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891.
Abstract

The uptake and distribution of phenanthrene, a typical polycyclic aromatic hydrocarbon, in plant tissues of Aegiceras corniculatum and Avicennia marina and the relationship with nutrient (nitrate, ammonium, and soluble reactive phosphorus) availability were investigated. After 12?h of exposure, enhancements in the concentration of nitrate and soluble reactive phosphorus markedly decreased the residual level of phenanthrene in roots, while the addition of ammonium significantly increased the residual concentration. Due to the similar enzymatic degradation potential between treatment groups, the variation of phenanthrene concentration in mangrove roots may result from the H+/phenanthrene cotransport at the root surface that was influenced by nutrient uptake. Moreover, both nitrate and soluble reactive phosphorus amendments significantly increased translocation of phenanthrene from roots to leaves, which likely resulted from the change of hydraulic conductivity in mangrove plants triggered by different nutrient availability.  相似文献   
892.
Metal toxicity on selenastrum capricornutum were examined by batch culture and chemostat culture system. EC50 values under nutrient‐limited condition and saturated condition were compared. The two EC5Os differed by a factor of 10.6 for Cd in batch test, and differed by a factor of 6.5 in continuous test. Both batch and continuous test results indicate that inhibition on algal growth is more severe under nutrient‐limited conditions compared to that under near saturation conditions.

