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1.
在长江口及其邻近海域采集了表层沉积物样品,分析了粒级组成、有机碳(OC)含量及其稳定同位素丰度(δ13 C)、木质素和沉积色素含量和相关指标,并结合基于蒙特卡洛模拟的三端元混合模型,讨论了此区域沉积有机碳的来源、分布和成岩状态。结果表明,长江口表层沉积物中OC含量为0.21%~0.63%,长江口泥质区和浙闽沿岸OC含量较高,而河口外陆架上含量较低;δ13C为-23.1‰~-20.9‰,显示沉积有机碳是海洋和陆地来源的混合。木质素含量(Λ8)为0.16~1.41mg/100mg OC,其组成特点显示了木质素的草本和木本被子植物的混合来源。沉积色素以叶绿素的降解产物为主,主要分布在河口外陆架上;类胡萝卜素中以岩藻黄素为主,表明硅藻是此区域浮游植物的优势类群。以δ13 C和Λ8为来源指标的端元混合模型显示长江口沉积有机碳主要来自海洋浮游植物,其贡献为54.3%~88.1%(平均70.2%),从河口向陆架逐渐升高,其次是土壤(9.3%~32.1%,平均22.3%)和C3维管植物(2.7%~13.6%,平均7.5%),两者贡献均在长江口和浙闽沿岸附近较高。沉积物粒级组成、OC含量、δ13C丰度和生物标志物含量之间显著的相关性和分布一致性表明水动力分选过程在决定陆源OC(包括土壤和C3维管植物OC)在河口外的输运和分布中发挥了重要作用。富含木质素的新鲜植物碎屑主要与粗颗粒物相联系,并主要沉积在河口附近,而贫木质素的土壤有机碳则主要赋存在细颗粒物上,可输运到离河口较远的位置。木质素降解参数,如酸醛比、3,5-Bd/V和P/(S+V)在长江口外陆架上的砂质区域相对较高,显示此区域陆源有机碳降解程度较高,而叶绿素降解产物的比例在长江口泥质区较高,则可能与泥质沉积物中较强的有机碳再矿化作用有关。  相似文献   

2.
河流输入的陆源有机碳在河口和陆架区的生物地球化学过程是全球碳循环的重要环节,对陆源有机质的输入量的估算是研究陆架区的生物地球化学过程的基础。黄河输沙量极大,为探究其携带的陆源有机质对陆架边缘海有机碳库的影响,以黄河河口及邻近渤海海域为研究对象,分析了表层沉积物中的木质素,结合总有机碳含量、总氮含量和有机碳稳定同位素评估了表层沉积物中有机碳的组成、来源和分布。8种木质素酚单体中,紫丁香基酚类(S)与香草基酚类(V)的含量比值S/V(0.63±0.31)和肉桂基酚类(C)与香草基酚类含量比值C/V(0.25±0.15),反映出研究区陆源有机碳主要来自草本被子植物。V系列中木质素酸(Ad)与木质素醛(Al)的比值(Ad/Al)V较高(0.53±0.14),表明陆源有机质的降解程度较高。利用稳定碳同位素比值δ13C和木质素含量Λ8相结合的土壤有机质-陆生维管植物-水生有机质三端元模型对陆源有机物的贡献的分析结果显示,土壤有机质、陆源维管植物和水生有机质的平均贡献分别为59.9%±15.0%、7.3%±7.0%、32.8%±11.8%。土壤在陆源有机质中的贡献占有绝对优势,可能与该区域沉积物的主要源区——黄土高原植被覆盖率低、土壤侵蚀严重有关。  相似文献   

