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1.
根据2010年-2013年福建省主要江河入海口每月一次的监测调查资料,评价2013年的入海口水质现状和富营养化程度,分析2013年的月变化和2010年-2013年的年际变化.结果表明,2013年福建省11条主要江河入海口水质均为劣四类海水水质,富营养化程度高且磷限制特征明显.入海口的石油类和化学需氧量的月变化和年变化受降雨影响大,高值区主要在降雨多的月份和年份,入海口的无机氮和活性磷酸盐含量受水中浮游植物和降雨量双重影响,夏秋低,春冬高,年际变化受年际降雨量变化影响有所波动,但大部分入海口的无机氮和活性磷酸盐含量呈略微上升的趋势. 相似文献
2.
辽河口粪便污染指示菌的时空分布特征 总被引:1,自引:1,他引:0
2013年分别于夏季和秋季对辽河口海域的粪便污染指示菌(总大肠菌群、粪大肠菌群和肠球菌)及环境、水化学要素进行分析,研究粪便污染指示菌在海水中的数量、分布特征及其与环境、水化学指标间的相关性,在此基础上,选取河口地区合适的粪便污染指示菌.结果表明:夏季总大肠菌群数量在1.7×105~6.2×106CFU·L-1之间,粪大肠菌群数量在5.0×102~8.7×104CFU·L-1之间,肠球菌数量在1.0×101~2.5×102CFU·L-1之间;秋季总大肠菌群数量在5.0×102~1.1×105CFU·L-1之间,粪大肠菌群数量在4.0×102~1.0×103CFU·L-1之间,肠球菌数量在3~95 CFU·L-1之间.总大肠菌群、粪大肠菌群和肠球菌的数量变化与环境指标之间有着密切联系,特别是与盐度存在显著相关性;粪大肠菌群、肠球菌与水化学指标Si O4-4-Si、NH+4-N、TP和COD之间均存在显著相关性;其中粪大肠菌群与SiO4-4-Si和TP的相关性系数均大于0.742(p0.01),肠球菌与TP和COD的相关性系数均大于0.742.实验结果表明,辽河口粪便污染指示菌的数量在夏季高于秋季,近岸高于远海,其中粪大肠菌群和肠球菌的数量、分布特征与陆源污染物特别是氮磷的输入量密切相关,而且两者之间呈显著正相关关系.粪大肠菌群与肠球菌在一定程度上可以反映河口粪便污染情况,建议采用粪大肠菌群与肠球菌作为河口粪便污染的指示菌. 相似文献
3.
洋河-戴河河口海域COD时空分布特征研究 总被引:4,自引:0,他引:4
首先应用MIKE 21软件建立了洋河一戴河河口海岸水域水动力与污染物输运数学模型,然后采用实测潮流和化学需氧量(COD)浓度对数学模型进行了验证,最后模拟分析了河口海岸水域COD的输运过程.结果表明,洋河一戴河近岸海域潮波为驻波;潮流为顺岸往复流,涨潮流方向为NE向SW,落潮流方向为SW向NE.涨、落急时刻,河口至外海水域潮流流速递增COD输运方向与涨落潮潮流方向一致涨憩时刻,COD高浓度区向河道推进,其面积最小;落憩时刻,COD高浓度区向外海推进,其面积最大;葡萄岛周围潮流流速低,在潮周期内小于0.14m/s,对COD的稀释作用较弱. 相似文献
4.
基于主成分分析法的黄河口及其邻近水域水质评价 总被引:13,自引:0,他引:13
于2013年6、7、10月在黄河口及邻近水域进行了3个航次的环境调查,获取了盐度、营养盐、COD及重金属等指标数据,利用主成分分析法(PCA)研究该海域的水质状况,并分析影响该海域水质的主要驱动因子.结果表明:应用主成分分析将14项调查指标转换提取为4种主成分,共解释了67.31%的结果.相关分析表明,影响该水域水质的主要驱动因子为氮营养盐、盐度、Si O32--Si和砷.主成分综合得分分析表明,黄河口及邻近水域2013年10月、7月、6月水质污染状况依次降低;空间上总体呈现出以黄河入海口为中心,向邻近海域递减,河口附近及南部水域污染较严重的格局.黄河径流污染物是主要污染源,应加强黄河口及其上游的水环境保护,从而改善黄河口及邻近水域水质状况. 相似文献
5.
