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1.
滨海盐沼的碳库变化可为蓝碳碳汇核算提供依据。为量化短时间尺度(季节到年际尺度)内滨海盐沼碳库的固碳速率,基于高分辨率的地表高程监测系统,于2022年在杭州湾南岸典型滨海盐沼开展了季节性的观测和采样分析。研究结果表明,在观测期间,本地种海三棱藨草和外来种互花米草的生长呈现季节性变化特征,植物生长主要集中在3—9月。就植物碳库的地下部分而言,海三棱藨草固碳量达到11 g C·m-2,互花米草盐沼则较高,为56 g C·m-2。地表高程监测数据表明,海三棱藨草盐沼的沉积速率为12.30 cm·a-1,略低于互花米草盐沼的沉积速率(13.02 cm·a-1)。结合沉积速率与沉积物容重、有机碳含量等数据,可以算得观测期间,海三棱藨草盐沼沉积物碳埋藏速率为460 g C·m-2·a-1,互花米草盐沼沉积物碳埋藏速率为588 g C·m-2·a-1,这两种滨海湿地的碳埋藏速率也具有季节性,在夏、秋季达到高值。结合植物碳库和沉积...  相似文献   

2.
本研究选择杭州湾庵东浅滩作为研究区,选取盐沼区三个不同植被带进行柱状样的采集,通过测量沉积物的粒度、沉积速率、碳氮含量(有机碳、总碳、总氮、碳氮比)等参数,系统分析研究区盐沼湿地植被演替对盐沼物质循环产生的影响。研究结果发现,不同植被覆盖下沉积物粒径差异显著,沿海向陆逐渐变细;沉积速率从海三棱藨草滩、互花米草滩、植被交错区依次递减;总碳、总氮、有机碳含量特征为互花米草滩植被交错区海三棱藨草滩,碳氮比介于6~9,有机碳以海源物质为主;通过计算,发现有机碳埋藏速率为互花米草[159 g/(m2·a)]海三棱藨草[140 g/(m2·a)]植被交错区[119 g/(m2·a)]。从整体上来看,杭州湾南岸盐沼从海三棱藨草群落向互花米草群落演替时,沉积物颗粒发生细化,沉积速率有所变化,而总碳、有机碳、总氮含量增加,盐沼有机碳埋藏速率增加。  相似文献   

3.
长江口南汇湿地植被的光谱吸收特征研究   总被引:1,自引:0,他引:1       下载免费PDF全文
植被的光谱吸收特征与植被生长状况密切相关,同时也受土壤湿度等外界因素影响。本文以长江口南汇湿地典型植被芦苇、互花米草和海三棱藨草为研究对象,在计算其光谱特征参数的基础上,分析了这3种植被的光谱吸收特征形变PSDI值。最后结合实测的土壤湿度,分析了3种植被的PSDI值和土壤湿度的相关性。研究结果发现:互花米草的PSDI值最大,海三棱藨草的PSDI值最小,芦苇介于两者之间,表明互花米草受外界的环境影响较大;互花米草的PSDI值与土壤湿度的相关性最大,芦苇的PSDI值与土壤湿度的相关性最小,海三棱藨草介于两者之间,表明互花米草适应湿地环境能力较强。  相似文献   

4.
海三棱藨草(Scirpus mariquete)是一个在滩涂潮间带原生裸地上首先定居的先锋种,是我国特有的盐沼植物。通过分析海三棱藨草种子和球茎的物理特性及室内正交试验研究其萌发的生物学特性,探究不同环境因子(温度、盐度、淹水深度)对该物种种子和球茎萌发的影响,本研究采用3因素5水平的正交试验进行探究,结果表明:海三棱藨草种子和球茎最佳萌发的环境因子组合均为温度为34℃、盐度为4‰、水深为0cm,最佳组合下种子发芽率为(81.82%±1.85%),显著(p0.05)低于球茎的(88.88%±2.31%);海三棱藨草种子萌发对温度有较广的适应性,18—42℃都可以萌发,26—34℃萌发率较高且无显著差异(p0.05);不同盐度下海三棱藨草种子的萌发率有较大的差异,海三棱藨草的种子在盐度为0—4‰的环境下发芽率最高。结论认为,影响海三棱藨草种子萌发的关键因素依次为盐度、温度和水深,影响海三棱藨草球茎的关键因素依次为盐度、水深和温度。海三棱藨草种子比球茎具有更强的耐环境胁迫能力,但是海三棱藨草球茎在最佳条件下比种子具有更高的发芽率。本研究为探究长江口湿地海三棱藨草退化的原因及其保护提供理论依据。  相似文献   