3.
环雷州半岛近海表层沉积物有机碳分布及其控制因素分析   总被引:1,自引:0,他引:1  
对环雷州半岛近海43个海底表层沉积物的总有机碳(TOC)、总氮(TN)、沉积介质条件(包括沉积物粒度)进行了分析,探讨了沉积物TOC、TN的区域分布特征以及影响有机碳分布的主要因素。结果表明,环雷州半岛近海海域海底表层沉积物有机碳含量在0~0.79%之间,平均值为0.26%。与中国其它近海海域相比,环雷州半岛大部分近海区域海底表层沉积物有机碳含量明显偏低,为有机质贫乏区,仅雷州半岛西南部流沙湾近海海域为TOC相对高值区。总氮含量也不高,在0.011%到0.100%之间,TOC与TN存在较强的正相关性,且平面上TOC与TN分布高度重合,显示氮元素主要以有机化合物形式存在。TOC/TN比值在5.1~14.3之间,表明沉积有机质具有陆源输入和海洋自生来源的混合特征,但以雷州半岛西侧北部及东侧中部海域受陆源有机质输入影响更大。大多数站位海底沉积物粒度构成以粉砂为主、粘土次之,少数站位以砂质沉积为主。沉积物有机碳含量与粘土及粉砂含量呈弱正相关性,与沉积物pH值、Eh值及砂含量呈弱负相关性,这表明海底沉积物有机质丰度受有机质来源输入、海底氧化还原状态和沉积水动力条件(沉积物粒度)等因素综合控制。  相似文献   

4.
从分级的角度认识大河三角洲前缘河口沉积有机碳的来源、分布和保存对深刻理解全球碳循环具有重要意义。于2012年6月采集了长江口和浙闽沿岸共6个站位的表层沉积物样品,采用水淘选的方法按照颗粒物水动力直径大小对其进行分级分离,分析了这些分级样品的有机碳含量、稳定同位素、比表面积以及木质素等参数,并且结合蒙特卡洛模拟的三端元混合模型,讨论了此区域不同粒级沉积有机碳的来源、分布和保存特点。结果表明,长江口表层沉积物的有机碳在小粒级中含量较高,如8~16μm粒级有机碳含量的均值为1.30%,而32~63μm粒级的均值为0.90%,但是大粒级有机碳对沉积物有机碳的贡献最高(81.3%),这是因为大粒级的质量贡献占绝对优势(72.0%)。三端元混合模型的计算结果表明,长江口表层沉积物中沉积有机碳的贡献以海洋来源为主(平均为73%),土壤和维管植物也有一定贡献(平均值分别为21%和6%)。在小粒级(8~16μm)中,土壤对于沉积有机碳的贡献显著高于其他粒级,这是由于土壤有机质比较容易富集在细颗粒上。木质素的参数,如C/V(0.04~0.32)和S/V(0.33~1.23),显示长江口表层沉积物主要来源于草本和木本被子植物的混合,随着粒级的增大,草本被子植物的来源逐渐增多。浙闽沿岸分级沉积物的OC/SSA0.4mg/m2,而长江口的站位中OC/SSA0.4mg/m2,表明长江口沉积有机碳的保存效率比浙闽沿岸的高。木质素降解参数,如(Ad/Al)v、3,5-Bd/V和P/(S+V)随着粒级的增大逐渐降低,表明小粒级降解程度较高,而大粒级中降解程度较低。  相似文献   

