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1.
【目的】研究夏季湛江湾陆源溶解态氮(TDN)和溶解态磷(TDP)入海污染物浓度、组成和入海通量特征。【方法】根据2018年夏季(7月)湛江湾陆源TDN和TDP入海污染物现场调查,进行实验室分光光度法分析。【结果】湛江湾夏季陆源TDN和TDP平均浓度分别为(366.87±400.61)和(28.60±37.52)μmol/L;溶解态无机氮(DIN)和溶解态无机磷(DIP)平均浓度分别为(60.90±41.81)和(20.28±34.42)μmol/L;溶解态有机氮(DON)和溶解态有机磷(DOP)平均浓度分别为(305.97±413.96)和(8.32±13.54)μmol/L;夏季湛江湾排污口中TDN和TDP严重超标,大部分入海河口和排污口站位处于劣五类水质,主要位于南柳河、绿塘河和文保河入海河口。DON/TDN和DOP/TDP平均分别是83.4%和29.1%,DON和DIP分别是TDN和TDP的主要存在形态。TDN/TDP、DON/DOP、DIN/DIP平均分别是15.5±7.0、46.4±58.3、14.8±24.3,是导致湛江湾呈现氮限制重要原因之一。夏季湛江湾TDN、TDP输入通量分别为1617.73t和266.32t,其中遂溪河占比最高,分别为71.1%和58.8%【结论】湛江湾夏季陆源入海氮磷污染物浓度较高,氮磷比失衡,陆源污染物输入通量空间分布呈现西高东低特征,实现湛江湾近海水质根本改善必须加强陆源入海污染物控制。  相似文献   

2.
深圳湾海水石油烃分布特征及其相关因素的探讨   总被引:3,自引:0,他引:3  
2008年2月(冬季)、5月(春季)、8月(夏季)和11月(秋季)对深圳湾海水中石油烃进行4个航次的调查,研究深圳湾石油烃的分布特征,并对与其相关因素之间的关系进行了探讨。结果表明:整个深圳湾海域石油含量基本呈现出自湾内到湾外逐渐降低的平面分布特征;石油烃含量在季节上存在一定的差异:ρ冬季>ρ夏季>ρ春季>ρ秋季;石油烃与环境因子Chl-a、DIN存在极显著正相关(P<0.01),其相关系数分别为0.90,0.86,与DIP存在显著相关(P<0.05),相关系数为0.78。  相似文献   

3.
徐闻珊瑚礁保护区营养盐时空分布特征   总被引:2,自引:1,他引:1  
2006年8月(夏季)、2006年11月(秋季)、2007年2月(冬季)和2007年4月(春季)在徐闻珊瑚礁自然保护区灯楼角至流沙湾近岸海域调查徐闻珊瑚礁保护区的营养盐变化及空间分布特征。结果表明:徐闻珊瑚礁保护区水域溶解态无机氮以NO3--N为主,其含量超过总溶解无机氮的50%;各站点NO2--N含量相对较低,冬季NO3--N和NH4+-N含量均高于其它季节;无机磷含量在0mg/L~0.030mg/L之间变化;活性硅含量表现为夏秋季节高、冬春季节低;表层水体硝酸盐氮/无机磷原子比值(N/P)夏季较低,不存在无机磷受限情况,而冬季N/P整体较高,此时水体主要受无机磷限制。  相似文献   

4.
【目的】分析评价2010-2017年嵊泗马鞍列岛保护区海域的水质状况。【方法】采用水质有机污染指数(A)法进行水质有机污染评价,采用富营养化指数(E)法和营养状态质量指数(INQ)法进行水质富营养化评价。【结果】该保护区海域水质化学需氧量(COD)和溶解氧(DO)符合第一类海水水质标准,无机磷(DIP)含量有3个年份符合第一类海水水质标准,其余年份超过第一类但符合第二类海水水质标准,无机氮(DIN)质量浓度超标严重,2015年达到0.674 mg/L;叶绿素a(Chl-a)本底含量较高,适宜条件下使得浮游植物大量繁殖,Chl-a含量急剧上升,并容易诱发赤潮;有机污染指数评价显示,2012-2015年水质有机污染状况达到中度污染以上,并且有3年达到严重污染级别,最大A值为2014年和2015年的4.10,2016年污染最轻,为开始受到污染级别;富营养化指数和营养状态质量指数评价显示,最大E值和INQ值分别为2012年的4.29和2010年的8.59,DIN含量高是富营养化的主要贡献因子。【结论】该保护区海域水质主要污染因子为DIN,水质有机污染状况呈现年度波动状态,水质富营养化较严重。  相似文献   

