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1.
中小型山溪性河流易受极端事件和人类活动影响,且对环境变化响应敏感,在大陆边缘物质循环过程中发挥着十分重要的作用,但学术界对它们的重视程度不够。以闽江—东海陆架系统为例,通过资料收集、遥感解译、样品采集与分析等方法,系统研究了亚热带中小型山溪性河流—宽陆架系统的“源—汇”过程。研究结果表明,人类活动引起的土地利用变化使得闽江入海径流量和泥沙通量在波动中略有增加,但水库的建设显著减少了入海泥沙通量,并且减弱了水沙通量的季节差异,河流入海泥沙通量变化对流域人类活动敏感且响应迅速;河口水体环境、悬浮体浓度、沉积物粒度组成及陆源有机碳埋藏的空间分布格局均显示,闽江入海泥沙主要分布在闽江河口附近海域,其中粗颗粒泥沙在水动力的作用下主要堆积在河口水下三角洲平原及前缘,细颗粒泥沙主要堆积在水下三角洲前缘斜坡及前三角洲附近海域,仅有少量细颗粒泥沙沿岸向外输运并沿途沉积,与大河流—宽陆架系统及中小型山溪性河流—窄陆架系统显著不同。河口人类活动及极端事件通过改变沉积物组成、环境动力、入海泥沙通量等方式对河流—陆架系统的“源—汇”过程产生显著影响。在当前流域来沙量锐减、河口地区海砂开采等人类活动强度增大的情况下,有必要加强相关研究。  相似文献   

2.
台湾山溪性小河流碎屑重矿物组成及其示踪意义   总被引:2,自引:1,他引:1  
台湾山溪性小河流每年向边缘海输入巨量沉积物,对东海陆架的沉积过程产生了显著的影响。本文分析台湾两条典型河流(兰阳溪和浊水溪)沉积物的全粒级碎屑重矿物组成,共鉴定出20种重矿物,但重量百分含量较低,为0.004%~0.116%。兰阳溪的主要重矿物组合为:锆石-菱镁矿-赤褐铁矿-锐钛矿-黄铁矿,浊水溪为:锆石-石榴石-赤褐铁矿-钛铁矿-锐钛矿-白钛石。研究流域的碎屑重矿物组成存在明显的沿程不均一性,指示出多数沉积物主要受到近源影响,从上游至下游重矿物组成的继承性较差。因此,基岩性质是河流碎屑重矿物组成的主要控制因素:兰阳溪和浊水溪的下游地区主要受各自流域内第四纪碎屑沉积物的贡献,上游地区则主要受到中央山脉庐山组的贡献。基岩控制起主导作用也使得重矿物指数如ATi、GZi和ZTR等难以恰当地应用于台湾山溪性小河流中。并且,大陆东部典型入海河流的重矿物组成与台湾河流存在明显区别:大陆入海河流中主要重矿物为磁铁矿和绿帘石;与之不同的是,兰阳溪河口富集锆石、菱镁矿和黄铁矿,浊水溪河口富集锆石和石榴石。这种差异主要反映了流域内基岩性质的不同。  相似文献   