5.
环渤海地区河流河口及海洋表层沉积物有机质特征和来源   总被引:4,自引:0,他引:4  
2013年8月采集了环渤海地区35条主要河流河口表层沉积物样品,12月采集了渤海与北黄海24个表层沉积物样品,分析了其生物地球化学指标:总有机碳(TOC)、总氮(TN)、有机碳同位素(δ13C)和氮同位素(δ15N),探讨该区域表层沉积物有机质特征及组成。研究表明:河流河口表层沉积物有机碳同位素(δ13C)值在–26.4‰—–21.8‰,平均值为–24.5‰;渤海表层沉积物有机碳同位素(δ13C)值在–23.8‰—–21.7‰,平均值为–22.3‰。河口表层沉积物TOC含量在0.06%—3.87%,平均值为1.31%;渤海表层沉积物TOC含量在0.52%—2.09%,平均值为1.08%。河流δ13C富集较轻,偏向陆源;海洋δ13C富集较重,偏向水生有机质来源。河流河口表层沉积物的δ13C值差异较明显,最大值与最小值相差4.6‰,但是流域地理位置距离近的河流δ13C值差异不大。河流河口表层沉积物δ15N在1.5‰—10.2‰,平均值为5.5‰;渤海表层沉积物δ15N在4.4‰—5.6‰,平均值为5.0‰。河流表层沉积物δ15N范围比渤海表层沉积物δ15N范围广,原因是河流受陆源有机物影响,且陆源有机物来源差异大。海洋表层沉积物δ15N相对均一,说明海洋表层沉积物δ15N受物源影响较小,体现了水体中有机质的转化和微生物活动对氮同位素的影响。本研究中表层沉积物的δ13C与δ15N没有明显的相关性,也体现了陆源有机质输入的影响。根据经典的二元模式计算,35条河流陆源有机质的贡献比例范围为10%—90%,平均值为60%;渤海陆源贡献比例范围为10%—50%,平均值为20%。河流有机质的来源以陆源有机质为主,水生有机质为辅。渤海有机质的来源以水生有机质为主,环渤海河流的陆源输入也有重要贡献。需要指出的是,有机碳同位素(δ13C)、氮同位素(δ15N)和Corg/Ntotal对有机质来源判别有一定局限性,虽然稳定同位素有示踪性,然而其成分仍然不可避免地受到生物地球化学等过程的改造,在使用稳定同位素技术示踪物源时,须小心谨慎。  相似文献   

6.
根据2015年5月对长江口及其邻近海域的生态环境调查资料, 探讨长江口春季表层沉积物总有机碳(TOC)、总氮(TN)、总磷(TP)和生源硅(BSi)4类生源要素的空间分布和来源。结果表明: 2015年春季长江口表层沉积物TOC、TN、TP和BSi平均含量分别为0.315%、0.041%、0.066%和0.450%, 其中, 沉积物中TOC、TN受到陆源输入和海洋自生输入双重影响, 且海洋自生组分的贡献较大, 二者空间分布均呈现南部分布最高并沿西北方向递减趋势; TP分布主要受陆源输入影响, 并呈西北向东南递减趋势; BSi来源于生物沉积, 总体呈现南部高、北部低的分布趋势。与2007年相比, 长江口表层沉积物有机碳、氮含量降低, 东南外海区域替代浑浊区域成为表层沉积物生源要素含量最高区域, 且陆源输入对长江口表层沉积物生源要素的贡献趋于减弱。  相似文献   

7.
珠江口及近海表层沉积有机质的特征和来源   总被引:9,自引:0,他引:9       下载免费PDF全文
测定了珠江口及近海表层沉积物中总有机碳(TOC), 总氮(TN)及稳定碳同位素组成和几类主要有机化合物(水解氨基酸THAA、糖类TCHO、脂类lipid、酸不溶有机物AIOC), 并分析了沉积有机质及化合物的特征和来源。结果表明珠江口表层沉积有机质主要为陆源和水生混合来源, 而近海有机质主要为当地水生来源。大量的陆源高等植物(含有较多的木质素、纤维素等)输入珠江口, 使得珠江口个别站位沉积物中糖类物质含量大幅高于近海样品; 而珠江口与近海沉积物中水生来源有机质的含量相当。氨基酸和糖类占TOC的份额在浮游生物和悬浮颗粒物中分别为56%和48%, 在表层沉积物中为19%, 说明珠江口和近海的有机质从水柱到达沉积物-水界面的过程中经历了较充分的降解。珠江口样品中活性组分氨基酸和糖类占TOC的份额低于近海, 可能说明珠江口沉积有机质的降解程度高于近海。  相似文献   

8.
渤海湾表层沉积物中有机碳的分布与物源贡献估算   总被引:9,自引:0,他引:9  
依据渤海湾及其邻近海域163个表层沉积物样品的总有机碳(TOC)和总氮(TN)的分析数据,探讨了渤海表层沉积物TOC的空间分布与物源贡献.结果显示,渤海湾TOC呈现南高北低的空间分布特征,TOC与粒度有一定的相关性且TOC高含量区与泥质区相吻合,表明TOC分布在一定程度上受控于沉积动力环境.TOC和TN之间显著相关,在...  相似文献   

