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441.
I~IOXThe alkaline phOSPhataSe (AP) has been more and more studied following the study of thephosphorus limitation (Suttle and Harrision, 1988; Hu et al., 1989; Huang et al., 1996). PeOple used to take dissolved inorganic phOSphorus (DIP) level and uptake rate by algae as phosphOrus limitation indicators (Vera and Petterson 1992; Huang and HOng, 1994). But recent resultsindicate that diSSOlved organic phosphorus (DOP) and particulate organic phOSphorus (PP) couldalso be utilized b…  相似文献   
442.
采用显微镜细胞计数和麻痹性贝毒的高效液相色谱分析方法,通过对比磷酸二氢钾、磷酸甘油和三磷酸腺苷(ATP)等含磷营养物质对微小亚历山大藻生长和毒素产生的影响,研究了微小亚历山大藻对不同类型含磷营养物质的利用情况.结果表明,在磷限制条件下,加入磷酸二氢钾、磷酸甘油和ATP均能促进微小亚历山大藻的生长,所获得的最大藻细胞密度分别为22700、28400和27800藻细胞/ml,对数期生长速率分别为0.12/d、0.14/d和0.15/d,溶解态有机磷对藻生长的促进作用稍好于溶解态无机磷.三种含磷营养物质对毒素产生的效应没有明显差别,稳定期藻细胞毒素含量分别为22.87、23.98和21.80fmol/cell.磷限制对毒素组成的影响很大,磷限制条件下膝沟藻毒素GTX1/4的含量占绝对优势,GTX2/3含量很少.在添加含磷营养物质后,GTX1/4所占比例降低,GTX2/3比例增加,说明磷限制显著改变了微小亚历山大藻的毒素组成.对藻体碱性磷酸酶活性分析的结果显示,磷限制组具有最高的碱性磷酸酶活性,添加有机磷化合物实验组的碱性磷酸酶活性显著高于添加无机磷化合物的实验组.研究结果表明,微小亚历山大藻可以利用实验中采用的无机磷化合物和有机磷化合物,但其利用溶解态有机磷化合物的机制尚不清楚,可能是通过诱导合成碱性磷酸酶来水解培养基中的溶解态含磷有机物,从而释放无机磷酸盐用于藻细胞的生长.  相似文献   
443.
应用实验室培养法测定了溶解无机氮(DIN)在胶州湾16个站位沉积物-海水界面上的交换速率。结果表明, NH4 -N,NO2 -N和NO3 -N的交换速率一般分别在-0.5~1.6,0.005~0.67, + - --2.0~2.8 mmol/(m2·d)范围内。由于间隙水中DIN主要以NH4 -N形态存在,DIN在胶州湾沉 +积物-海水界面上的交换以NH4 -N的扩散为主,在大部分站位表现为由沉积物向水体的释放, +NO3 -N主要来自NH4 -N的硝化反应,而NO2 -N是NH4 -N和NO3 -N之间化学转化过程的中 - + - + -间产物。考虑胶州湾沉积物类型, 在胶州湾沉积物-海水界面上的交换通量为9.68×108 DINmmol/d,是河流输入DIN的50%左右,可提供维持胶州湾初级生产力所需DIN的52%。  相似文献   
444.
Surface water samples were collected daily in June 2000 at a site in the Sargasso Sea to observe variability of Δ14C values in dissolved inorganic carbon (DIC). Temperature, salinity, DIC concentration, alkalinity, and δ13C and Δ14C values of DIC were measured in the samples. Ten Δ14C measurements averaged 81 ± 8‰ and had a range of 24‰ over the sixteen-day cruise. Δ14C values were more variable during the latter half of the cruise. Salinity and temperature measurements in the mixed layer throughout the cruise indicate that there were changes in water mass that occurred at our site. We conclude that the daily range of DIC Δ14C values in the surface ocean at our site is several times greater than the annual change in surface waters in the Sargasso Sea during the last two decades of the 20th century. This points to the importance of obtaining multiple measurements of the surface ocean to adequately define the true variability of DIC Δ14C measurements.  相似文献   
445.
于1998年10号台风、2000年10号台风碧利斯和2000年6月厦门地区特大暴雨影响期间。在厦门港湾对表层海水溶解无机氮(DIN)、溶解无机磷(DIP)以及盐度、DO、Chla等相关环境因子进行定点连续观测。描述了台风暴雨期间和恢复期DIN、DIP的变化特征。对水动力因素、底质再悬浮、有机物氧化降解及生物活动等因素的影响进行了初步的探讨。  相似文献   
446.
447.
