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991.
鲁中南岩溶水资源综合类型及合理调蓄研究   总被引:7,自引:1,他引:7  
鲁中南岩溶区是中国北方半干旱温带岩溶区中具有代表性的地区之一。该区岩水资源分布具有明显的不均匀性和大面积分散补给而局部富集等特征。岩溶形态以溶蚀裂隙洞穴为主,地下水类型多为裂隙溶洞型。在对该区岩溶水补给,富集,径流及排泄特征的研究基础上,初步将本区地表水和地下水资源划分为两大类型,即地下岩溶水径带变化带水资源类型和排泄带水资源及地下岩溶水资源类型。对该地区地表水和地下水的合理调蓄问题进行了系统的分析和总结,并提出了相关的对策。  相似文献   
992.
黄河三角洲地区地下淡水(微咸水)的形成与演化   总被引:10,自引:0,他引:10  
黄河三角洲地区地下淡水(微咸水)资源贫乏,咸水广布。南部冲洪积平原受第二次海侵层位的影响形成大面积咸水,后被逐渐淡化。近年来由于开采量加大,又使北部咸水南侵。海积冲积平原随着黄河河道的变迁,仅在黄河现行河道两侧和充水的黄河故道带分布有淡水(微咸水)。近代,现代黄河三角洲古河道带和决口扇淡水体已被咸化。  相似文献   
993.
采用水体中设置弹性填料对比实验的方法,在12口聚乙烯水槽实施淡水精养殖日本鳗鲡,进行对鳗鲡精养殖水体生物膜原位修复节水增效效果、机理及应用前景的研究。结果表明,在207天的养殖期间,生物膜原位修复技术应用处理组的平均日换水率仅1.2%,比对照组显著节水减排74%(P0.01);处理组的主要水质因子pH、DO、TAN、NO2-N、NO3-N、COD等浓度均符合相关的渔业水质标准;处理组的起捕尾重、产量、生长速度分别比对照组高106%(P0.2)、108%(P0.2)和220%(P0.15),饲料系数低于对照组38.4%(P0.1)。此外,处理组弹性填料设置的适宜密度为填料占水体体积的10%。因此,精养殖水体生物膜原位修复技术,具有节水、减排与节能效果显著,投资与运行成本低,环保、低碳、安全,操作简便、易推广等优点。该革新性的生态工程低碳养殖技术对推动我国水产养殖发展方式从高耗费资源型向资源节约与环境友好型转变将产生重大影响。  相似文献   
994.
深海沉积物分类与命名的参数指标和主成分分析   总被引:1,自引:0,他引:1  
对于南海中部(118个表层沉积物样,水深82~4 420 m)、东部(106个表层沉积物样,水深700~4 508 m)海域的表层沉积物的粒度资料按小于200 m,200~2 000 m,大于2 000 m水深段对水深、平均粒径、黏土含量进行统计分析,结果表明从陆架到陆坡再到深海,平均粒径和黏土含量随水深增加呈非常有规律的变化;把大于2 000 m水深区域再细分为大于2 500 m,大于3 000 m,大于3 500 m,结果表明平均粒径和黏土含量随水深增加几乎无变化,在南海中部水深大于2 000 m海域平均粒径为3.39~3.54μm,黏土平均含量为54.91%~55.47%;在南海东部水深大于2 000 m海域平均粒径为3.25~3.37μm,黏土平均含量为53.91%~54.56%。研究表明2 000 m水深具有划分深海沉积物的指示意义。南海中部水深大于2 000 m海域黏土平均含量为55.19%,平均粒径为3.39μm;在南海东部水深大于2 000 m海域黏土平均含量为53.91%,平均粒径为3.37μm;在南海中部、东部水深大于2 000 m海域平均粒径均小于4μm,黏土平均含量均大于50%,表明深海沉积物粒度特征是平均粒径小于4μm和黏土平均含量大于50%。黏土含量是非生物组分的代表和划分深海沉积物类型的一个独立参数,钙质生物和硅质生物组分是另外两个独立参数。南海东部海域表层沉积物中55种元素总含量为47.50%,硅、铝、钛、钠、钾、磷、钙、镁、铁、锰十种主元素含量为47.03%,其他45种元素含量为0.47%,虽然沉积物来源复杂、成因不同,但沉积物化学主成分并不复杂,主要由前10种主元素和氧元素组成。沉积物主元素铝、钙、硅分别富集于黏土、钙质沉积、硅质沉积中。通过建立沉积物生源组分与碳酸钙、三氧化二铝、二氧化硅的量化关系,可把碳酸钙、生物二氧化硅作为钙质生物和硅质生物的两个替代参数。  相似文献   
995.