Strong correlation, as characterized by the correlation coefficient ρ, were found between the activation level (nutrient requirement) and the tolerance of microorganisms to the toxicant. ρ is equal to 0.9 for the case of Cd in batch test and 0.6 in continuous test. The theory in this study provides generally good estimations to the dose‐response relationship at limiting nutrient conditions. The study indicate that nutrient conditions constitute an important factor in algal toxicity tests.  相似文献   
893.
洞庭湖沉积物不同形态氮赋存特征及其释放风险   总被引:11,自引:1,他引:10  
为了揭示湖泊沉积物中氮的空间分布特征及其释放风险,采用连续分级提取法研究了洞庭湖表层沉积物中EN(可交换态氮)、HN(酸解态氮)及NHN(非酸解态氮)的赋存特征;同时,结合BN(生物可利用态氮)的含量和释放通量的大小,探讨了各形态氮对BN的贡献及与释放通量的相关关系. 结果表明,受水动力和湖盆地形的影响,沉积物中各形态氮含量空间差异较大. 全湖w(TN)在735.91~2846.51mg/kg之间,平均值为1371.85mg/kg,东洞庭湖、西洞庭湖、南洞庭湖、洞庭湖出口w(TN)的平均值分别为1513.43、1173.14、1262.76和1363.31mg/kg. 从各形态氮含量占w(TN)的比例来看,w(HN)最高,平均占66.74%;其次是w(NHN),平均占21.46%;w(EN)最小,仅占11.80%. 东洞庭湖、西洞庭湖、南洞庭湖、洞庭湖出口w(BN)的平均值分别为189.31、170.16、152.87和139.51mg/kg,其值大小主要受w(EN)和w(HN)的影响. 东洞庭湖、西洞庭湖、南洞庭湖、洞庭湖出口沉积物中NH4+-N释放通量的平均值分别为6.32、7.03、7.78和146.96mg/(m2·d),沉积物中NH4+-N释放通量主要受EN控制,其中尤其受可交换态NH4+-N的控制,而沉积物中的HN和TN尚不是影响沉积物氮释放的主要因素.   相似文献   
894.
采集了我国7个站点的降雨和森林穿冠水样品,分析测定了水样中硝态氮和总氮的同位素丰度.降雨中硝态氮δ15N值范围为-9.00‰至9.71‰,其中北方站点冬季降雨中硝态氮δ15N值要远高于其他站点,可能是由于北方冬季燃煤供暖所致.穿冠水中硝态氮δ15N值范围为-16.59‰至-0.32‰,比降雨中的硝态氮δ15N值要低,其可能原因是林冠层中存在硝态氮的交换过程,从而产生了分馏作用.降雨和穿冠水中TN的δ15N值范围分别为-7.94‰至-3.07‰和-4.55‰至-1.73‰,其中穿冠水中TN的δ15N值要略高于降雨中的值.  相似文献   
895.
洱海表层沉积物中总氮含量及氨氮的释放特征   总被引:2,自引:0,他引:2  
通过现场调查和室内模拟试验,对洱海具有代表性的9个表层沉积物样品中w(TN)的分布特征以及沉积物中NH4+-N释放动力学特征进行了研究. 结果表明,洱海表层沉积物中w(TN)在2.0844~6.5153g/kg之间,平均值为3.5378g/kg,北部西岸为高值区,南部(靠近大理市)为次高值区. 一级动力学模型可很好地拟合洱海表层沉积物NH4+-N释放动力学特征,NH4+-N最大释放量在0.1209~0.2810g/kg之间;释放主要集中在0~5min内,约占最大释放量的68%~83%;随后释放速率逐渐放缓,到120min后基本达到释放平衡.运用无限稀释法对沉积物NH4+-N释放潜能进行测定表明,洱海沉积物NH4+-N释放潜能在1.7001~3.5879 g/kg之间,在水土质量比约为2500时,NH4+-N释放量达到最大,随后释放逐渐趋于平衡. 洱海沉积物NH4+-N释放潜能及最大释放量均与其w(TN)呈显著正相关. 洱海沉积物中w(TN)与NH4+-N释放潜能和最大释放量均高于长江中下游湖泊,具有较大的氮释放风险.   相似文献   
896.
液氮冻融破碎生物污泥制备生物絮凝剂   总被引:1,自引:1,他引:0  
利用城市剩余生物污泥,采用液氮冻融破碎、提取液提取的方法制备了生物污泥絮凝剂。对絮凝剂的制备条件及其絮凝性能进行了研究,结果表明:采用液氮冻融破碎,pH为1.0的稀盐酸溶液作为提取液提取所制备的絮凝剂,对高岭土悬浮液的絮凝效率可达98.5%。液氮冻融破碎的次数对絮凝剂制备没有明显影响。同时考察了絮凝剂投加量以及絮凝体系的pH对絮凝剂絮凝活性的影响。  相似文献   
897.
The John Heinz National Wildlife Refuge (NWR) at Tinicum Marsh contains one of the last remaining tidal freshwater marsh communities along the Pennsylvania side of the Delaware River Estuary. The marsh receives a significant load of nutrients and sediment-associated contaminants and is hypothesised to act as an effective trap for these chemicals. The goal of this study was to quantify the levels of polybrominated diphenyl ethers (PBDEs) and polychlorinated biphenyls (PCBs) at various trophic levels at two sites within Tinicum Marsh and assess the factors important in determining their bioaccumulation and trophic transfer. For both PCBs and PBDEs, lipid variation for all species was a large factor in determining contaminant body burden. Also, concentrations in biota increased with increasing trophic level as determined by nitrogen isotope analysis (δ15N values) at the downstream site within Tinicum Marsh. This trend was less apparent at the upstream site and may be due to differences in feeding behaviours among species between the two sites and/or differences in carbon and nitrogen sources and recycling. These data are valuable in assisting bioaccumulation/trophic transfer studies and serve as benchmarks to which future PCB and PBDE concentrations will be compared.  相似文献   
898.
Controlled laboratory experiments were conducted to examine how photosynthesis and growth occur in Potamogeton wrightii Morong under different photoperiods and nutrient conditions. The experiment was based on a 3×2 factorial design with three photoperiods (16, 12 and 8 h) of 200 μE · m?2·s?1 irradiance and two nutrient conditions, high (90 μmol N · L?1·d?1 and 9 μmol P · L?1·d?1) and low (30 μmol N L?1·d?1 and 3 μmol P · L?1·d?1). After 14, 28, 56 and 70 days of growth, plants were harvested to determine net photosynthesis rate and various growth parameters. Above- and below-ground biomass were investigated on days 56 and 70 only. Plants under low nutrient conditions had greater leaf area, more chlorophyll a, a higher rate of net photosynthesis and accumulated more above- and below-ground biomass than plants in the high nutrient condition. Plants with an 8 h photoperiod in the low nutrient condition had a significantly higher rate of net photosynthesis, whereas 8 h photoperiod plants in the high nutrient condition had a lower rate of net photosynthesis and their photosynthetic capacity collapsed on day 70. We conclude that P. wrightii has the photosynthetic plasticity to overcome the effects of a shorter photoperiod under a tolerable nutrient state.  相似文献   
899.
We determined seasonal and spatial variation of zooplankton and their correlation with environment variables in a subtropical lake of the Himalayas. Thirty-eight species of zooplankton were identified, of which, 38.0% belonged to rotifera, 26.3% to cladocera, and 15.7% to copepoda. Nitrogen nutrients, total organic matter (TOM), and clay particles significantly influenced on the distribution pattern of zooplankton. Non-metric multidimensional scaling analysis showed homogeneous assemblages of dominant zooplankton species except Chydorus gibbus which has wider range of niche partitioning. Turbidity formed by suspended materials facilitated better avoidance of larger zooplankton like Daphnia similis from predators. Sedimentary silt particles influenced on the assemblages of sensitive species such as Tropocyclops prasinus, Asplanchna priodonta and Colurella obtuse. Changes within the land-use pattern in the catchment of the central Himalayan lakes either directly or indirectly impact on the distribution of zooplankton community.  相似文献   
900.
The decomposition of the mangrove Rhizophora mangle and the seagrass Thalassia testudinum was examined using litterbags along a natural gradient in nutrient availability. Seagrass leaves had a higher fraction of their biomass in the labile pool (57%), compared to mangrove leaves (36%) and seagrass rhizomes (29%); the overall decomposition rates of the starting material reflected the fractionation into labile and refractory components. There was no relationship between the N or P content of the starting material and the decomposition rate.

Nutrient availability had no influence on decomposition rate, and mass was lost at the same rate from litterbags that were buried in the sediment and litterbags that were left on the sediment surface. The dynamics of N and P content during decomposition varied as a function of starting material and burial state. N content of decomposing mangrove leaves increased, but seagrass rhizomes decreased in N content during decomposition while there was no change in seagrass leaf N content. These same general patterns held for P content, but buried seagrass leaves increased in P content while surficial leaves decreased. δ13C and δ15N changed by as much as 2‰ during decomposition.  相似文献   
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