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81.
82.
Martha A. Sutula Brian C. Perez Enrique Reyes Daniel L. Childers Steve Davis John W. Day Jr. David Rudnick Fred Sklar 《Estuarine, Coastal and Shelf Science》2003,57(5-6):757-781
Physical and biological processes controlling spatial and temporal variations in material concentration and exchange between the Southern Everglades wetlands and Florida Bay were studied for 2.5 years in three of the five major creek systems draining the watershed. Daily total nitrogen (TN), and total phosphorus (TP) fluxes were measured for 2 years in Taylor River, and ten 10-day intensive studies were conducted in this creek to estimate the seasonal flux of dissolved inorganic nitrogen (N), phosphorus (P), total organic carbon (TOC), and suspended matter. Four 10-day studies were conducted simultaneously in Taylor, McCormick, and Trout Creeks to study the spatial variation in concentration and flux. The annual fluxes of TOC, TN, and TP from the Southern Everglades were estimated from regression equations. The Southern Everglades watershed, a 460-km2 area that includes Taylor Slough and the area south of the C-111 canal, exported 7.1 g C m−2, 0.46 g N m−2, and 0.007 g P m−2, annually. Everglades P flux is three to four orders of magnitude lower than published flux estimates from wetlands influenced by terrigenous sedimentary inputs. These low P flux values reflect both the inherently low P content of Everglades surface water and the efficiency of Everglades carbonate sediments and biota in conserving and recycling this limiting nutrient. The seasonal variation of freshwater input to the watershed was responsible for major temporal variations in N, P, and C export to Florida Bay; approximately 99% of the export occurred during the rainy season. Wind-driven forcing was most important during the later stages of the dry season when low freshwater head coincided with southerly winds, resulting in a net import of water and materials into the wetlands. We also observed an east to west decrease in TN:TP ratio from 212:1 to 127:1. Major spatial gradients in N:P ratios and nutrient concentration and flux among the creek were consistent with the westward decrease in surface water runoff from the P-limited Everglades and increased advection of relatively P-rich Gulf of Mexico (GOM) waters into Florida Bay. Comparison of measured nutrient flux from Everglades surface water inputs from this study with published estimates of other sources of nutrients to Florida Bay (i.e. atmospheric deposition, anthropogenic inputs from the Florida Keys, advection from the GOM) show that Everglades runoff represents only 2% of N inputs and 0.5% of P input to Florida Bay. 相似文献
83.
C. Svensen D. Vili
i P. Wassmann E. Arashkevich T. Ratkova 《Estuarine, Coastal and Shelf Science》2007,71(3-4):381-390
The aim of this study was to investigate phytoplankton abundance, composition and vertical export in the highly stratified Krka estuary, Croatia. The estuary is stratified throughout the year, and an interface between fresh- and brackish water plays an important role in production and degradation of biogenic matter. Vertical export of particulate organic carbon (POC), phytoplankton carbon (PPC) and faecal pellet carbon (FPC) was studied by deploying sediment traps in the middle and lower reach of the estuary and in the adjacent coastal zone. Zooplankton faecal pellet (FP) production experiments were conducted to provide additional information on the potential contribution of FP to the total carbon flux. High suspended concentrations of POC, chlorophyll a and phytoplankton was found in the lower reaches of the Krka estuary, adjacent to a source of anthropogenic eutrophication. The fraction of organic detritus to the total POC flux was 61–69% inside the estuary but only 7% at the marine station. This indicates that the primary producers in the surface layer of the Krka estuary are decomposed in and below the interface and then settle as detritus to the bottom. Low sedimentation rates in the coastal zone outside the estuary revealed that the eutrophication does not spread out of the estuary. Mesozooplankton played a modest role in vertical flux regulation, due to their low abundance and dominance of smaller forms as well as low faecal pellet production rates. It is concluded that processes taking place at the freshwater-seawater interface are of major importance for the vertical carbon flux in the investigated area. 相似文献
84.
本文讨论Bowen数的意义、功能和计算法。同时,依据多年水文气象实测资料作统计,计算出东中国海的Bo值。其结果绘制成1月至12月的月平均分布图,从而对本海域的Bo分布特点作详细分析介绍。 相似文献
85.