This work aimed to evaluate, in vitro, the capability of roots of two salt marsh plants to release low molecular weight organic acids (LMWOAs) and to ascertain whether Cu contamination would stimulate or not organic acids exudation. The sea rush Juncus maritimus and the sea-club rush Scirpus maritimus, both from the lower Douro river estuary (NW Portugal), were used. Plants were collected seasonally, four times a year in 2004, during low tide. After sampling, plant roots were washed for removal of adherent particles and immersed for 2 h in a solution that matched salinity (3) and pH (7.5) of the pore water from the same location to obtain plant exudates. In one of the seasons, similar experiments were carried out but spiking the solution with different amounts of Cu in order to embrace the range between 0 and 1600 nM. In the final solutions as well as in sediment pore water LMWOAs were determined by high performance liquid chromatography. Plants were able to release, in a short period of time, relatively high amounts of LMWOAs (oxalate, citrate, malate, malonate, and succinate). In the sediment pore water oxalate, succinate and acetate were also detected. Therefore, plant roots probably contributed to the presence of some of these organic compounds in pore water. Exudation differed between the plant species and also showed some seasonally variation, particularly for S. maritimus. The release of oxalate by J. maritimus increased with Cu increase in the media. However, exudation of the other LMWOAs did not seem to be stimulated by Cu contamination in the media. This fact is compatible with the existence of alternative internal mechanisms for Cu detoxification, as denoted by the fact that in media contaminated with Cu both plant species accumulated relatively high amounts (29–83%) of the initially dissolved Cu. This study expands our knowledge on the contribution of globally dominant salt marsh plants to the release of LMWOAs into the environment.  相似文献   
996.
The coupling between biogenic reworking activity and reactive organic matter patterns within deposits is poorly understood and often ignored. In this study, we examined how common experimental treatments of sediment affect the burrowing behavior of the polychaete Nephtys incisa and how these effects may interact with reactive organic matter distributions to alter diagenetic transport – reaction balances. Sediment and animals were recovered from a subtidal site in central Long Island Sound, USA. The upper 15 cm of the sediment was sectioned into sub-intervals, and each interval separately sieved and homogenized. Three initial distributions of sediment and organic substrate reactivity were setup in a series of microcosms: (1) a reconstituted natural pattern with surface-derived sediment overlying sediment obtained from progressively deeper material to a depth of 15 cm (Natural); (2) a 15 cm thick sediment layer composed only of surface-derived sediment (Rich); and (3) a 15 cm thick layer composed of uniformally mixed sediment from the original 15 cm sediment profile (Averaged). The two last treatments are comparable to that used in microcosms in many previous studies of bioturbation and interspecific functional interaction experiments. Sediment grain size distributions were 97.5% silt-clay and showed no depth dependent patterns. Sediment porosity gradients were slightly altered by the treatments. Nepthys were reintroduced and aquariums were X-rayed regularly over 5 months to visualize and quantify spatial and temporal dynamics of burrows. The burrowing behaviour of adult populations having similar total biovolume, biomass, abundance, and individual sizes differed substantially as a function of treatment. Burrows in sediment with natural property gradients were much shallower and less dense than those in microcosms with altered gradients. The burrow volume/biovolume ratio was also lower in the substrate with natural organic reactivity gradients. Variation in food resources or in sediment mechanical properties associated with treatments, the latter in part coupled to remineralization processes such as exopolymer production, may explain the burrowing responses. In addition to demonstrating how species may respond to physical sedimentation events (substrate homogenization) and patterns of reactive organic matter redistribution, these experiments suggest that infaunal species interactions in microcosms, including the absolute and relative fluxes of remineralized solutes, may be subject to artifacts depending on exactly how sediments are introduced experimentally. Nonlocal transport and cylinder microenvironment transport – reaction models readily demonstrate how the multiple interactions between burrowing patterns and remineralization rate distributions can alter relative flux balances, decomposition pathways, and time to steady state.  相似文献   
997.