3.
化学风化作用是引起河流沉积物相对其源岩发生地球化学分异的重要因素。在化学风化的初始阶段,长石含量减少,转化为黏土矿物,主要形成2:1型层状黏土矿物,如伊利石。随着风化作用的进行,伊利石脱K转化为1:1型层状黏土矿物,如高岭石(Nesbitt and Young,1982)。水动力分选同样显著影响沉积物的矿物和元素地化组成,粒度较粗、密度较大的石英、长石与重矿物一般富集于表层沉积物中,细粒级的,具片层状结构的黏土矿物则富集于悬浮物中(Garzanti et al,2011)。本研究讨论了长江、椒江、瓯江、木兰溪浊水溪等河流沉积物(包括悬浮物与表层沉积物)的化学风化与水动力分选。这些河流分属不同的源汇体系,长江属于"大河-大三角洲-宽广陆架"的源汇体系,作为世界性的大河,其下游干流悬浮物代表整个流域上陆壳细颗粒风化物质的混合,反映整个流域的化学风化强度。台湾河流属构造隆升背景下的山溪性小河流,有"瞬时大通量—极端气候影响—快速物质转换"的特点。其河流沉积物的源岩为多旋回的沉积岩和变质沉积岩,反映出强物理风化,弱化学风化的特点。浙闽河流同属于山溪性小河流,但其流域区域构造较稳定,地形起伏也较小,加之气候炎热多雨,所以化学风化较强,反映出流域受季风气候的控制。沉积物的Al2O3/Si O2值可作为一个可靠的矿物分选指标,Al2O3/Si O2与CIA,WIP,αAl值等化学风化指标的相关关系可以指示分选与风化作用对沉积物组成的影响。WIP受石英稀释作用影响较大,而CIA几乎不受石英稀释作用影响,二者的相关关系可以指示沉积多旋回性对沉积物组成的影响(Garzanti et al,2013)。沉积物地球化学组成的"粒度控制",是由于不同粒级沉积物中矿物组成差异所致,"粒度分异"的实质是"矿物分异"。本研究从矿物入手,讨论了水动力分选及化学风化作用对河流入海沉积物的影响,揭示出分选和化风化作用共同影响沉积物的矿物及元素地化组成。元素的表生地球化学行为,本质上是由元素在不同矿物中富集及迁移的规律决定的。化学风化和水动力分选都影响碎屑沉积物矿物组成的变化,继而引起沉积物元素地球化学组成的变化。  相似文献   

4.
三沙湾是福建省最大的海湾,也是中国东部典型的基岩半封闭海湾,其冲淤变化受山溪性河流和潮汐输运泥沙量变化影响,明确物源演变特征对于研究湾内沉积演化趋势具有重要意义.以三沙湾NDGK2钻孔为研究对象,在前期地层序列和年代框架研究的基础上,通过重矿物和地球化学特征揭示90 ka以来的物源演变特征,进一步揭示三沙湾在全球气候海...  相似文献   

5.
采用原子吸收光谱法,对乐清湾及三都澳表层沉积物的15只样品,进行了分析,其结果显示,沉积环境,沉积物类型和泥沙来源,控制着乐清湾和三都澳金属元素及有机质迁移富集规律,并显示具有极为相似的分布特征。本区重金属元素的含量与其它区域相比,以及Fe/Mn比值,充分显示了它们的继承性和亲陆性,同时进一步说明本区表层沉积物,主要由潮流作用从口外海域搬运而来,受到长江口泥沙扩散的影响,其次是周围岛屿和山溪性河流的补给。  相似文献   

6.
浙闽泥质区是全新世高海平面以来沉积物的汇。受东亚季风影响,浙闽沿岸流和台湾暖流具有季节性变化,长江口"夏储冬输"的沉积物输运模式对东海内陆架泥质区的形成有关键作用。浙闽泥质区的潜在物源主要有长江、浙闽河流以及台湾西部山地河流,以长江物质为主。黏土矿物、稀土元素、Sr-Nd同位素、环境磁学等方法是物源研究的重要手段。长江物质以伊利石为主,蒙脱石含量较少,高岭石和绿泥石含量中等;而台湾物质以伊利石和绿泥石为主,没有蒙脱石。磁黄铁矿是台湾河流沉积物特有的磁性矿物,可作为大陆河流与台湾河流物源识别的指标。泥质区位于东亚季风区,受低纬热带过程和高纬大气环流的影响,气候变化具有波动性。沉积物敏感粒级反演的东亚冬季风(EAWM)只记录了泥质区形成以来的气候变化,不能代表整个全新世。受台湾暖流和浙闽沿岸流的双重影响,敏感粒级作为EAWM演化的指标需进一步深入研究。  相似文献   