5.
九段沙湿地植被时空遥感监测与分析   总被引:12,自引:1,他引:12  
收集了研究区近20年以来的陆地卫星影像,结合以往实地调查资料,探讨了九段沙湿地优势植被群落多光谱遥感的分类方法,并对分类结果进行了现场校核,得出(1)多光谱遥感数据能够区分海三棱藨草与芦苇、互花米草植被群落;(2)季相变化的多光谱遥感数据可进一步区分芦苇与互花米草。分析了自20世纪80年代以来九段沙草滩及优势植被覆盖的时空变化,基本分为两个阶段80年代至1999年的自然演替阶段,2000年至今的人工干预阶段。结果表明(1)自然演替阶段。0m以上潮滩面积自然淤涨平均每年3.6km2;草滩平均每年增长1.2km2;芦苇仅出现于上沙的中部(除中沙1997年人工种植芦苇和互花米草外),其余均为海三棱藨草并占整体植被的80%以上,湿地自然演替速度相对较慢。(2)人工干预阶段。0m以上潮滩面积自然淤涨平均每年8.2km2,比自然淤涨速度快一倍以上;草滩平均每年增长7.86km2,增长速度远超过自然演替阶段;中沙人工引种的芦苇和互花米草群落扩散迅速,其覆盖占中下沙草滩的53.70%,其中互花米草扩散速度远快于芦苇,在中、下沙上占据了优势地位,而先锋植被海三棱藨草所占比例显著下降。  相似文献   

6.
通过分析长江河口湿地典型植物根际沉积物柱样(0~40 cm)中总汞(THg)、甲基汞(MeHg)及其与粒度、总有机碳(TOC)、还原态硫等环境因子之间的关系,探讨了互花米草(Spartina alterniflora)入侵对沉积物中汞形态特征的影响及主控因子。结果表明:(1)不同植物(互花米草、芦苇(Phragmites communis)、海三棱藨草(Scirpus mariqueter)和水葱(Scirpus tabernaemontani))根际沉积物中THg均值为49.9~100.9 μg/kg,其与粒径小于16 μm颗粒物组分体积百分比及TOC含量之间存在显著正相关关系(r2=0.85,p<0.01;r2=0.58,p<0.01),这意味着沉积物中矿物?有机物复合体细颗粒物的空间分异决定着总汞的空间分异。互花米草入侵促进了细颗粒的沉积,进而间接促进了沉积物中总汞含量的增加。(2)不同植物根际沉积物中MeHg均值为0.3~1.4 μg/kg,MeHg/THg均值为0.4%~1.4%,互花米草、芦苇及海三棱藨草根际沉积物中MeHg含量及MeHg/THg值随深度增加不断减小,但无显著差异,表明了互花米草入侵对沉积物中汞甲基化过程的影响可能有限。Pearson相关分析表明,MeHg/THg与THg、TOC、酸挥发性硫之间不存在显著的正相关关系。硫的K边同步辐射结果进一步表明了硫形态(如有机硫和S2?)变化与MeHg变化关系不大。MeHg/THg值呈表层(0~8 cm)高,底层低的分布规律,表明了表层沉积物中汞的甲基化潜势较大,这可能与表层新鲜有机质(如藻类和植物凋落物)的不断供给及其降解过程密切相关,还需深入研究。  相似文献   

