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61.
Seasonal and daily variation of mercury evasion at coastal and off shore sites from the Mediterranean Sea 总被引:3,自引:0,他引:3
Maria E. Andersson Katarina Grdfeldt Ingvar Wngberg Francesca Sprovieri Nicola Pirrone Oliver Lindqvist 《Marine Chemistry》2007,104(3-4):214-226
Dissolved gaseous mercury (DGM) was measured continuously using two newly developed techniques and a manual technique. The continuous techniques were based on the equilibrium between the aqueous and gaseous phase (DGM = Hgextr / H', Hgextr is the measured mercury concentration in the gas phase, H' is the Henry's Law coefficient at the desired temperature). In order to calculate the annual mercury evasion from the Mediterranean Sea, diurnal and seasonal measurements of DGM, total gaseous mercury in air (TGM), water temperature and wind speed were performed. During August 2003, March–April 2004 and October–November 2004 measurements of these parameters were conducted on board the RV Urania. The continuous measurements of DGM showed a diurnal variation in concentration, at both coastal and off shore sites, with higher concentrations during daytime than nighttime. The concentration difference could be as large as 130 fM between day and night. The degree of saturation was calculated directly from the measurements, S = Hgextr / TGM and was found to vary between the different seasons. The highest average degree of saturation (850%) and the largest variation in saturation (600–1150%) was observed during the summer. The spring showed the lowest variation (260–360%) and the lowest average degree of saturation (320%). The autumn also showed a large variation in saturation (500–1070%) but a lower average (740%) compared to the summer cruise. This might be explained by the temperature difference between the different seasons, since that parameter varied the most. The flux from the sea surface was calculated using the gas exchange model developed by Nightingale et al. [Nightingale, P.D., Malin, G., Law, C.S., Watson, A.J., Liss, P.S., Liddicoat, M.I., Boutin, J., Upstill-Goddard, R. C., 2000. In situ evaluation of air–sea gas exchange parameterization using novel conservative and volatile tracers. Global Biogeochemical Cycles, 14(1):373–387]. The evasion varied between the different seasons with the highest evasion during the autumn, 24.6 pmol m− 2 h− 1. The summer value was estimated to 22.3 pmol m− 2 h− 1 and the spring to 7.6 pmol m− 2 h− 1. Using this data the yearly evasion from the Mediterranean Sea surface was estimated to 77 tons. 相似文献
62.
九龙江口和厦门西港海域若干重金属元素的生物地球化学特性 总被引:6,自引:1,他引:6
根据1987年3月至1988年12月九龙江口,厦门西港海域的调查资料,初步探讨该海域Fe,Mn,Cu,Zn,Ni,Co,Pb,Cd等重金属元素的生物地球化学特性,及其与磷的生物地球化学的关系。结果表明该海域重金属元素的分布主要受九龙江径流的影响。在河水与海水混合过程中,悬浮颗粒态重金属元素发生明显转移,Fe,Mn,Co,Zn等元素自悬浮颗粒物上解吸,Cu可能被吸附,颗粒态重金属元素与颗粒态磷呈良好 相似文献
63.
This study addresses sources and diagenetic state of early-season dissolved organic matter (DOM) in the Northeast Water Polynya (NEWP) area northeast of Greenland from distributions of humic substance fluorescence (HSfl), dissolved organic carbon (DOC), and dissolved organic nitrogen (DON) in the water column inside and outside the NEWP area. The water masses of the polynya area had acquired their spring/summer temperature–salinity characteristics at the time of sampling, and also had individual, different DOM signatures. DOC concentrations were variable within and among water masses in the polynya area, indicating patchy local sources and sinks of DOC. PySW and polynya intermediate water (PyIW) had higher average DON concentrations and average lower C:N ratios than polynya bottom water (PyBW), indicating a larger fraction of fresh DOM in PySW and PyIW than in PyBW. Ice-covered, polynya area surface waters (PySW) had higher DOC concentrations (113±14 μM, n=68) than surface water (SW) outside the polynya area (96±18 μM, n=6). The DOM C:N ratios in a low-salinity, ice-melt subgroup of PySW samples indicate labile material, and these low-salinity surface waters appeared to have a local DOC and DON source. In contrast, HSfl was significantly lower inside than outside the NEWP area. Despite the lower HSfl values within the NEWP area, the PySW values were high when compared to open-ocean water. There were no local terrestrial sources for HSfl to the NEWP area and the East Greenland Current is therefore proposed as a likely source of allochtonous HSfl. When HSfl was used as a conservative tracer, up to 70% of the water in PySW and PyIW was found to be derived from SW, which contains a high fraction of water from the East Greenland Current. Similarly, a mixing model based on HSfl indicated that 80% of early-season DOC and 90–100% of early-season DON in PySW and PyIW were derived from SW, indicating a potentially high fraction of terrestrially-derived, relatively refractory DOM in the early-season NEWP area. 相似文献
64.