7.
山溪性天然河道,横断面上的流速分布形态,是河流的重要特性之一.研究和掌握断面的流速分布规律,对改进水文测验部署,实现流量的简测,具有重要意义。水文测站一般都已积累较多的流速资料,为流速分布规律的研究创造了良好条件。本文试图以长江上游山溪性河流的横江站历年(1975~1979年)实测流速资料(计2000多个测点流速)为基础,进行流速分布规律研究分析.  相似文献   

8.
福建安海湾表层沉积物粒度特征及其现代沉积过程分析   总被引:1,自引:0,他引:1  
通过对福建安海湾表层沉积物的粒度分析和对比,应用系统聚类分析、粒径趋势模型和切应力计算公式,探讨了研究区粒度的分布特征、沉积环境分区、表层沉积物输运趋势及其影响因素.研究结果表明,研究区包括6种表层沉积物类型,以黏土质粉砂和粉砂为主,沉积物大体呈现自海湾两侧潮滩向潮汐通道变粗的分布趋势.表层沉积物粒度的分布特征与水动力条件和物质来源密切相关,湾口附近及湾内深槽内,细颗粒的沉积物被再悬浮带走,粗颗粒的含量增大;在湾内潮滩上,悬浮物质因水动力作用逐渐减弱发生分选沉降,形成向岸变细的横向分异.海湾外泥沙随潮流不断地向海湾东侧岸滩运移,海湾周边陆源来沙由湾顶部往湾口方向下泄,两者是导致表层沉积物出现明显的顺时针方向汇聚趋势的原因之一;表层沉积物的输运趋势、悬浮泥沙的输运、潮滩植被与湾口沙嘴的遮蔽效应共同影响了研究区内浅滩地形的形成和变化.研究区可分为四类沉积环境区,以潮滩和潮汐通道环境为主,不同沉积区内的粒度参数、粒级频率和敏感粒级均有差异,动力条件差异和不同物源的影响程度是现代沉积环境格局的主要影响因素.  相似文献   

9.
林镇坤  王爱军  叶翔 《沉积学报》2019,37(1):124-134
沉积物粒度分布特征可揭示沉积动力环境。基于广西南流江河口水下三角洲的粒度分析数据,采用Folk分类法进行分类,应用端元分析对其粒度数据进行分解,探讨了南流江河口水下三角洲的物源和现代沉积动力环境。结果表明,研究区表层沉积物可划分为9类,其中含砾沉积物5类,不含砾沉积物4类,沉积物类型与河口环境动力特征相吻合。端元分析结果显示,研究区有5个不同类型的端元,分别代表着5种类型的沉积物动力环境:端元1反映了风浪和潮流对表层沉积物的动力作用;端元2指示了外海涌浪对表层沉积物的作用过程;端元3代表了南流江冲淡水引起的表层沉积物的输运;端元4代表了大陆架残留沉积物;端元5为干扰端元,可能是由于工程建设等人类活动所引起的。利用端元分析探讨复杂环境(如小型山溪性河口)下的沉积动力环境时,一方面需要综合考虑研究区域的物源与环境动力特征;另一方面可以结合参数拟合、粒径趋势分析等研究手段。  相似文献   

10.
江苏王港潮间带表层沉积物特征及输运趋势   总被引:20,自引:1,他引:19  
王爱军  汪亚平  杨旸 《沉积学报》2004,22(1):124-129
潮滩沉积物粒度参数可以用来反映沉积物沉积的水动力条件和沉积环境。根据对江苏王港潮间带采集的15 4个表层样品的粒度资料进行分析,结果表明,沉积物类型以粉砂为主;随着水动力环境由海向陆的减弱,沉积物粒度参数表现出有规律的变化趋势,即由岸向海粒径具有粗化趋势,分选变好,逐渐正偏并达到近对称。研究区与世界其他地区的潮滩在沉积特征上有较大差异,主要是由于沉积物来源、水动力环境及受生物作用的强弱程度不同所致。沉积物输运趋势分析显示,该地区沉积物输运主要受当地潮波特征、大型人工建筑物、地貌形态及生物作用的影响;在低潮线附近主要向西北方向输运,随着向陆地方向的延伸,沉积物由向西输运逐渐转变为向南输运。  相似文献   

