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971.
972.
Microphytobenthic biomass and species composition in intertidal flats of the Nakdong River estuary, Korea 总被引:1,自引:0,他引:1
GuoYing Du Moonho Son Misun Yun Soonmo An Ik Kyo Chung 《Estuarine, Coastal and Shelf Science》2009,82(4):663-672
Intertidal microphytobenthos (MPB) were investigated monthly from August 2006 to March 2008 at four different sites in the sand flats of Nakdong River estuary, Korea. Samples of surface sediment (ca. 1 cm) were collected, and chlorophyll a was extracted as biomass estimation. Species identification and enumeration were carried out by light microscopy, assisted where necessary by scanning electronic microscopy. Biomass varied between 0.47 and 16.58 μg cm−3, abundance changed from 5.25 to 414.75 × 103 cells cm−3, while the Shannon diversity indexes ranged between 0.69 and 2.35 H′. Thirty-nine MPB taxa were identified, primarily composed of epipelic diatoms, among which Amphora and Navicula were the most abundant genera. Based on the biomass, abundance, species composition and their dynamics, MPB assemblages of sampling sites were grouped into three distinct communities corresponding to their sediment composition characteristics. Multivariate correlation analysis revealed that biomass was positively related to mud and very fine sand, negatively related to fine and medium sand, but not significantly related to environmental factors such as pore water nutrients, light intensity and salinity, which fluctuated rapidly during emersion period. Cluster analysis corroborated the division of MPB communities according to site types on seasonal scales, and also showed seasonality between sites by cluster of all summer groups. Principal component analysis identified that variability in species composition was significantly affected by mud, very fine sand, fine sand, light intensity, and sediment temperature. This study suggests that sediment composition plays an important role in the functioning of intertidal MPB communities in estuarine ecosystems. 相似文献
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三沙永乐龙洞位于西沙永乐环礁,是目前世界范围内已探明的最深蓝洞,其内部沉积动力环境相对单一,是研究沉积速率变化的天然实验室。龙洞洞底约24 cm以浅沉积物粒度分析结果显示,洞底浅埋沉积物以砂质组分为主,平均粒径多介于22.9~123.9 μm之间,在表层、4 cm、9.5 cm以及21 cm深度分别出现了沉积物变粗、砂含量增多的现象;利用210Pb的CRS定年模式计算得到底层沉积物沉积时间为1896年,平均沉积速率为0.19 cm/a,在4 cm和9.5 cm深度沉积速率急剧增加。柱状样顶部沉积速率显著增加,与近年来西沙地区人类活动加剧吻合。沉积物粒度变粗以及沉积速率骤然加快现象,与西沙地区台风活动频繁相关,通过对比历史台风记录,验证了沉积物在1999-2001年以及2010-2011年所记录的6次台风事件:199902、199915、200110、201002、201005以及201118。推测龙洞洞底沉积物沉积速率主要受台风活动影响,近期有人类活动影响的痕迹。 相似文献
976.
Effect of salinity on heavy metal mobility and availability in intertidal sediments of the Scheldt estuary 总被引:8,自引:0,他引:8
G. Du Laing R. De Vos B. Vandecasteele E. Lesage F.M.G. Tack M.G. Verloo 《Estuarine, Coastal and Shelf Science》2008,77(4):589-602
The effect of the flood water salinity on the mobility of heavy metals was studied for intertidal sediments of the Scheldt estuary (Belgium). Soils and sediments of 4 sampling sites were flooded with water of different salinities (0.5, 2.5, and 5 g NaCl L−1). Metal concentrations were monitored in pore water and surface water. To study the potential effects of flood water salinity on metal bioavailability, duckweed (Lemna minor) was grown in the surface water. The salinity was found to primarily enhance the mobility of Cd and its uptake by duckweed. Cadmium concentrations in pore water of soils and sediments and surrounding surface waters significantly exceeded sanitation thresholds and quality standards during flooding of initially oxidized sediments. Moreover, the effect was observed already at lower salinities of 0.5 g NaCl L−1. This implies that risks related to Cd uptake by organisms and Cd leaching to ground water are relevant when constructing flooding areas in the brackish zones of estuaries. These risks can be reduced by inducing sulphide precipitation because Cd is then immobilised as sulphide and its mobility becomes independent of flood water salinity. This could be achieved by permanently flooding the polluted sediments, because sulphates are sufficiently available in the river water of the brackish part of the estuary. 相似文献
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枣庄矿业集团公司柴里煤矿是原煤炭部指定厚含水冲积层下开采厚煤层的实验井,是由年产30万t发展成为年产300万t的现代化矿井。由于煤层厚、埋藏深,塌陷深度大,地表岩移持续时间长,积水严重等原因,建矿44年来,造成2000多公顷土地塌陷,其中1400hm^2农田已绝产,生态环境遭到严重破坏。 相似文献
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