Soils from two typical tidal salt marshes with varied salinity in the Yellow River Delta wetland were analysed to determine possible effects of salinity on soil carbon sequestration through changes in soil microbiology. The mean soil respiration (SR) of the salt water–fresh water mixing zone (MZ) was 2.89 times higher than that of the coastal zone (CZ) (4.73 and 1.63?μmol?m?2?s?1, respectively, p?.05), and soil dehydrogenase activity was the main microbial factor influencing SR. In addition to the higher soil microbial biomass, the MZ had more β-Proteobacteria than the CZ, as well as some specific bacteria with strong heterotrophic metabolic activity such as Pseudomonas sp. and Limnobacter sp. that might have led to its higher dehydrogenase activity and respiratory rates. Additionally, the CZ possessed more Halobacteria and Thaumarchaeota with the ability to fix CO2 than the MZ. Significantly lower soil salinity in MZ (4.25?g?kg?1) was suitable for β-Proteobacteria, but detrimental for Halobacteria compared with CZ (7.09?g?kg?1, p?.01), which might lead to the lower microbial decomposition capacity of soils in CZ. As a result, the CZ has a higher soil organic carbon content than the MZ. 相似文献
6.
K.R. Renjith V. Sudheesh Anu Shaji Ejin George Manju Mary Joseph C.S. Ratheesh Kumar 《毒物与环境化学》2016,98(1):36-52
The spatial and temporal variations of some trace metals in the surface sediments of Cochin Estuary were analyzed along with their geochemical associations to identify the possible sources, bioavailability and the health risks posed by them. The dominance of kaolinite and suggested that clay minerals distribution is influenced by sediment sorting. Total metal analysis revealed enrichment for Cd, Pb and Zn due to anthropogenic activities. The speciation analysis established that notwithstanding the large availability, carbonate as well as organic and sulfides bound fractions showed negligible associations with most of the metals. Hydrous Fe–Mn oxides appeared to play a major role in controlling the fate and transport of these metals in the sediments of Cochin Estuary. Lower contribution of the residual fractions for Cd (21%–26%), Pb (<60%) and Zn (24%–42%) indicated an obvious increase of other geochemical fractions. Risk assessment analysis revealed that regardless of total concentration, none of the analyzed metals were at safe levels in the estuary as appreciable percentages were found to be associated with mobile geochemical forms. The speciation study conspicuously established that the metals originating from non-geogenic sources are largely associated with the labile fractions and hence are more detrimental to the aquatic biota. 相似文献
7.
春、夏季长江口及其邻近海域溶解N2O的分布和海-气交换通量 总被引:1,自引:1,他引:0
分别于2012年3月和7月对长江口及其邻近海域进行了调查,对水体中溶解氧化亚氮(N2O)的分布及海-气交换通量进行了研究.结果表明,春季长江口及其邻近海域表层海水中溶解N2O浓度范围为9.34~49.08 nmol·L-1,平均值为(13.27±6.40)nmol·L-1.夏季表层溶解N2O浓度范围为7.27~27.81 nmol·L-1、平均值为(10.62±5.03)nmol·L-1.两航次表、底层海水中溶解N2O浓度相差不大.长江口溶解N2O浓度由近岸向外海逐渐降低,受陆源输入影响显著.溶解N2O浓度高值出现在长江口最大浑浊带附近,这主要是由于水体中较高的硝化速率造成的.温度是影响N2O分布的另一个重要因素,对溶解N2O浓度有双重作用.春季和夏季表层海水中N2O饱和度范围分别为86.9%~351.3%和111.7%~396.0%,平均值分别为(111.5±41.4)%和(155.9±68.4)%,大部分站位处于过饱和状态.利用LM86、W92和RC01公式分别计算了长江口及其邻近海域N2O的海-气交换通量,春季分别为(3.2±10.9)、(5.5±19.3)和(12.2±52.3)μmol·(m2·d)-1,夏季分别为(7.3±12.4)、(12.7±20.4)和(20.4±35.9)μmol·(m2·d)-1,初步估算出长江口及其邻近海域的年平均释放量分别为0.6×10-2Tg·a-1(LM86)、1.1×10-2Tg·a-1(W92)、2.0×10-2Tg·a-1(RC01).长江口及其邻近海域虽然只占全球海洋总面积的0.02%,但其释放的N2O占全球海洋释放量的0.06%,表明长江口及其邻近海域是产生和释放N2O的活跃区域. 相似文献
8.