5.
目的】研究了珠江口区域近年来大气湿沉降中无机氮的变化特征及其对近海海水生态系统的影响。【方法】对2003-2014年珠海市香洲地区湿沉降中NO_3~--N和NH_4~+-N浓度及湿沉降通量的变化特征进行了分析。【结果】香洲地区湿沉降中NO_3~--N和NH_4~+-N的浓度均有明显的季节变化,表现为旱季高而雨季低,与降雨量呈相反的变化趋势;氮素的浓度在年际变化有波动,但无明显变化趋势;氮素湿沉降通量与浓度变化相反,雨季明显高于旱季;降水量、当地污染状况、大气中污染物(气溶胶粒子)浓度、降雨类型以及气象条件等因素是造成季节差异的主要原因;此外,香洲地区大气无机氮湿沉降具有很强的事件特征。【结论】香洲地区氮素湿沉降浓度春秋季高于海水,且DIN成分比例与海水有差异,可能改变表层水体营养盐结构,影响浮游植物的生长。  相似文献   

6.
【目的】研究珠江口海域营养物和叶绿素a的时空分布特征。【方法】根据2015年5月(春季)、8月(夏季)和10月(秋季)3个季节的现场调查资料,通过对3个季节浮游植物Chl-a以及包括氮磷比在内的营养结构进行综合分析,深入探讨珠江口海域浮游植物Chl-a的时空变化调控机制。【结果】珠江口海域各季节营养盐呈高氮低磷分布,3个季节N︰P均值49.6。叶绿素a季节差异明显,夏季叶绿素a含量是春季的2倍、秋季的9倍。【结论】春季浮游植物生长受温度影响较大,夏、秋两季由于外海水的入侵导致磷限制比较显著;DIN能满足各季节浮游植物生长的需要,珠江口海域浮游植物生长对于磷营养盐的响应要优于氮营养盐。  相似文献   

7.
以北部湾1999年7月至2009年6月11年的Sea Wi FS卫星遥感颗粒无机碳度资料为基础,研究北部湾颗粒无机碳浓度的时空分布特征,并初步探讨其可能的海洋动力调控机制。结果表明:在季节变化上,整个冬季北部湾颗粒无机碳浓度普遍较高,表现出季节平均最大值(0.012 mol·m-3),春季普遍较低(0.004 mol·m-3),表现出全年最低水平;不同区域的最高水平出现的季节却有所不同:北部湾北部沿岸区域颗粒无机碳浓度在秋季较高,海南岛西部大部分海域在冬季较高,北部湾西北部沿岸则在夏季较高;在空间分布上,近岸海区的颗粒无机碳浓度明显高于海湾中央区域,北部湾北部海域普遍高于南部海域,东部海域高于西部海域。综合相关分析表明,北部湾颗粒无机碳浓度的这一时空分布特征主要同季风的强弱及风向有关,同时也可能与海表温度、流场(如沿岸上升流等)及陆地径流量等有关。  相似文献   

8.
高原季风对500hPa中纬度西风带活动的影响   总被引:1,自引:0,他引:1  
利用1948--2008年NCEP/NCAR逐月再分析资料和1958—2007年中国560站夏季降水资料,设计了一个区域西风指数,探讨了高原夏季风和500百帕中纬度西风带活动的时间一频率多层次年际、年代际时间尺度变化特征以及对我国夏季降水的影响。结果表明:高原夏季风对区域西风带活动具有显著的影响,近61年来,两者总体变化趋势相反,前者增强后者减弱。除了都具有1—2年、27—28年和线性趋势变化的共同周期外,还呈现出各自的周期变化,并且均发生过一次年代际气候跃变现象,前者发生在20世纪70年代中期,后者发生在80年代中期,高原夏季风由偏弱转为偏强,区域西风由偏强转入偏弱,在跃变前后两者各种周期的时间尺度和强度存在明显的不同。如果排除1—2年周期的不确定性,预计接下来高原夏季风将直接进入偏弱期,区域西风指数可能在3—4年后才转入偏强期,并且高原夏季风会比区域西风指数提前发生突变,对区域西风指数具有一定的指示意义。高原夏季风不仅自身对我国夏季降水产生重要的作用,同时,它通过影响中纬度西风带的活动,间接地影响着我国的夏季降水。  相似文献   