7.
本研究以崇明东滩2015年4月实测潮间带水沙数据为基础,分析了潮沟、盐沼及光滩的水沙特征,重点研究了潮沟系统及邻近潮滩潮周期内悬沙通量情况。结果表明:(1)潮沟表层沉积物比潮滩细,二者平均中值粒径分别为21.7 μm和33.0 μm,悬沙粒径由海向陆逐渐变小;(2)大、小潮沟潮周期内潮流均以往复流为主,垂向平均流速分别为15.4 cm/s和34.6 cm/s;盐沼界和光滩则以旋转流为主,平均流速分别为11.3 cm/s和28.9 cm/s;(3)潮沟中的高悬沙浓度出现在涨潮初期,最大可达7.5 kg/m3,而潮滩高悬沙浓度则出现在潮落潮中期和高水位时刻;大、小潮沟和盐沼界站涨潮阶段平均悬沙浓度大于落潮阶段,光滩站则相反。潮沟悬沙主要来自邻近水域,而潮滩悬沙则与滩面表层沉积物密切相关;(4)潮沟在潮周期内净输沙方向均指向滩地,大潮沟潮周期单宽净输沙量可达4.0 t/m;盐沼界处垂直岸线和沿岸输沙强度相近,净输沙由海向陆,潮周期离岸输沙强度为1.0 t/m;光滩沿岸输沙强度远大于垂直岸线输沙,光滩净输沙由陆向海。研究揭示了潮间带潮沟系统的强供沙能力以及研究区域光滩冲蚀,盐沼植被带淤积的动力地貌过程。  相似文献   

8.
崇明岛东滩潮沟体系及其沉积动力学   总被引:3,自引:0,他引:3  
崇明岛东滩潮沟系在盐沼带内特别发育,其形成与潮滩围垦工程和盐沼带的宽度密切相关。泥滩上潮沟的发育和演化与盐沼带潮盆大小、潮时(大小潮)和降雨量等相关,潮沟体系规模小,涨潮流不受其控制,退潮时潮沟成为主要泄水通道,未沉降的细悬浮颗粒和浮泥层在重力作用下向潮沟汇集,使潮沟内沉积物比滩面细。崇明岛东滩潮沟体系形成、演化及沉积物分布,完全不同于目前研究非常详细的欧美河口湾/港湾型潮道-潮沟体系,后者潮道以涨潮流占优势,沉积物明显比滩面粗。崇明岛东滩潮沟体系是发育在快速淤长的三角洲类型海岸上,通过与其他类型的对比研究,可以更全面地认识潮道-潮沟体系对泥滩和盐沼发育、演化所起的作用。  相似文献   

9.
互花米草的入侵与扩张占据了其他植物的生态位,在一定程度上,改变甚至破坏了滩涂景观,对原生生态系统造成了消极影响。利用2019-2021年Sentinel-2A影像,结合最大似然分类法与决策树分类法对杭州湾南岸互花米草等多种生境类型加以识别,并进一步讨论生境变迁对迁徙候鸟的影响。结果表明:(1)决策树分类法总体精度更高且细节信息更为丰富,但存在较为明显的漏分现象;(2) 2019-2021年互花米草分布范围不断扩大且空间分布愈发离散,严重侵占芦苇、光滩等生境的生态位,导致总体生境景观趋于破碎;(3)受互花米草入侵的影响,适宜鸻鹬类候鸟栖息的光滩与海三棱藨草生境面积锐减,整体生境状况愈发复杂多样,候鸟适宜生境面积呈明显减少趋势。  相似文献   

10.
长江口潮沼植物对动力沉积过程的影响   总被引:36,自引:5,他引:36  
为探讨潮沼植物对动力沉积过程的影响,在长江口南汇东滩沼泽和邻近的光滩上进行了近底层流速、波浪、悬沙浓度、沉积物粒径和滩面淤积速率等对比实验,并在九段沙潮沼中做了两种先锋植物黏附悬沙的实验.结果表明,沼泽和同高程的邻近光滩近底层平均流速的比值为0.16~0.84;两种环境平均波周期、平均波高和平均悬沙浓度的比值分别为1.4,0.43,和0.71.波浪传入沼泽后,一方面波高大大降低,另一方面变得规则有序.海三棱草和草两种先锋植物群落黏附的悬沙分别达到298和40g/m2.由于水动力降低和植物的捕沙功能,细颗粒泥沙易于在沼泽中沉积下来,导致沼泽环境沉积物明显较相邻光滩细;沼泽中沉积速率加快,侵蚀受到抑制.  相似文献   