11.
China has a great number of rivers, but they are distributed unevenly. There are many large externally flowing river systems with dense stream networks, normally exceeding 0.3 km/km2, while in the interior drainage regions the rivers have short courses with sparse stream networks, generally less than 0.1 km/km2. Although the total runoff of the rivers is abundant, 96% is distributed in the exterior drainage regions and only 4% in the interior drainage regions. Temporally, the distribution of the runoff is also very uneven: high in the summer and autumn, and low in the winter and spring. In addition, runoff varies greatly from year to year, and successions of abundant and deficient years appear frequently. China encompasses a great variety of river water regimes, influenced mainly by the different climatic zones: e.g., temperate continental, temperate, subtropical and tropical monsoons, and the Qinghai-Xizang Plateau, with its high altitude and cold. The rivers contain a high silt content, with a sediment discharge of up to 2.6 billion tons annually. The amount of the silt discharged into the seas reaches 2.01 billion tons/annum.  相似文献   

12.
The Western Ghats form a major mountain belt, next to the Himalayas, in controlling the flux of water and carbon to the northern Indian Ocean. This study attempts to understand the water and carbon cycles in two humid tropical river basins with its streams originating at higher altitudes of the Western Ghats, India. Water and suspended particulate matter (SPM) were collected on a monthly scale during summer monsoon season (June-September) from Swarna and Nethravati rivers draining into the Arabian Sea. For the source apportionment, samples have been measured for stable isotopes of oxygen (δ18O) and hydrogen (δ2H) in water and stable isotopes of carbon (δ13CPOC) in particulate organic matter (POM) at spatial scale from tributaries and main channel of rivers, and runoff water from agricultural land (dominant paddy field) and forest in the downstream region. The association between δ18O and deuterium-excess in river water and rain water shows that water in these tropical basins depicts rainout effect of marine source moisture during the onset of summer monsoon. As the monsoon intensifies, the fresher rain water replenishes older water stored previously in sub surface soil layer leading to its flushing into the river during summer monsoon season. Stable carbon isotope ratio and elemental ratio of POM (δ13CPOC = -27.1 ± 0.4 ‰ and C/N = 8.1 ± 1.7) in two humid tropical river water during summer monsoon season is an admixture of suspended particulates from runoff water of forest (δ13CPOC = - 27.82 ± 0.4 ‰) and agricultural land (δ13CPOC = -26.29 ± 0.4 ‰). It is found that δ13CPOC shows minimal variability with SPM content and C/N ratio within the same organic carbon pool. The study emphasizes the need to consider the agricultural runoff contribution to the rivers while establishing the global elemental budget and observing the global climate change.  相似文献   

13.
岩溶作用促进大气二氧化碳汇过程不仅局限于碳酸盐岩地区,而是涉及全球陆地地质岩石地区,因此以前仅考虑岩溶面积计算的岩溶碳汇量偏低,需要以河流流域为单元全面计算全球岩溶碳汇效应。除了产生河流溶解无机碳被带入海洋外,岩溶作用还可通过水体生物吸收形成颗粒有机碳以及在岩溶土壤中固定有机碳等方式形成碳汇,因此,岩溶地质过程固碳形式多样。其中,仅全球水生生物固定岩溶水重碳酸根产生的有机碳近0.5Gt,生态恢复可促进岩溶土壤有机碳固定及岩溶流域碳汇,我国西南石漠化治理工程至少可增加岩溶碳汇2~3亿t,如果重视岩溶增汇技术的应用,全球岩溶碳汇效应将非常显著。所以,岩溶碳汇研究意义重大,岩溶碳汇效应更不可忽略。   相似文献   