Claudia Benitez-Nelson Ken O. Buesseler David M. Karl John Andrews 《Deep Sea Research Part I: Oceanographic Research Papers》2001,48(12)
Depth profiles of total 234Th (dissolved+particulate) were collected at Station ALOHA (22°45N, 158°00W) in the North Pacific Subtropical Gyre during 9 cruises from April 1999 to March 2000. Samples were collected and processed by a new 2 L technique that enables more detailed depth resolution then previous 234Th studies. Significant zones of particle export (234Th deficiency) and particle remineralization (234Th excess) were measured both temporally and with depth. 234Th derived particulate carbon (PC) and nitrogen (PN) fluxes were determined with steady-state and non-steady-state models and PC/234Th and PN/234Th ratios measured with both in situ pumps and free-drifting particle interceptor traps deployed at 150 m. 234Th based export estimates of 4.0±2.3 mmol C m−2 d−1 and 0.53±0.19 mmol N m−2 d−1, were approximately 60% higher than those measured in PIT style sediment traps from the same time period, 2.4±0.2 mmol C m−2 d−1 and 0.32±0.08 mmol N m−2 d−1. Most of this difference is attributable to two large export events that occurred during October and December 1999, when traps undercollected for 234Th by a factor of 2 to 4. 234Th export (ThE) ratios based on 234Th derived PC flux/14C based primary production ranged from 4% to 22% (average=8.8%). Our results confirm the recent estimates of C export by Emerson et al. (Nature 389 (1997) 951) and Sonnerup et al. (Deep-Sea Research I 46 (1999) 777) and indicate that C export from the oligotrophic ocean must be considered when discussing C sequestration in global climate change. 相似文献
65.
A comparison of selective extraction soil geochemistry and biogeochemistry in the Cobar area, New South Wales 总被引:1,自引:0,他引:1
D. R. Cohen X. C. Shen A. C. Dunlop N. F. Rutherford 《Journal of Geochemical Exploration》1998,61(1-3)
In parts of the deeply weathered and semi-arid environments of the Cobar area (NSW, Australia), detection of mineralisation using conventional soil sampling and total metal analysis is impeded. This is due to the intense leaching of trace elements within the weathered profile, discontinuous coverage of transported materials and the existence of diffuse regional geochemical anomalies of ill-defined source. Selective chemical extractions, applied to various regolith components, and biogeochemistry offer a means of isolating localised geochemical patterns related to recent dispersion of trace elements through the overburden. Lag geochemical patterns across the McKinnons deposit (Au) and Mrangelli prospect (Pb–Zn–As) reflect mechanical dispersion processes and minor hydromorphic effects. Concentrations of more mobile elements tend to be higher in the non-magnetic fraction, due to higher proportions of goethite and poorly crystalline hematite than in the magnetic fraction. The subdued soil geochemical responses for metals extractable by cold 40% hydrochloric acid (CHX) and for total element concentration reflect the leached nature of the residual profile, low grade of mineralisation, dilution by aeolian components and disequilibrium of fine fractions with coarser, relict Fe-oxides. The stronger contrast for CHX for most metals, compared with total extraction, indicates surface accumulation of trace elements derived from underlying mineralisation. Enzyme leach element anomalies are intense but generally located directly over bedrock sources or major structural breaks, irrespective of the nature of the overburden. Though mechanisms for the dispersion of trace elements extracted by enzyme leaching are not well established, the lack of lateral transport suggests vertical migration of volatile metal species (atmimorphic dispersion). The strong, multi-element response to mineralisation in cypress pine needles indicates significant metal recycling during the present erosional cycle. However, a comparison of the trace element concentrations in vegetation (cypress pine needles) and selective extractions of soils indicates that recycling by the plants is not the dominant mechanism for transportation of metals through the overburden. The vegetation may be responding to hydromorphic dispersion patterns at depth. The use of selective extractions may be useful in detecting mineralisation through deeply leached profiles, but offers even greater potential when integrated with biogeochemistry to detect targets buried by significant thickness of transported cover. 相似文献
66.