11.
Biological invasions represent one of the significant components of global change. A comparative study of invaders and co-occurring natives is a useful approach to gaining insights into the invasiveness of exotic plants. Spartina alterniflora, a C4 grass, is a widespread invader in the coastal wetlands in China and other regions of the world. We conducted a comparative study of S. alterniflora and native C3 species, Phragmites australis and Scirpus mariqueter, in terms of their gas exchange and efficiencies in resource utilization. We tested the hypothesis that S. alterniflora has growth-related ecophysiological advantages over the natives in its non-native range, which result in its rapid growth and enhance its invasiveness. Photosynthesis, leaf area index (LAI), specific leaf area (SLA), and the efficiency of resource use (light, water, and nitrogen) were examined monthly for eight months in 2004. Overall, S. alterniflora had greater LAI, higher maximal net photosynthetic rate (Amax), and longer growing season than those of the native species. On average, the efficiencies of S. alterniflora in light, water, and nitrogen utilization were respectively 10.1%, 26.1%, and 33.1% higher than those of P. australis, and respectively 70.3%, 53.5%, 28.3% higher than those of S. mariqueter. However, SLA of S. alterniflora was significantly lower than those of P. australis and S. mariqueter. Although there was no general pattern in the relationship between invasiveness and plant photosynthetic types, in this study, most of the ecophysiological characteristics that gave S. alterniflora a competitive advantage in the Yangtze River estuary were associated with photosynthetic pathways. Our results offer a greater understanding of the relationship between invasiveness and plant photosynthetic type. Our results also indicate that LAI and the length of the photosynthetic season, which vary with habitats, are also important in invasion success.  相似文献   

12.
The analysis of vegetation-environment relationships has always been a study hotspot in ecology. A number of biotic, hydrologic and edaphic factors have great influence on the distribution of macrophytes within salt marsh.Since the exotic species Spartina alterniflora(S. alterniflora) was introduced in 1995, a rapid expansion has occurred at Chongming Dongtan Nature Reserve(CDNR) in the Changjiang(Yangtze) River Estuary, China.Several important vegetation-environment factors including soil elevation, tidal channels density(TCD),vegetation classification and fractional vegetation cover(FVC) were extracted by remote sensing method combined with field measurement. To ignore the details in interaction between biological and physical process,the relationship between them was discussed at a large scale of the whole saltmarsh. The results showed that Scirpus mariqueter(S. mariqueter) can endure the greatest elevation variance with 0.33 m throughout the marsh in CDNR. But it is dominant in the area less than 2.5 m with the occurrence frequency reaching 98%. S. alterniflora has usually been found on the most elevated soils higher than 3.5 m but has a narrow spatial distribution. The rapid decrease of S. mariqueter can be explained by stronger competitive capacity of S. alterniflora on the high tidal flat. FVC increases with elevation which shows significant correlation with elevation(r=0.30, p0.001). But the frequency distribution of FVC indicates that vegetation is not well developed on both elevated banks near tidal channels from the whole scale mainly due to tidal channel lateral swing and human activities. The significant negative correlation(r=–0.20, p0.001) was found between FVC and TCD, which shows vegetation is restricted to grow in higher TCD area corresponding to lower elevation mainly occupied by S. mariqueter communities. The maximum occurrence frequency of this species reaches to 97% at the salt marsh with TCD more than 8 m/m2.  相似文献   