溶解无机态营养盐在渤海沉积物-海水界面交换通量研究 总被引:2,自引:0,他引:2
了解无机态营养严在渤海沉积物-海水界面交换速率、通量基控制因素,于2002-08-06~08-24,应用船基沉积物培养方法,现场测定了硅酸盐(SiO3-Si)、磷酸盐(PO4-P)和溶解无机氮(DIN)在沉积物-海水界面上的交换速率(νN)和交换通量(FN)。结果显示,νSiO3-Si变化范围为2 220~4 317μmol.m-2.d-1,平均为3 466μmol.m-2.d-1,νPO4-P为0.4~77μmol.m-2.d-1,平均为39μmol.m-2.d-1,νDIN为667~2 167μmol.m-2.d-1,平均为1 308μmol.m-2.d-1,其中NH4-N和NO3-N的贡献分别为48%和47%左右。进一步分析表明,νSiO3-Si主要由溶解和扩散2个过程控制,前者决定于沉积物黏土矿物含量和含水率,后者决定于营养盐浓度和温度。νPO4-P主要由在以黏土为主的细颗粒和氢氧化铁上的吸附-解吸和扩散过程控制,前者分别决定于沉积物粒度和上覆水中DO浓度,而后者决定于间隙水与上覆水之间的浓度差。结果表明,FSiO3为2.59×1013mmol,FPO4为2.95×1011mmol,FDIN/SE为8.62×1012mmol。这样,为维持夏季渤海初级生产力,沉积物交换过程可提供大约65%的SiO3-Si、12%的PO4-P和22%的DIN,远远高于以河流径流为主的陆源排放。 相似文献
86.
利用HOAPS资料研究南海海气界面热通量时空分布 总被引:6,自引:3,他引:6
基于第二版本HOAPS(Hamburg Ocean Atmosphere Parameters and Fluxes from Satellite data)潜热、感热和海表温度(SST)3个参量的15 a(1988~2002年)逐月平均资料,利用经验正交方法分解分析了这3个参量在南海的时空分布.结果表明,在夏季模态,潜热表现为南高北低,感热表现为中间低两边高,两者主要都是海洋向大气输送热量,但大气有时也向南海中部输送感热;在冬季模态,潜热和感热的高值区都在南海北部,东北部有一强中心,该中心主要是由风场引起的;夏季SST的变化导致全年SST呈准半年周期变化.冬季SST的变化滞后于潜热变化1个月;除夏季和冬季模态外,冬夏转换季节模态也十分明显;HOAPS与NCEP(National Center of Environment Prediction)资料相比,两者3个参量的时空分布大体一致,区别在于HOAPS资料能更好地反映参量的一些细微特征. 相似文献
87.
融冰季节北极破碎冰区热通量的初步研究 总被引:5,自引:1,他引:5
利用航空遥感数字影像的解析结果和实测气象,海洋和海冰资料,定量研究了夏季融冰期北极破碎冰区的热通量,计算了海洋对大气的热贡献,结果表明,在北极夏季海冰融化时,短波辐射远远大于感热和潜热通量,是表面热通量的决定因素,海洋对大气的热贡献主要由长波辐射决定,在观测期间,海洋对大气的热贡献为38~104Wm^-2,这部分热量的大小与海冰的密集度有关,当海冰密集度小于0.8时,海洋对大气的热贡献随海冰密度度的增大而减小,而当海冰密集度超过0.8以后,该热通量将随海冰密集度的增大而增大。 相似文献
88.
南沙群岛海域沉积物间隙水营养盐(氮、磷、硅)的研究 总被引:14,自引:2,他引:14
通过1997年11月和1999年7月2个航次对南沙群岛海域的现场调查,实测了南沙群岛深海盆沉积物的孔隙度?间隙水的营养盐含量,估算了沉积物海水界面营养盐的扩散通量?2个航次的沉积物间隙水的NO2-N,NO3-N ,NH4-N,PO4-P ,SiO3-Si含量,1997年冬季航次平均为4.68,43.84,115.68 ,6.85,425.71μmol·L-1,1999年夏季航次(H4SiO4除外)平均为2.72,36.86,31.40,10.10μmol·L-1;平均扩散通量,1997年冬季航次为0.03,-14.07,121.70,0.25,72.54μmol·m-2·d -1,1999年夏季航次(H4SiO4除外)为0.10,-11.74,40.47,-0.56μmol·m-2·d -1?NH 4和H4SiO4 是扩散量最大的2种组分,而HPO2-4 和NO-2的扩散量极小? 相似文献
89.
90.
贵阳地表水—地下水的硫和氯同位素组成特征及其污染物示踪意义 总被引:5,自引:0,他引:5
喀斯特地表水和地下水的交换活跃,地下水系统容易受到地表污染物的污染。为了解喀斯特城市地表水—地下水系统污染特征和污染物质来源,对贵阳市地表水、地下水、雨水和城市排污污水的硫同位素和氯同位素组成变化进行了研究。贵阳市不同类型水体的δ37Cl值在-4.07‰~+2.03‰之间变化,δ34SSO4值变化为-20.4‰~+20.9‰。大气输入物质和城市排污污水的δ37Cl、δ34S及Cl-/SO42-比值与地表水和地下水的不同,稳定硫和氯同位素的结合研究为示踪地下水污染物来源提供了有效研究手段。贵阳市地下水中的Cl-和SO42-至少有4种来源,人为活动通过城市排污和大气输入向地下水系统大量输入了硫酸盐和氯离子。 相似文献