Major Ion Chemistry in a Freshwater Coastal Lagoon from Southern Brazil (Mangueira Lagoon): Influence of Groundwater Inputs 总被引:1,自引:0,他引:1
Isaac R. Santos Maria I. Machado Luis F. Niencheski William Burnett Idel B. Milani Carlos F. F. Andrade Richard N. Peterson Jeffrey Chanton Paulo Baisch 《Aquatic Geochemistry》2008,14(2):133-146
This paper characterizes major ion distributions and investigates whether groundwater exerts a major control on the chemical
functioning of Mangueira Lagoon, a large (90 km long), shallow (∼4–5 m deep), and fresh coastal lagoon in southern Brazil.
Water volumes equivalent to ∼80% of the total annual input are used in the summer for irrigating nearby rice plantations,
the most important regional economic activity. While Na+ and Cl− are the major ions in local groundwater, Na+ and HCO3− are the most enriched ions in lagoon water. The ion concentrations measured in Mangueira Lagoon were homogeneous, except
for a few samples affected by rainwater and groundwater inputs. A shore-normal transect starting at the pump house of a rice
irrigation canal indicated strong groundwater input at this canal. In spite of the small volume contribution (∼2% of precipitation),
groundwater discharge accounts for 50–70% of major ion inputs into the lagoon, with ∼70% of the groundwater inputs being anthropogenically
derived (e.g., from the rice irrigation canals). This may have serious implications for the management of the coastal water
resources from Mangueira Lagoon and other similar areas as groundwater associated with agricultural systems may be contaminated
by fertilizers and pesticides. The results imply that groundwater should not be neglected in dissolved species’ budgets even
when its volume contribution is small. 相似文献
67.
Minhan Dai Weidong Zhai Wei-Jun Cai Julie Callahan Bangqin Huang Shaoling Shang Tao Huang Xiaolin Li Zhongming Lu Weifang Chen Zhaozhang Chen 《Continental Shelf Research》2008
We observed a phytoplankton bloom downstream of a large estuarine plume induced by heavy precipitation during a cruise conducted in the Pearl River estuary and the northern South China Sea in May–June 2001. The plume delivered a significant amount of nutrients into the estuary and the adjacent coastal region, and enhanced stratification stimulating a phytoplankton bloom in the region near and offshore of Hong Kong. A several fold increase (0.2–1.8 μg Chl L−1) in biomass (Chl a) was observed during the bloom. During the bloom event, the surface water phytoplankton community structure significantly shifted from a pico-phytoplankton dominated community to one dominated by micro-phytoplankton (>20 μm). In addition to increased Chl a, we observed a significant drawdown of pCO2, biological uptake of dissolved inorganic carbon (DIC) and an associated enhancement of dissolved oxygen and pH, demonstrating enhanced photosynthesis during the bloom. During the bloom, we estimated a net DIC drawdown of 100–150 μmol kg−1 and a TAlk increase of 0–50 μmol kg−1. The mean sea–air CO2 flux at the peak of the bloom was estimated to be as high as ∼−18 mmol m−2 d−1. For an average surface water depth of 5 m, a very high apparent biological CO2 consumption rate of 70–110 mmol m−2 d−1 was estimated. This value is 2–6 times higher than the estimated air–sea exchange rate. 相似文献
68.