9.
近50年中国地表净辐射的时空变化特征分析   总被引:1,自引:0,他引:1  
基于GIS空间分析技术与Mann-Kendall趋势分析方法,对中国陆地区域699个气象站点1961-2010年逐年、季平均地表净辐射进行时空变化特征分析,结果表明:(1)参数拟合后的FAO Penman修正式对模拟站点逐日地表净辐射的总体精度较高,均方根误差为27.9W.m-2,相关系数为0.85,平均相对误差为0.13;(2)全国近50年站点平均地表净辐射在年、季均呈现出较明显的下降过程,年均降幅为0.74W.m-2.10a-1,不同季节的下降幅度存在差异,夏季降幅最大;(3)逐站点分析显示全国大部分站点(59.8%)年均地表净辐射呈显著下降趋势(0.05),东部趋势变化比西部明显,夏季在地表净辐射年际变化中的贡献最大,华北、华中、华南地区的站点在春夏秋季均呈显著下降趋势。  相似文献   

10.
【目的】研究三沙湾海水增养殖区溶解氧的动态变化及有机污染状况。【方法】利用2014年三沙湾水质的监测结果,分析调查区表层溶解氧变化特征,以及与水温、无机氮、活性磷酸盐之间的相关性,采用单因子指数法和有机污染指数法分别对调查区溶解氧和有机污染进行评价。【结果与结论】调查区内共布设9个水质监测站位,于2014年1、5、8、9、10月分别采集调查区的表层水样。调查区溶解氧质量浓度在4.44~8.60 mg/L之间,平均值为6.29 mg/L,除8月有2站次和9月有5站次的测值处于三类海水水质标准外,其余均处于一、二类海水水质标准水平;溶解氧季节变化明显呈冬季>春季>秋季>夏季的变化规律,平面分布总体呈西北部高,东南部低的变化特征;结合历史资料分析长期变化趋势,溶解氧总体呈现下降趋势,尤其在2000年下降幅度较为明显,这跟三沙湾沿岸带的经济发展对环境影响有关;溶解氧与水温之间呈现极为显著(r=-0.9464)的负相关关系,与无机氮和硝酸盐氮之间均呈现极为显著(r=0.827 5,r=0.821 3)的正相关关系,与活性磷酸盐之间呈现显著(r=0.5413)的正相关关系,说明水温是影响溶解氧变化的首要因子,无机氮和硝酸盐氮以及活性磷酸盐也是影响溶解氧变化的重要因子;从单因子指数来看,在整个调查期间溶解氧污染指数大于1.0的达到15.6%,说明该站点水质已受该因子污染;从有机污染指数来看,调查区水质状况处在开始受到污染状态。  相似文献   

11.
Based on survey data from April to May 2009, distribution and its influential factors of dissolved inorganic nitrogen (DIN) over the continental slopes of the Yellow Sea (YS) and East China Sea (ECS) are discussed. Influenced by the Changjiang (Yangtze) River water, alongshore currents, and the Kuroshio current off the coast, DIN concentrations were higher in the Changjiang River estuary, but lower (<1 μmol/L) in the northern and eastern YS and outer continental shelf area of the ECS. In the YS, the thermocline formed in spring, and a cold-water mass with higher DIN concentration (about 11 μmol/L) formed in benthonic water around 123.2°E. In Changjiang estuary (around 123°E, 32°N), DIN concentration was higher in the 10 m layer; however, the bottom DIN concentration was lower, possibly influenced by mixing of the Taiwan Warm Current and offshore currents.  相似文献   