13.
为探讨外来引种的互花米草(Spartina alterniflora Loisel)在我国海湾的扩展过程,根据1989-2010年遥感影像和野外观测数据,对罗源湾互花米草的分布特征进行分析,结果显示,对该区互花米草近20 a的扩展过程划分为3个阶段:前5 a其沿着高潮带平行于海岸线呈带状扩展;之后5 a在中潮带向湾内快速拓殖;后10 a则扩展缓慢,种群内部的空隙地逐渐被米草覆盖。截至2010年,罗源湾互花米草的总面积约为741.13 hm2。受潮滩环境分带性影响,罗源湾互花米草在高潮带平行于海岸线的扩展速度明显大于垂直于海岸线的扩展速度;在中潮带的快速扩展过程中互花米草倾向于先在潮沟两侧分布,这可能与归槽水和滩面摩阻作用有关,相比较,互花米草在浅洼地的扩展较滞后,该区域随着滩面的淤高过程逐渐被米草覆盖。在其整个扩展过程中,由于互花米草对潮流及悬浮颗粒的阻滞作用,使得其扩展前缘米草斑块和连续种群之间的光滩区成为悬浮颗粒及米草种子容易沉降的区域,互花米草易朝向该区域扩展。  相似文献   

14.
To examine the spatial and temporal variability of sediment grain size in exposed tidal wetlands with ample sediment supply, we sampled sediments and measured hydrodynamics, accretion/erosion rates, and vegetation characteristics in the Yangtze Delta. Sediment grain size exhibited a landward/upward decreasing trend. This trend is mainly attributed to attenuation of hydrodynamics. A 630-day series of daily surface sediment sampling at a fixed site on an unvegetated intertidal flat revealed significant seasonal and storm-cyclic changes in grain size. This temporal variability was related to alternating accretion/erosion events, with erosion associated with coarser grain size. Such temporal dynamics were not present in vegetation, where sediment remained fine grained throughout the year. In the marsh, vegetation cover enables the trapping of fine-grained sediments in the following ways: (a) adherence of suspended sediments onto plants; (b) deposition of suspended sediments stimulated by attenuation of hydrodynamics through plant obstruction; and (c) prevention of resuspension of fine-grained deposits due to the protection of the plant canopy. The influence of vegetation on sediment grain size was clearly seen when comparing sediment trapped by different vegetation types and seasonal patterns of trapped sediment on different vegetation canopy densities. The relatively high plant biomass of the recently introduced Spartina alterniflora enhanced the trapping effect, whereas plant degradation due to buffalo grazing reduced the trapping effect. We conclude that for exposed tidal wetlands with ample sediment supply such as the Yangtze Delta, the spatial and temporal variability of sediment grain size is governed predominantly by physical controls on the unvegetated flat and predominantly by biophysical interaction of hydrodynamics and vegetation in the salt marsh, rather than by sediment supply.  相似文献   

15.
Control and eradication of the exotic and invasive plant Spartina alterniflora within the Chongming Dongtan nature reserve, Shanghai, China, is vital for the management and conservation of the saltmarshes. A demonstration project was established using waterlogging and cutting to control this invasive species. Results from 2007 to 2008 showed that, although the managed waterlogging significantly reduced biomass and seed production of S. alterniflora at an early stage, the species subsequently showed rapid adaptation to the long-term waterlogging stress. Thus, managed waterlogging alone was insufficient for the effective eradication of S. alterniflora. However, managed waterlogging for around 3 months, combined with cutting the above-ground part of S. alterniflora at a key stage (flowering period in July), controlled and eradicated the plant successfully. Both the above-ground and below-ground parts of S. alterniflora were killed and the plants began to decompose after 3 months. Furthermore, there was no re-growth of the emergent part of S. alterniflora in the following years. However, once the impounded water was released restoring the natural hydrodynamic regime of the saltmarshes, the seeds and seedlings of S. alterniflora reinvaded the controlled site from the neighboring areas and the S. alterniflora community was re-established. Thus, after eradication of S. alterniflora, control measures should be maintained to prevent the re-establishment of S. alterniflora. The results of this demonstration project indicate a potentially useful and effective approach for the control and management of large-scale invasion by S. alterniflora on saltmarshes in the Yangtze Estuary, China.  相似文献   