14.
在全球变暖的背景下,我国多数大江大河源区存在冰川退缩、雪线上升以及多年冻土和季节冻土明显退化等现象,并由此造成河源区产流量减少以及生态环境恶化等诸多问题,这在内陆河山区流域体现的较为明显,但目前分布式水文模型中很少涉及冻土水热耦合问题。文章以黑河干流山区流域为例,构建了一个内陆河高寒山区流域分布式水热耦合模型(DWHC)。模型基于土壤水热连续性方程将流域产流、入渗和蒸散发过程融合起来,在植被截留、入渗、产流和蒸散发计算方面也有所改进和创新,部分模块具有多个可选择方案。模型设计了与中尺度大气模式MM5的嵌套接口,也可以用地面气象资料驱动。模型在1 km×1 km网格基础上,以日为时间步长,将流域土壤分为18类,土壤剖面分为3~5层不等,流域植被概化为9类。模型只需要土壤初始含水量、初始地温和常规气象资料,以及土壤和植被物理参数,就能够连续演算各层土壤的温度、液态含水量、固态含水量、感热传导、潜热变化、水势梯度、导水率以及水分入渗和毛细上升量等水文循环要素。主要介绍了模型的基本原理和构建思路,有关模型的地面资料驱动结果和与MM5嵌套结果部分,参见后续文章(Ⅱ)、(Ⅲ)。  相似文献   

15.
Revised Universal Soil Loss Equation(RUSLE) model coupled with transport limited sediment delivery(TLSD) function was used to predict the longtime average annual soil loss, and to identify the critical erosion-/deposition-prone areas in a tropical mountain river basin, viz., Muthirapuzha River Basin(MRB; area=271.75 km~2), in the southern Western Ghats, India. Mean gross soil erosion in MRB is 14.36 t ha~(-1) yr~(-1), whereas mean net soil erosion(i.e., gross erosion-deposition) is only 3.60 t ha~(-1) yr~(-1)(i.e., roughly 25% of the gross erosion). Majority of the basin area(~86%) experiences only slight erosion(5 t ha~(-1) yr~(-1)), and nearly 3% of the area functions as depositional environment for the eroded sediments(e.g., the terraces of stream reaches, the gentle plains as well as the foot slopes of the plateau scarps and the terrain with concordant summits). Although mean gross soil erosion rates in the natural vegetation belts are relatively higher, compared to agriculture, settlement/built-up areas and tea plantation, the sediment transport efficiency in agricultural areas and tea plantation is significantly high,reflecting the role of human activities on accelerated soil erosion. In MRB, on a mean basis, 0.42 t of soil organic carbon(SOC) content is being eroded per hectare annually, and SOC loss from the 4th order subbasins shows considerable differences, mainly due to the spatial variability in the gross soil erosion rates among the sub-basins. The quantitative results, on soil erosion and deposition, modelled using RUSLE and TLSD, are expected to be beneficial while formulating comprehensive land management strategies for reducing the extent of soil degradation in tropical mountain river basins.  相似文献   

16.
N. Stein Dr. 《GeoJournal》1982,6(2):157-164
A re-examination of the biosphere, in particular of the tropical rain forests, is necessary since there are some contradictions in our present knowledge about carbon fluxes and carbon storage in various reservoirs. Traditional land-use systems as well as modern exploitation methods in the tropical rain forest areas need not be necessarily of such a magnitude that the global carbon cycle would undergo a major upset or even a climatic catastrophe. This conclusion is primarily based on the high photosynthesis rates of the humid tropics and on the very important role of tropical river systems for carbon transport between terrestrial and aquatic ecosystems.After careful consideration of all known facts this paper comes to the conclusion that 2 × 1015 g/yr C are released to the atmosphere due to deforestation and burning in the tropical rain forest belt. The same amount is probably being fixed in the temperate forests and the northern ecosystems. A possible steady balance of all terrestrial ecosystems would, therefore, be the result of a particular historical constellation whereby a destruction of vegetation in the tropics would occur simultaneously to an increase of phytomass and also to a humus and peat accumulation in temperate and northern ecosystems.  相似文献   