The concentrations and distributions of four species of inorganic nutrient salts in surface sea water of Chinese Great Wall Bay and its adjacent sea area, Antarctica were surveyed during austral summers of 1993~1994.The results obtained are as follows:The general concentrations of NH4-N, NO3-N, NO2-N and PO4-P are 2. 13, 7. 07, 0. 74 and 1. 12 μg. din-3, respectively. Generally speaking, the concentrations are higher inside the Bay than those  outside and the higher values of those inorganic salts often appear in December. The time for the station where their higher and lower concentrations appear are not completely the same. The descending order of the magnitudes of ΣN/P value according to the arrangement monthly is: Dec. Feb. Jan.. The  variations of water temperature are mostly consist with the concentrations of NH4-N, PO4-P and ΣN/P, but not often with NO2-N. The low concentrations of nutrient salts as shown in some stations may be related with absorption by phytoplankton, perhaps including autotrophic bacteria.The results suggest that the area surveyed has a typical characteristic of an inner shallow water bay, sub-Antarctica. The nutrients needed for phytoplankton are sufficient, and the Bay surveyed is still in a normal condition.  相似文献   
448.
利用山西省资源优势发展环保型有机无机复肥   总被引:1,自引:0,他引:1  
山西省有三分之二的中低产田土壤急需改良,研制和扩大环保型有机无机复肥是山西农业可持续发展的需要。利用山西的几种可改良土壤的矿物原料和有机废料与无机化肥配合试制出的“长效肥力宝”是一种新的环保型有机无机矿物复混肥。经初步试验,结果表明其肥效优于常规化肥的增产效果,土壤的有机质和N、P、K等养分含量有明显的提高。发展该类产品既保护了环境,又促进了农业生产的发展。  相似文献   
449.
The paper presents the results of determination of inorganic and organic forms of phosphorus in bottom sediments of Pomeranian Bay. The sediments were collected in March and July of 1996. The following characteristics of the sediments were determined: organic matter content, forms of inorganic phosphorus: loosely adsorbed phosphorus and phosphorus bound to aluminium, calcium and iron, as well as total inorganic phosphorus. Pomeranian Bay is a shallow basin, with depth averaging between 12 and 15 m and sandy sediments prevailing. Smaller silt fractions occur only in the vicinity of the wina River estuary and in deeper northern regions of the Bay. Calcium-bound phosphorus is the dominant form of inorganic phosphorus in the Pomeranian Bay. Iron-bound phosphorus is the second most prevailing form, and aluminium-bound phosphorus the third. Loosely bound phosphorus was present in the lowest amounts. Total inorganic phosphorus in the Bay consisted of the four forms listed above, except in estuarine regions where an additional form of phosphorus occurred, most probably occluded phosphorus. High organic phosphorus concentrations were found at the wina River estuary and in the northern part of the Bay (Saßnitz Deep) corresponding to the higher organic matter content of these sediments. Sediments of Pomeranian Bay contained less phosphorus than those from the Gulf of Gda sk or Puck Bay and other parts of the Baltic Sea, suggesting that the amount of phosphorus in the sediments was determined by a number of inter-related factors, such as sediment type, amount of organic matter, the chemical composition of the sediment and oxygen content of near-bottom water.  相似文献   
450.
The dissolved inorganic carbon (DIC) and related chemical species have been measured from 1992 to 2001 at Station KNOT (44°N, 155°E) in the western North Pacific subpolar region. DIC (1.3∼2.3 µ mol/kg/yr) and apparent oxygen utilization (AOU, 0.7∼1.8 µmol/kg/yr) have increased while total alkalinity remained constant in the intermediate water (26.9∼27.3σθ). The increases of DIC in the upper intermediate water (26.9∼27.1σθ) were higher than those in the lower one (27.2∼ 27.3σθ). The temporal change of DIC would be controlled by the increase of anthropogenic CO2, the decomposition of organic matter and the non-anthropogenic CO2 absorbed at the region of intermediate water formation. We estimated the increase of anthropogenic CO2 to be only 0.5∼0.7 µmol/kg/yr under equilibrium with the atmospheric CO2 content. The effect of decomposition was estimated to be 0.8 ± 0.7 µmol/kg/yr from AOU increase. The remainder of non-anthropogenic CO2 had increased by 0.6 ± 1.1 µmol/kg/yr. We suggest that the non-anthropogenic CO2 increase is controlled by the accumulation of CO2 liberated back to atmosphere at the region of intermediate water formation due to the decrease of difference between DIC in the winter mixed layer and DIC under equilibrium with the atmospheric CO2 content, and the reduction of diapycnal vertical water exchange between mixed layer and pycnocline waters. In future, more accurate and longer time series data will be required to confirm our results.  相似文献   
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