9.
王春禹  姚鹏  赵彬 《海洋学报》2020,42(10):1-13
于2014年3月对长江口及邻近海域的表层沉积物进行了高分辨率采样,分析了沉积物粒级组成、比表面积、总有机碳含量及其稳定碳同位素组成(δ13C)、正构烷烃及其相关分子指标,讨论了此区域沉积有机碳和正构烷烃的高分辨分布特征,并结合基于主成分分析?蒙特卡洛模拟的三端元混合模型,对沉积有机碳的来源进行了定量解析。结果表明,长江口及其邻近海域表层沉积物中总有机碳含量为0.45%±0.16%,近岸泥质区总有机碳含量较高,外海砂质区含量较低。总正构烷烃(C14?C35)的绝对含量和相对于总有机碳的含量分别为(1.42±0.73) μg/g和(0.34±0.21) mg/g。泥质区以长链正构烷烃占优势,具有较强的奇碳优势;砂质区以短链正构烷烃占优势,且具有一定的偶碳优势。长江输入、老黄河口输入、闽浙沿岸小型河流输入和水动力分选等因素制约了正构烷烃的输运和分布特征。模型结果显示此区域沉积有机碳来自海源、土壤和高等植物的混合输入,其中以海源为主,其贡献为42.70%±18.18%,由陆地向外海贡献逐渐升高,其次是土壤和高等植物,其贡献分别为28.99%±15.37%和28.31%±17.12%。在水动力分选作用的影响下,两种陆源有机碳在入海之后的输运过程中存在明显的分异,土壤有机碳主要与细颗粒物结合,并沿闽浙沿岸向南输运,而高等植物来源有机碳则在长江口存在东北方向的输运。  相似文献   

10.
通过对西太平洋雅浦海沟不同水深沉积物中总有机碳(TOC)、总氮(TN)、碳稳定同位素(δ13C)、粒度组成和比表面积(SSA)等参数的分析,探讨了雅浦海沟不同水深沉积颗粒物来源、分布及其影响因素的异同。结果表明,雅浦海沟沉积物TOC含量和δ13C平均值分别为(0.34%±0.14%)和(-20.8‰±0.7‰),其中海洋浮游植物、陆源土壤和维管植物来源有机碳(OC)的贡献分别为(70%±3%)、(22%±3%)和(8%±2%),且不同水深差异不大,海沟内沉积物的横向输运可能是深部沉积OC的重要输入途径。由于水深更深站位沉积颗粒物中具有更强的微生物活动和在水柱中更长的保留时间,导致其TOC和TN含量较低,但δ13C无明显差异。水深较浅站位TN含量、SSA、粒径组成和中值粒径等参数垂向变化波动较更深站位更为显著,表明海沟沟壁水深较浅处物源输入和沉积环境的不稳定。同时,由于低OC含量、低SSA以及高密度的海底火山喷出岩在海沟水深较浅的沟壁坡折处的广泛分布,导致该区域粒径组成与TOC含量无显著相关性,而较深站位中TOC含量与粉砂呈正相关,与砂和黏土含量呈负相关。整体而言,雅浦海沟沉积物中粉砂粒级颗粒物是OC的主要载体,而SSA是影响海沟沉积OC剖面分布的最重要因素。  相似文献   

11.
通过对两根沉积柱GHE27L和GHE24L的总有机碳(TOC)、总氮(TN)、C/N比值及稳定碳同位素(δ13Corg)的分析,本文探讨了21.1 ka BP以来南海北部陆坡神狐海域沉积有机质的组成特征及可能的古气候/环境信息。沉积柱GHE27L的TOC含量、TN含量、C/N比值及δ13Corg值分别为0.53%~1.81%,0.07%~0.18%,8.2~16.0和-23.6‰~-20.3‰。沉积柱GHE24L各参数则分布为0.45%~1.65%,0.09%~0.24%,5.3~12.2和-22.6‰~-20.4‰。沉积柱总体有机质的剖面变化显示,末次盛冰期以来南海北部沉积有机质具有海洋和陆地混合来源,但以海洋有机质来源为主。冰期陆源有机质对总有机质的相对贡献比全新世高。末次盛冰期南海北部气候相对干旱,C4植被发育。全新世夏季风增强、降雨增多。自2.0 ka BP以来,人类活动对南海北部海洋初级生产力产生一定的影响。  相似文献   