17.
大陆边缘海是不同来源、不同性质有机碳沉积和埋藏的主要场所,在全球碳的生物地球化学循环过程中具有重要地位.东海内陆架接收大量陆源有机碳,并且具有较高的海洋生产力,是研究沉积有机碳来源、输运和埋藏的理想场所,已取得大量研究成果.在对相关文献进行系统整理的基础上,以沉积学的视角对前人研究成果进行了梳理,旨在为后续相关研究提供...  相似文献   

18.
The Changjiang, Huanghe, Zhujiang and Heilongjiang are the four largest rivers in China and they transport large amount of fresh water and terrigenous materials, including both inorganic and organic carbon into the ocean. The sources of the terrestrial carbon transported in the four rivers, however, have not been well constrained and compared. In this study, we used carbon isotopes (13C and 14C) combined with concentration measurements to investigate and compare the sources and fluxes of Dissolved Inorganic Carbon (DIC), Particulate Inorganic Carbon (PIC), Dissolved Organic Carbon (DOC) and Particulate Organic Carbon (POC) in the four rivers. The contributions of the potential sources to both DIC and DOC were quantitatively calculated using a dual isotope and three end member model. The results showed that the concentrations and isotope characteristics of the carbon pools in the river depended largely on the geological setting, surrounding environment and the anthropogenic influence of the drainage basins. Compared with other large rivers in the world, the concentrations of DIC in the Changjiang, Huanghe and Zhujiang were higher, but the DIC fluxes in the Huanghe and Zhujiang were lower. The DOC concentrations in the Heilongjiang River were higher and lower in the other three rivers compared with the average value of the world largest 25 rivers. The Changjiang, Huanghe and Zhujiang all transport millennia aged carbon. The old riverine DIC reflects the influence of chemical weathering of carbonate rocks and the old DOC reflects influence mainly from pre-aged soil OC. These ancient terrestrial carbon discharged by the rivers could have significant effects on the carbon cycle and ecosystems in the China's marginal seas.  相似文献   

19.
The delivery of organic carbon (C) from rivers to the coastal ocean via estuaries is recognized as an important component of the global C budget however, smaller river systems are often overlooked and modern flux estimates are not very different from historical estimates. Here, the seasonal (wet vs. dry) concentration and fluxes of dissolved organic C (DOC) were measured in five small sub-tropical rivers that drain into the Tampa Bay (FL, USA) estuary. DOC distributions were highly variable among riverine, mesohaline, and marine end-member samples in all river catchments and no significant differences were observed among or between DOC concentrations with respect to river catchment, season, or year of sampling. In general, DOC mixed non-conservatively during the wet seasons, and conservatively during the dry seasons, with the estuarine reaches of each river serving as a sink of DOC. Fluxes were strongly tied to discharge irrespective of season, and the estuaries removed 15–65% of DOC prior to export to coastal Bay and Gulf of Mexico waters. DOC concentrations were similar to others reported for low-elevation sub-tropical rivers, and a combination of elevation, residence time, and climate appear to control the abundance and variability of DOC in sub-tropical vs. tropical river systems. The characterization of DOC in small, sub-tropical rivers, which share characteristics with both their temperate and tropical counterparts, is critical for quantitatively constraining the importance of these systems in local-to-regional scale ocean C budgets. In addition to geomorphic properties, the role of past, present, and future land cover and other environmental change in small coastal rivers also exerts control on the quantity and flux of DOC in these systems.  相似文献   

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