黄河口不同恢复阶段湿地土壤N2O产生的不同过程及贡献 总被引:3,自引:1,他引:2
采用时空替代法,选择黄河口生态恢复前后未恢复区(R0)、2007年恢复区(R2007)和2002年恢复区(R2002)的芦苇湿地为研究对象,分析了生态恢复工程对湿地土壤N2O产生不同过程与贡献的影响.结果表明,尽管不同恢复阶段湿地土壤N2O总产生量差异明显,但总体均表现为N2O释放.恢复区湿地土壤的N2O产生量大于未恢复区.N2O的产生主要以硝化作用和硝化细菌反硝化作用为主,而反硝化作用对N2O的产生有较大削弱作用,这与不同恢复阶段湿地土壤理化性质密切相关.非生物作用对N2O产生量贡献较大,这与黄河口为高活性铁区,Fe的还原作用关系密切.尽管黄河口不同恢复阶段湿地土壤N2O的产生是生物作用与非生物作用共同作用的结果,但由于非生物作用对N2O产生的影响较大,应受到特别关注.温度和水分对不同恢复阶段湿地土壤N2O产生过程的影响不尽一致,这与土壤微生物活性对温度和水分的响应差异有关.黄河口不同恢复阶段湿地土壤的N2O总产生量介于(0.37±0.08)~(9.75±7.64)nmol·(kg·h)-1,略高于闽江口互花米草湿地的N2O总产生量,但明显低于富氧森林土壤、草原土壤和闽江口短叶茳芏湿地的N2O总产生量.研究发现,黄河口生态恢复工程的长期实施明显促进了N2O的产生,因而下一步生态恢复工程应统筹考虑景观恢复与温室气体削弱这两方面因素. 相似文献
9.
Rookery Bay and Naples Bay circulation simulations: Applications to tides and fresh water inflow regulation 总被引:1,自引:0,他引:1
A three-dimensional, baroclinic numerical circulation model is applied to the combined Rookery Bay and Naples Bay estuary complex. We focus on two aspects of the model simulations: the tidal circulation, for which we have observations of sea level and currents at several stations spanning Rookery Bay, and the salinity variations, for which we have observations at one station. After establishing model veracity through quantitative comparisons with observations, we use the model to address salinity changes that could arise due to regulatory fresh water flow rate modifications. Two different sets of experiments are performed. The first considers the salinity changes in Rookery Bay by increasing the fresh water flow rates into Henderson Creek through the addition of either 1.4 m3/s or 2.8 m3/s to the ambient flow rates. The second considers the salinity changes in Naples Bay by decreasing the fresh water flow rates through the subtraction of 9.9 m3/s from the Golden Gate Canals’ ambient flow rates. All of these scenarios result in significant, quantifiable salinity changes within the Rookery Bay and Naples Bay estuary complexes, demonstrating the environmental management utility of using high resolution, three-dimensional, numerical circulation models, as applied herein, for assessing the water properties of complex, multi-connected estuarine systems. 相似文献
10.
Modeling estuarine-shelf exchanges in a deltaic estuary: Implications for coastal carbon budgets and hypoxia 总被引:1,自引:0,他引:1
The export of wetland-derived materials to the coastal ocean (i.e., the “Outwelling” hypothesis) has received considerable attention over the past several decades. While a number of studies have shown that estuaries export appreciable amounts of nutrients and carbon, few studies have attempted to estimate the importance of estuarine sources for the coastal carbon budgets in river-dominated coastal ecosystems. A novel tidal prism model was developed to examine estuarine-shelf exchanges in the Barataria estuary, a deltaic estuary located in the north-central Gulf of Mexico. This estuary has been the site of a massive wetland loss, and it has been hypothesized that carbon export from the eroding coastal wetlands supports the development of a large hypoxic zone in the coastal Gulf of Mexico. The model results show that the Barataria estuary receives nitrogen through the tidal passes and releases carbon to the coastal ocean. The mean calculated tidal water discharge of 6930 m3 s−1 is equivalent to about 43% of the lower Mississippi River discharge. The annual total organic carbon (TOC) export is 109 million kg, or 57 gC m2 yr−1 when prorated to the total water area of the estuary. This carbon export is equivalent to a loss of 0.5 m of wetland soil horizon over an area of 8.4 km2, and accounts for about 34% of the observed annual wetland loss in the estuary between 1978 and 2000. Compared to the lower Mississippi River, the Barataria estuary appears to be a very small source of TOC for the northern Gulf of Mexico (2.7% of riverine TOC), and is unlikely to have a significant influence on the development of the Gulf's hypoxia. 相似文献