12.
Long-term changes of composition,sources and burial fluxes of TOC(total organic carbon) in sediments of the central Yellow Sea mud area and their possible affecting factors are discussed in this paper.Firstly,similarity analysis is employed to confirm that the carbon burial features resulted from two collected cores are typical in the central Yellow Sea mud area where YSWC(Yellow Sea Warm Current) is prevalent.On this basis,the burial flux of TOC here was considered to be 235.5–488.4 μmol/(cm2?a) since the first industrial revolution,accounting for about 70%–90% among burial fluxes of TC(total carbon) in the sediments.Compared TOC/TC ratio in the two cores with that in other marine sediments worldwide,we suggest that the growth of calcareous/non-calcareous organisms and dissolution of IC(inorganic carbon) are important factors controlling the TOC/TC ratio in sediment.Results of two-end mixed model based on δ13C data indicate that marine-derived organic carbon(OCa)is the main part among total burial organic carbon which accounts for a ratio over 85%.Due to the high TOC/TC ratio in the two cores,TC in the sediments also mainly exists as OCa,and the proportion of OCa is about 60%–80%.Away from the shore and relatively high primary production in upper waters are the main reasons that OCa is predominant among all burial OC in sediments of the central Yellow Sea mud area.Burial of OC in this mud area is probably mainly influenced by the human activities.Although the economic development during the late 19 th century caused by the first industrial revolution in China did not obviously increase the TOC burial fluxes in the sediments,the rise of industry and agriculture after the founding of new China has clearly increased the TOC burial flux since 1950 s.Otherwise,we also realize that among TC burial fluxes,TIC account for about 10%–30% in sediments of the central Yellow Sea mud area,so its burial could not be simply ignored here.Distinct from TOC burial,long-term TIC burial fluxes variations relate with climate changes more closely:the East Asian summer monsoon may influence the strength of the Huanghe River(Yellow River) flood,which could further affect the transport of terrestrial IC from land to the central Yellow Sea as well as the burial of these IC in the sediments.  相似文献   

13.
Sediment collapse and subsequent lateral downslope migration play important roles in shaping the habitats and regulating sedimentary organic carbon(SOC) cycling in hadal trenches.In this study,three sediment cores were collected using a human-occupied vehicle across the axis of the southern Yap Trench(SYT).The total organic carbon(TOC) and total nitrogen(TN) contents,δ13C,radiocarbon ages,specific surface areas,and grain size compositions of sediments from three cores were measured.We...  相似文献   

14.
Surface sediments from the Changjiang River(Yangtze River) Estuary,Hangzhou Bay,and their adjacent waters were analyzed for their grain size distribution,organic carbon(OC) concentration,and stable carbon isotope composition(δ13C).Based on this analysis,about 36 surface sediment samples were selected from various environments and separated into sand(0.250 mm,0.125–0.250 mm,0.063–0.125 mm) and silt(0.025–0.063 mm)fractions by wet-sieving fractionation methods,and further into silt-(0.004–0.025 mm) and clay-sized(0.004mm) fractions by centrifugal fractionation.Sediments of six grain size categories were analyzed for their OC andδ13C contents to explore the grain size composition and transport paths of sedimentary OC in the study area.From fine to coarse fractions,the OC content was 1.18%,0.51%,0.46%,0.42%,0.99%,and 0.48%,respectively,while theδ13C was –21.64‰,–22.03‰,–22.52‰,–22.46‰,–22.36‰,and –22.28‰,respectively.In each size category,the OC contribution was 42.96%,26.06%,9.82%,5.75%,7.09%,and 8.33%,respectively.The OC content in clay and fine silt fractions(0.025 mm) was about 69.02%.High OC concentrations were mainly found in offshore modern sediments in the northeast of the Changjiang River Estuary,in modern sediments in the lower estuary of the Changjiang River and Hangzhou Bay,and in Cyclonic Eddy modern sediments to the southwest of the Cheju Island.Integrating the distribution of terrestrial OC content of each grain size category with the δ13C of the bulk sediment indicated that the terrestrial organic material in the Changjiang River Estuary was transported seaward and dispersed to the Cyclonic Eddy modern sediments to the southwest of the Cheju Island via two pathways:one was a result of the Changjiang River Diluted Water(CDW) northeastward extending branch driven by the North Jiangsu Coastal Current and the Yellow Sea Coastal Current,while the other one was the result of the CDW southward extending branch driven by the Taiwan Warm Current.  相似文献   