Determination of the water depths in coastal zones is a common requirement for the majority of coastal engineering and coastal science applications. However, production of high quality bathymetric maps requires expensive field survey, high technology equipment and expert personnel. Remotely sensed images can be conveniently used to reduce the cost and labor needed for bathymetric measurements and to overcome the difficulties in spatial and temporal depth provision. An Artificial Neural Network (ANN) methodology is introduced in this study to derive bathymetric maps in shallow waters via remote sensing images and sample depth measurements. This methodology provides fast and practical solution for depth estimation in shallow waters, coupling temporal and spatial capabilities of remote sensing imagery with modeling flexibility of ANN. Its main advantage in practice is that it enables to directly use image reflectance values in depth estimations, without refining depth-caused scatterings from other environmental factors (e.g. bottom material and vegetation). Its function-free structure allows evaluating nonlinear relationships between multi-band images and in-situ depth measurements, therefore leads more reliable depth estimations than classical regressive approaches. The west coast of the Foca, Izmir/Turkey was used as a test bed. Aster first three band images and Quickbird pan-sharpened images were used to derive ANN based bathymetric maps of this study area. In-situ depth measurements were supplied from the General Command of Mapping, Turkey (HGK). Two models were set, one for Aster and one for Quickbird image inputs. Bathymetric maps relying solely on in-situ depth measurements were used to evaluate resultant derived bathymetric maps. The efficiency of the methodology was discussed at the end of the paper. It is concluded that the proposed methodology could decrease spatial and repetitive depth measurement requirements in bathymetric mapping especially for preliminary engineering application.  相似文献   
998.
东海北部营养盐分布的季节变化及成因探讨   总被引:2,自引:0,他引:2  
基于美国国家海洋大气管理局(NOAA)2007年发布的全球海域营养盐数据库资料和美国国家地球物理数据中心(NGDC)2006年发布的全球地貌数据库资料,在MATLAB计算机平台上,利用研发的数值分析与成图技术,对东海北部海域营养盐分布的季节变化特征进行分析。结果表明:(1)东海北部海域NO3--N、PO43--P分布总特征为由沿岸向离岸递减,由表层向底层递增;西北高,东南低,呈扇形向东南扩展;SiO3--Si有两个浓度高值区,一个为研究区域的西北角,另一个在东北角;(2)在0~50 m的表层营养盐平均浓度均是冬季最高;50~200 m的中层NO3--N、SiO3--Si夏季最高;200 m以下的底层四季变化微弱,其中400~500m层PO43--P、SiO3--Si浓度值秋季最高。NO3--N变异系数表层最大,PO3--P中层最大、SiO3--Si底层最大,其中NO3--N相应各层变异系数大于PO43--P、SiO3--Si;(3)研究区域四季均存在高营养盐水团。高PO43--P、SiO3--Si水团中心分别位于125.5°E、30.5°N和128.5°E、30.5°N;高NO3--N水团中心,随冬-春-夏-秋、从南往东北再向西、最后向东南,在125°~128°E、29°~31°N范围内移动。  相似文献   
999.
鞍带石斑鱼工厂化育苗研究   总被引:3,自引:0,他引:3  
作者设计了一种新的鞍带石斑鱼(Epinephelus lanceolatus)工厂化人工育苗方法。测定了鞍带石斑鱼人工育苗过程中水环境因子和育苗水体浮游生物的种类、数量变化。育苗期间水温28.0~30.7℃;盐度为27.0~32.0;pH值为7.39~7.90;溶氧量6mg/L以上;中午池面平均光照3315.9lx;记录了1d的光照、水温、溶解氧和pH的变化;育苗池前18d只加水不换水,氨氮不断上升,最低值0.24mg/L,最高值2.53mg/L,育苗后期采取换水措施,氨氮迅速下降;育苗期间,水体除正常投喂的轮虫(Brachionus plicatilis)和桡足类外,池中出现浮游植物12种、浮游动物5种,浮游植物平均生物量6.92×106个/L,原生动物平均生物量0.74×106个/L。经过34d的培养,得到平均全长2.45cm鱼种,单位水体育苗密度300尾/m3,育苗成活率为2.73%。结果表明,用有效微生物群(effective microorganisms,简称EM)+高级虾片调节水质的模式,可以保持育苗水质稳定,成功培育出鞍带石斑鱼幼鱼。  相似文献   
1000.
珠江磨刀门水道咸潮上溯加剧的原因   总被引:1,自引:0,他引:1  
对磨刀门水道不同年份地形资料和多年枯季潮位资料进行了对比分析,结果表明:大规模的河床采砂,引起磨刀门上游河段河床大幅下切,河道深泓平均加深0.59~2.25 m,河槽容积平均增加8.91×106~12.11×106m3,使该河段枯季潮差增大,进潮量增加,潮汐动力增强,导致咸水界向上游河段推移;口门围垦整治后,磨刀门口门区由众多岛屿环抱而成的内海区变成人工导堤控制的"一主一支"两条水道,水域面积减少了80%,河槽容积减少了40%,深槽趋于顺直加深,使口门区的"调淡"作用消失,这是咸潮上溯的重要原因;根据多年水文频率分析,发生严重咸潮灾害时,西、北江枯季流量并非都是枯水流量,因此枯季上游来水量变化并不是近年来咸潮灾害加剧的主要原因。  相似文献   
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