Lipids preserved in geological materials mainly originate from cell membrane and leaf waxes, and have the potential to infer biological sources, metabolic pathways, and environmental information. Thus,lipid-based proxies have been widely applied to reconstruct paleoenvironment and paleoecology in the Quaternary. Except the concentration and molecular composition, the carbon isotope compositions of lipids are also a type of important signal sources. For photoautotrophs, the carbon isotope compositions of lipids are mainly mediated by the carbon isotope discrimination during the photosynthesis and lipid biosynthesis processes. In contrast, the carbon isotope compositions of heterotroph derived lipids are controlled by substrates and the carbon isotope fractionation during biosynthesis. In this review, we overview the advances of applications of lipid carbon isotope ratios in lacustrine and peat deposits. In the near future, more attention is suggested to pay to instrumental techniques, such as reduce the sample amount, direct analysis the carbon isotope compositions of molecules with relatively large molecular weight (e.g. BHPs, GDGTs), and widely application of compound-specific radiocarbon isotope analysis. In addition, combination of carbon isotope ratios from multi lipids, or the application of dual carbon and hydrogen isotope ratios of lipids, will shed more information on the response of ecological processes to climate changes. Furthermore, more works are worthy to investigate the relation between biogeochemical processes and paleoclimate changes in the Quaternary. 相似文献
69.
V.V.S.S. Sarma V.R. PrasadB.S.K. Kumar K. RajeevB.M.M. Devi N.P.C. ReddyV.V. Sarma M.D. Kumar 《Continental Shelf Research》2010
Daily variations in nutrients were monitored for 15 months (September 2007–November 2008) in the Godavari estuary, Andhra Pradesh, India, at two fixed locations. River discharge has significant influence on nutrients loading to the estuary, which peaks during June–August (peak discharge period; monsoon) whereas exchanges at the sediment–water interface, groundwater and rainwater contribute significantly during other period. Despite significant amount of nutrients brought by discharge to the study region, phytoplankton biomass, in terms of chlorophyll-a (Chl a), did not increase significantly due to high suspended load and shallow photic depth. Nutrients showed downward gradient towards downstream of the estuary from upstream due to dilution by nutrient poor seawater and biological uptake. The N:P ratios were higher than Redfield ratio in both upstream and downstream of the estuary during no discharge period suggesting PO4 to be a limiting nutrient for phytoplankton production, at levels <0.10 μmol L−1. On the other hand, Si:N ratios were always more than unity during entire study period at both the stations indicating that Si(OH)4 is not a limiting nutrient. Our results suggest that suspended matter limits phytoplankton biomass during peak discharge period whereas PO4 during no discharge period. 相似文献
70.
A combination of biotic, sedimentary and biogeochemical proxies was used to investigate the timing and causes of post-18th
century changes in the stratigraphic record of a large, deep lake on the Boothia Peninsula, Nunavut, Canada (70°15′ N, 94°30′ W).
A varve chronology verified with radioisotopic dating (210Pb and 137Cs) revealed a complex pattern of environmental dynamics since c. AD 1830. An increase in the diatoms Asterionella formosa, Stephanodiscus minutulus and Cyclotella atomus and a decrease in Aulacoseira taxa in the uppermost centimetre of sediment suggested that environmental conditions have favoured the growth of smaller
and/or lighter planktonic species since the 1980s. Longer term changes in some benthic species, the chrysophyte cysts to diatom
valve ratio, %C, and C/N ratios suggest declined river inflow and a relative reduction in allochthonous inputs during the
last century. Higher than average δ15N values in the late 19th to early 20th centuries coincide with changes in bulk carbon and nitrogen profiles, and below average
values since approximately 1950 may be associated with increased atmospheric N loading or reduced productivity. Biogenic silica
and organic carbon accumulation in the sediments suggest a possible decline in lake production during the 20th century that
may be associated with changes in the river discharge regime. The short and long-term ecological and biogeochemical trends
were also reflected in the sedimentary structure through declining varve thickness for the duration of the record and an abrupt
change in sedimentology in the uppermost 1 cm, coinciding with deposition since ca. AD 1987. Together, these biological and
physical changes suggest changes in hydroclimatic conditions in the 20th century, and an increase in planktonic diatom taxa
since the 1980s that coincides with a distinct period of climate warming. 相似文献