level and the inference of aquatic plants from fossil diatoms in different lakes, as well as their comparison provide a scientific basis for ecological restoration of eutrophic lakes in research regions.  相似文献   

15.
Based on the total phosphorous (TP) concentration in sediment core, the TP concentration in lake water quantitatively reconstructed from fossil diatoms and diatom-TP transfer function in the Longgan Lake during the last 200 years, the temperature and precipitation data from meteorological observation for the last 50 years, the temperatures and precipitation sequences of climate simulation for the last 200 years, as well as the amount of the agricultural phosphate fertilizer in Longgan area for nearly 50 years, the characteristic and the law of the nutrient status evolution were analyzed, and the influence of the climatic factor, the anthropologic factor and the aquatic biology factor on the nutrient status evolution and its mechanism were discussed for the Longgan Lake during the last 200 years. The results showed that, in the nearly 200 years, the TP concentration in the sediment core of the Longgan Lake gradually increased, its range of variation was situated between 330-580 mg/kg, the mean value was 388 mg/kg, a nearly 30-year vibration adjustment period existed at 1950 around. The TP concentration in lake water changed in a different way. Before 1950, it had a slow increasing tendency in fluctuated background, to 1950 around it reached up to the mean value (52.18μg/L), and vibrated and adjusted around the mean value, then it fast declined, its change range was situated between 37.75-62.33μg/L. The analyses indicated that, in the centennial time scale, the climate change was the main controlling factor, while in the decadal time scale in the recent 50 years, human activities were the leading factors for the nutrient status evolution of the Longgan Lake. 60% of the variability of the TP concentration in the sediments and 57% of that in lake water were due to human activities. The differentiation between phosphorus concentration in the sediment and in the lake water reflected the response processes and the adjustment abilities of the lake aquatic ecosystems to the lake nutrient level, implying the maintenance and the destruction of the balances between the algae and the aquatic plants, as well as the corresponding accumulating characteristics of the phosphorus.  相似文献   

16.
沔阳地区一万多年来孢粉记录的环境演变   总被引:15,自引:3,他引:12  
依据M1孔孢粉组合特征及^14C年龄数据,结合孢粉数理统计分析,重建了江汉平原沔阳地区一万多年来的古季风气候变迁序列。研究结果表明,该区气候经历了六个阶段的变化。6.7-4.4kaBP间。为水热配置最佳时期。夏季降水显著增多;3.9-12.7kaBP,气温有所下降,但有效湿度很高,为古云楚泽扩张时期,其湿度的增加既受锋面降水带的影响,同时恙长江南移,河床迅速抬高有关。约6kaBP后,人类活动在本区  相似文献   

17.
Based on the total phosphorous (TP) concentration in sediment core, the TP concentration in lake water quantitatively reconstructed from fossil diatoms and diatom-TP transfer function in the Longgan Lake during the last 200 years, the temperature and precipitation data from meteorological observation for the last 50 years, the temperatures and precipitation sequences of climate simulation for the last 200 years, as well as the amount of the agricultural phosphate fertilizer in Longgan area for nearly 50 years, the characteristic and the law of the nutrient status evolution were analyzed, and the influence of the climatic factor, the anthropologic factor and the aquatic biology factor on the nutrient status evolution and its mechanism were discussed for the Longgan Lake during the last 200 years. The results showed that, in the nearly 200 years, the TP concentration in the sediment core of the Longgan Lake gradually increased, its range of variation was situated between 330–580 mg/kg, the mean value was 388 mg/kg, a nearly 30-year vibration adjustment period existed at 1950 around. The TP concentration in lake water changed in a different way. Before 1950, it had a slow increasing tendency in fluctuated background, to 1950 around it reached up to the mean value (52.18 μg/L), and vibrated and adjusted around the mean value, then it fast declined, its change range was situated between 37.75–62.33 μg/L. The analyses indicated that, in the centennial time scale, the climate change was the main controlling factor, while in the decadal time scale in the recent 50 years, human activities were the leading factors for the nutrient status evolution of the Longgan Lake. 60% of the variability of the TP concentration in the sediments and 57% of that in lake water were due to human activities. The differentiation between phosphorus concentration in the sediment and in the lake water reflected the response processes and the adjustment abilities of the lake aquatic ecosystems to the lake nutrient level, implying the maintenance and the destruction of the balances between the algae and the aquatic plants, as well as the corresponding accumulating characteristics of the phosphorus.  相似文献   