12.
Eutrophication has emerged as a key environmental problem in Chinese coastal waters, especially in the Changjiang (Yangtze) River estuary. In this area, large nutrient inputs result in frequent harmful algal blooms and serious hypoxia in bottom waters. Four cruises were made in the estuary in 2006 to assess the concentration and distribution of dissolved inorganic nitrogen (DIN) and phosphorus (DIP). The concentration of DIN decreased gradually in a linear relationship with salinity from the river mouth to ...  相似文献   

13.
Data on the distribution of dissolved inorganic carbon (DIC) were obtained from two cruises in the North Yellow Sea (NYS) and off the Qingdao Coast (QC) in October, 2007. Carbonate parameters were calculated. The concentrations of DIC are from 1.896–2.229 mmolL−1 in the NYS and from 1.939–2.032 mmolL−1 off the QC. In the southwest of the NYS, DIC in the upper layers decreases from the north of the SP (Shandong Peninsula) shelf to the center of the NYS; whereas in the lower layers DIC increases from the north of the SP shelf to the center of the NYS and South Yellow Sea. In the northeast of the NYS, DIC in all layers increases from the YR (Yalu River) estuary to the centre of the NYS. The distribution of DIC in NYS can be used as an indicator of Yellow Sea Cold Water Mass (YSCWM). Air-sea CO2 fluxes were calculated using three models and the results suggest that both the NYS and the QC waters are potential sources of atmospheric CO2 in October.  相似文献   

14.
Water samples were collected in the coastal area of the Changjiang Estuary on four cruises from August 2002 to May 2003. The seasonal variations of dissolved inorganic arsenic (DIAs) distributions were analyzed. The results showed that the distributions of DIAs were mainly influenced by Water (KSSW). The concentration of the total dissolved the terrestrial input and the intrusion of the Kuroshio Subsurface inorganic arsenic (TDIAs) decreased consecutively from winter to summer, while it increased in autumn. The distributions of TDIAs showed some relationships with salinity and suspended particulate matter (SPM). The relationships between DIAs speciation (including arsenite [ As( Ⅲ ) ] and arsenate [ As( Ⅴ ) ]), biological activity and the availabilities of the phosphate were investigated in the study area for the cruise August 2002. The ratio of As (Ⅲ)/TDIAs increased with the decrease of phosphate concentrations. In the bottom water, the As( Ⅲ )/TDIAs ratio decreased with the increasing of N/P. The concentration of TDIAs decreased 28.7% approximately after the occurrence of harmful algal blooms (HAB) because of the uptake of arsenate by algae. Further study is needed about the arsenic source/sink relationships in their vertical or horizontal profiles and the uptake mechanism during the occurrence of harmful algal blooms.  相似文献   

15.
lareODUcrIONThetotalcarbondi0xideisandriportantparametrforestirnatingthespatiotem0ralinorganiccarbontransport,andanthropogeniccarb0ndi0xideincreasesintheoonn.Ap~coulomericednique(MethodG0fASTMD5l3-82)formeasuringDICinanwaterdevelopedbyJohnsonetal.(l985)istheshipkoardmehodchosenfortheglobeocanicinofganiccarb0nsurveyt0bemadeinconjunCtionwiththeW0riddrinCirmlationExperirnentWorklHydrographicProgram(WOCEWHP)andtheJointGobal~nFluxStudy(JGOFS)program(Catherine,G.etal.,l993).Thecruxof…  相似文献   

16.
Two surveys were performed for determining bacteria biomass (BB), temperature, salinity, chlorophyll a (chl-a) and nutrient concentrations at 11 stations with three sampling depths in the high-incidence regions of red tide in the East China Sea (ECS) in the spring of 2006. Temperature and salinity increased from nearshore to offshore region and from high latitude to low latitude in the two cruises of 2006. BB were between 0.3–5.2 mgC m−3 (about 2.1 mgC m−3 on average) and 0.2–6.0 mgC m−3 (about 2.7 mgC m−3 on average) respectively in the two cruises. BB in the surface layer decreased from the Changjiang River estuary to high sea and from low latitude to high latitude. The results showed that bacterial growth was regulated by temperature, primary production and inorganic nutrient concentrations depending on different hydrographic conditions. In the surface and middle layers where the primary production can supply enough organic substrate, temperature was the main factor to control bacteria biomass. BB showed a good correlation between the surface and middle layers in both cruises. The distribution of nutrients during both cruises showed a similar decreasing trend from nearshore region and high latitude to offshore region and low latitude. High BB values were mainly recorded from samples in the middle layer where chl-a concentrations were also high, indicating primary production being strongly correlated with temperature over the ECS shelf. In the offshore area, phosphate and silicate became limiting factors for phytoplankton growth with indirect influence on BB. Bacteria played an important role in nitrogen regeneration process turning organic nitrogen to inorganic forms such as NH4 +. The increasing ratio of NH4 +/DIN could be a proof of that.  相似文献   