15.
A cross-system analysis of bulk sediment composition, total organic carbon (TOC), atomic C/N ratio, and carbon isotope composition (δ13C) in 82 surface sediment samples from natural and planted mangrove forests, bank and bottom of tidal creeks, tidal flat, and the subtidal habitat was conducted to examine the roles of mangroves in sedimentation and organic carbon (OC) accumulation processes, and to characterize sources of sedimentary OC of the mangrove ecosystem of Xuan Thuy National Park, Vietnam. Sediment grain sizes varied widely from 5.4 to 170.2 μm (mean 71.5 μm), with the fine sediment grain size fraction (< 63 μm) ranging from 11 to 99.3% (mean 72.5%). Bulk sediment composition suggested that mangroves play an important role in trapping fine sediments from river outflows and tidal water by the mechanisms of tidal current attenuation by vegetation and the ability of fine roots to bind sediments. The TOC content ranged from 0.08 to 2.18% (mean 0.78%), and was higher within mangrove forests compared to those of banks and bottoms of tidal creeks, tidal flat, and subtidal sediments. The sedimentary δ13C ranged from − 27.7 to − 20.4‰ (mean − 24.1‰), and mirrored the trend observed in TOC variation. The TOC and δ13C relationship showed that the factors of microbial remineralization and OC sources controlled the TOC pool of mangrove sediments. The comparison of δ13C and C/N ratio of sedimentary OC with those of mangrove and marine phytoplankton sources indicated that the sedimentary OC within mangrove forests and the subtidal habitat was mainly composed of mangrove and marine phytoplankton sources, respectively. The application of a simple mixing model showed that the mangrove contribution to sedimentary OC decreased as follows: natural mangrove forest > planted mangrove forest > tidal flat > creek bank > creek bottom > subtidal habitat.  相似文献   

16.
Naturally existing stable carbon and nitrogen isotopes are important in the study of sedimentary organic matter sources. To identify the sources of sedimentary organic matter in Sanggou Bay and its adjacent areas, which is characterized by high-density shellfish and seaweed aquaculture, the grain size, organic carbon(OC), total nitrogen(TN), carbon and nitrogen isotopic composition(δ13C and δ15N) of organic matter in the surface sediment were determined. The results showed that, in August, sedimentary OC and TN ranged from 0.17% to 0.76% and 0.04% to 0.14%, respectively. In November, OC and TN ranged from 0.23% to 0.87% and 0.05% to 0.14%, respectively. There was a significant positive correlation between OC and TN(R=0.98, P0.0001), indicating that OC and TN were homologous. In August, the δ13C and δ15N of organic matter varied from-23.06‰ to-21.59‰ and 5.10‰ to 6.31‰, respectively. In November, δ13C and δ15N ranged from-22.87‰ to-21.34‰ and 5.13‰ to 7.31‰, respectively. This study found that the major sources of sedimentary organic matter were marine shellfish biodeposition, seaweed farming, and soil organic matter. Using a three-end-member mixed model, we estimated that the dominant source of sedimentary organic matter was shellfish biodeposition, with an average contribution rate of 65.53% in August and 43.00% in November. Thus, shellfish farming had a significant influence on the coastal carbon cycle.  相似文献   

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