18.
The evolutions of diatom floras and the total phosphorous (TP) concentrations in the historical period were reconstructed for two lakes, Longgan and Taibai in the middle Yangtze River, based on high resolutional fossil diatom study from two sediment cores and an established regional diatom-TP transfer function. The TP concentration in Longgan Lake changed slightly in the range of 36–62 μg/L and kept its middle trophic level in the past 200 years. The changes of diatom assemblages reflect a macrophyte-dominated history of the lake. During the nineteenth century, the lake TP concentration increased comparatively, corresponding to the increase in abundance of benthic diatoms. The progressive increase of epiphytic diatoms since the onset of the twentieth century indicates the development of aquatic plants, coinciding with the twice drops of water TP level. The TP concentration in Taibai Lake kept a stable status about 50 μg/L before 1953 AD, while diatoms dominated by facultative planktonic Aulacoseira granulata shifted quickly to epiphytic diatom species, indicating a rapid expansion of aquatic vegetation. During 1953–1970 AD, the coverage of aquatic plants decreased greatly inferred by the low abundance of epiphytic diatoms as well as declined planktonic types, and the reconstructed TP concentration shows an obvious rising trend firstly, suggesting the beginning of the lake eutrophication. The lake was in the eutrophic condition after 1970, coinciding with the successive increase of planktonic diatoms. The comparison of the two lakes suggests the internal adjustment and purification function of aquatic plants for nutrients in water. The discrepancy of TP trends in the two lakes after 1960 reflects two different patterns of lake environmental response to human disturbance. Sediments in Taibai Lake clearly recorded the process of lake ecological transformation from the macrophyte-dominated stage to the algae-dominated stage. The limits of TP concentration (68–118 μg/L) in the transitional state can be considered as the critical value between the two stable ecosystems. Further work will be necessary to provide more evidence from the sediments in more eutrophic lakes for the primary inference. The reconstructive TP level and the inference of aquatic plants from fossil diatoms in different lakes, as well as their comparison provide a scientific basis for ecological restoration of eutrophic lakes in research regions.  相似文献   

19.
Forms of phosphorus in sediments from 25 lakes in the middle and lower reaches of Yangtze River were analyzed by the sequential extraction procedure. Contents and spatial distrubution of algal available phosphorus (AAP) in sediments of Lake Taihu, the third largest freshwater lake of China, were also studied. Relationships between phosphorus forms in sediment and macrophytes coverage in sample sites, as well as phosphorus forms in sediments and chlorophyal contents in lake water were discussed. Exchangeable form of phosphorus (Ex-P) in surface sediments was significantly positive correlative to total phosphorus (IP), dissolved total phosphorus (DTP) and soluble reactive phosphorus (SRP) contents in the lake water. Bioavailable phosphorus (Bio-P) contents in sediments from macrophytes dominant sites were significantly lower than that in no macrophyte sites. In Lake Taihu, Ex-P content in top 3 cm sediment was highest. However, content of ferric fraction phosphorus (Fe-P) was highest in 4 - 10 cm. Bioavalilble phosphorus (Bio-P) contents in surface sediments positively correlated to Chlorophyll a contents in water of Lake Taihu with significant difference. Therefore, contents of Bio-P and AAP could be acted as the indicators of risks of internal release of phosphorus in the shallow lakes. It was estimated that there were 268.6 ton AAP in top 1 cm sediments in Lake Taihu. Sediment suspension caused by strong wind-induced wave disturbance could carry plenty of AAP into water in large shallow lakes like Lake Taihu.  相似文献   

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