17.
Riverine carbon flux is an important component of the global carbon cycle. The spatial and temporal variations of organic and inorganic carbon were examined during both dry and wet seasons in the Yellow River estuary. Concentrations of dissolved organic carbon (DOC) and dissolved inorganic carbon (DIC) in the Yellow River during dry seasons were higher than those during wet seasons. The effective concentrations of DOC (CDOC*) were higher than the observed DOC at zero salinity. This input of DOC in the Yellow River estuary was due to sediment desorption processes in low salinity regions. In contrast to DOC, the effective concentrations of DIC were 10% lower than the DIC measured at freshwater end, and the loss of DIC was caused by CaCO3 precipitation in low salinity region. Particulate organic carbon (POC) and particulate inorganic carbon (PIC) contents of the particles stabilized to constant values (0.5%±0.05% and 1.8%±0.2%, respectively) within the turbidity maximum zone (TMZ) and showed no noticeable seasonal variations. A rapid drop of PIC and rise of POC occurred simultaneously outside the TMZ due to an intense dilution of riverine inorganic-rich particles being transported into a pool of aquatic organic-poor particles outside the TMZ. Annually, the Yellow River transported 6.95×105 t of DIC, 0.64×105 t of DOC, 78.58×105 t of PIC and 2.29×105 t of POC to the sea.  相似文献   

18.
Incubation experiments are carried out to study the exchange rates of dissolved inorganic nutrients including silicate, phosphate, ammonium, nitrite, and nitrate (^vSiO3-Si,^vPO4-P, ^vNH4-N, ^vNO2-N and ^vNO3-N) at the sediment-water interface in the Jiaozhou Bay. Major factors influencing the exchange rates are discussed in detail, which include the dissolved inorganic nutrient concentrations in porewater (Cpw), water and clay contents, and grain size of the sediments (CH2O, Cclay and GSsed). The results may provide insight into the dynamics of nutrient transport and the environmental capacity of nutrients in Jiaozhou Bay, and should be beneficial to solving the problems caused by excessive nutrient input this area.  相似文献   

19.
A severe Cochlodinium geminatum red tide (>300 km2) was observed in the Zhujiang (Pearl) River estuary, South China Sea in autumn 2009. We evaluated the environmental conditions and phytoplankton community structure during the outbreak. The red tide water mass had significantly higher dissolved inorganic phosphate (DIP), ammonia, and temperature, but significantly lower nitrite, nitrate, dissolved inorganic nitrogen (DIN), and DIN/DIP relative to the non-red-tide zones. The phytoplankton assemblage was dominated by dinoflagellates and diatoms during the red tide. C. geminatum was the most abundant species, with a peak density of 4.13×107 cell/L, accounting for >65% of the total phytoplankton density. The DIN/DIP ratio was the most important predictor of species, accounting for 12.45% of the total variation in the phytoplankton community. Heavy phosphorus loading, low precipitation, and severe saline intrusion were likely responsible for the bloom of C. geminatum.  相似文献   

20.
Incubation experiments are carried out to study the exchange rates of dissolved inorganic nutrients including silicate, phosphate, ammonium, nitrite, and nitrate (vSiO3-Si, vPO4-P, vNH4-N, vNO2-N and vNO3-N) at the sediment-water interface in the Jiaozhou Bay. Major factors influencing the exchange rates are discussed in detail, which include the dissolved inorganic nutrient concentrations in porewater (Cpw), water and clay contents, and grain size of the sediments (CH2O, Cclay and GSsed). The results may provide insight into the dynamics of nutrient transport and the environmental capacity of nutrients in Jiaozhou Bay, and should be beneficial to solving the problems caused by excessive nutrient input this area.  相似文献   

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