16.
The range expansion patterns of Spartina alterniflora and the roles which sexual reproduction and asexual propagation play in range expansion were investigated at the Chongming Dongtan nature reserve in the Yangtze Estuary, China. Two range expansion patterns of S. alterniflora at its advancing fronts could be found (1) S. alterniflora–mudflat front (S–M) and (2) S. alternifloraScirpus mariqueter–mudflat front (S–S–M). One feature revealed by this study was that a flush of seedling recruitment and establishment in spring was a crucial way for S. alterniflora to colonize new habitats and achieve a fast rate of range expansion. The mean number of seedlings recruited at the S–M front was much higher than that at the S–S–M front. Once established, the survivorship of seedlings was high, both at the S–M and S–S–M fronts. The established seedlings formed new tussocks quickly by vegetative tillering and growth of rhizomes and these finally merged into dense meadows. The mean distance of range expansion of S. alterniflora, after one growing season at the S–M front, was 25.4 ± 3.1 m yr−1 and 2.7 ± 0.5 m yr−1 at the S–S–M front. Sexual reproduction by seedlings and asexual propagation by tillering and growth of rhizomes were the two main means by which S. alterniflora could maintain a fast rate of range expansion on the salt marshes of the Yangtze Estuary. The colonization behaviors of S. alterniflora on advancing fronts differed as a reaction to various external and internal factors. The impact of abiotic and biotic factors governing the range expansion of S. alterniflora and its implications for the spatial structure of tidal wetlands are discussed.  相似文献   

17.
Biological invasion has received considerable attention recently because of increasing impacts on local ecosystems. Expansion of Spartina alterniflora, a non-native species, on the intertidal mudflats of Jiuduansha Shoals at the Yangtze River Estuary is a prime example of a spatially-structured invasion in a relatively simple habitat, for which strategic control efforts can be modeled and applied. Here, we developed a Cellular Automata (CA) model, in conjunction with Remote Sensing and Geographical Information Systems, to simulate the expanding process of S. alterniflora for a period of 8 years after being introduced to the new shoals, and to study the interactions between spatial pattern and ecosystem processes for the saltmarsh vegetation. The results showed that the CA model could simulate the population dynamics of S. alterniflora and Phragmites australis on the Jiuduansha Shoals successfully. The results strongly support the hypothesis of space pre-emption as well as range expansion with simple advancing wave fronts for these two species. In the Yangtze River Estuary, the native species P. australis shares the same niche with the exotic species S. alterniflora. However, the range expansion rate of P. australis was much slower than that of S. alterniflora. With the accretion of the Jiuduansha Shoals due to the large quantity of sediments deposited by the Yangtze River, a rapid range expansion of S. alterniflora is predicted to last for a long period into future. This study indicated the potential for this approach to provide valuable insights into population and community ecology of invasive species, which could be very important for wetland biodiversity conservation and resource management in the Yangtze River Estuary and other such impacted areas.  相似文献   

18.
Artificially introduced cordgrass, Spartina alterniflora, rapidly colonized the intertidal flats of the Jiangsu coast, eastern China. The epibenthos on an intertidal flat invaded by S. alterniflora were studied, to identify how local epibenthos species react to an altered environment. Epibenthic samples and surficial sediment samples were collected along a shore-normal profile in 50 quadrats at ten stations across the Spartina salt marsh; and five control quadrats for a station located on the barren sandy-mud flat. The grain size parameters of the surficial sediments show that S. alterniflora altered the grain size gradient along the profile of the intertidal zone by trapping fine-grained sediments. Spartina alterniflora could inhabit lower elevations than indigenous salt marsh vegetation, thus creating larger areas of finer surficial sediments, which was suitable for not only native epibenthic species but also species which do not exist on the barren sandy-mud flat. Correlation analyses show that the epibenthos were sensitive to sediment grain size and type, on the invaded S. alterniflora salt marsh. Further, there was an interspecific relationship affecting the distribution of epibenthos. The results show that epibenthos preferred ecological niches, within the Spartina salt marsh, even in the same sampling station.  相似文献   

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