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101.
青海典型内陆河流域地表水溶解性养分组成及分布特征   总被引:1,自引:0,他引:1  
为了解青海典型内陆河地表水溶解性养分组成及分布特征,对青海巴音河、格尔木河及小柴旦湖流域地表水进行了采集,分析了地表水溶解性养分的组成及含量。结果表明:巴音河流域溶解性养分N、Si可能受水库滞留效应影响;克鲁克湖有较高的NH_4~+-N含量,主要与渔业养殖有关;格尔木河流域溶解性养分含量从上游到下游有升高的趋势,可能与流域内地形差异以及水体沿途蒸发作用有关;托素湖和小柴旦湖溶解性养分含量远远高于河流,主要与湖泊水体蒸发强烈导致的养分含量浓缩有关。研究区水体溶解性养分含量均大于受限阈值,但河流DIN/SRP 10、DSi/DIN 1,表现为N相对不足,湖泊DSi/SRP 10、DSi/DIN 1,表现为Si相对不足。主成分分析表明河流、水库以及克鲁克湖为Ⅰ~Ⅱ类水体,托素湖、小柴旦湖为Ⅴ类水体。  相似文献   
102.
以实际石化废水为处理对象,研究溶解氧浓度对A/O反应器生物降解特性的影响.A、B两组反应器平行运行以进行对比,O段的溶解氧浓度分别控制在2~3 mg·L-1和5~6 mg·L-1.反应器稳定运行近半年的结果表明:在HRT为20 h时,A组反应器出水的COD(72.5 mg·L-1±14.8 mg·L-1)略高于B组(68.7 mg·L-1±14.6 mg·L-1),COD平均去除率分别为67.0%和68.8%;出水氨氮的平均浓度和去除率为0.8 mg·L-1和95%左右.出水的BOD5均低于5 mg·L-1.表明A/O反应器对有机物的生物降解比较彻底,溶解氧浓度对其没有显著影响.对O段污泥进行454高通量测序结果表明:变形菌门、浮霉菌门和拟杆菌门细菌所占比例较高,在A、B组反应器中的比例分别为58.7%和59.2%、14.7%和12.7%以及10.8%和12.4%.高溶解氧运行的反应器B具有较高的菌群丰度和多样性,氨氧化菌Nitrosomonas、亚硝酸氧化菌Nitrospira和专性好氧菌如Planctomyces的比例较高.厌氧反硝化菌如Azospira和Acidovora在反应器A中的含量较高.在属的水平,鉴定出的Novosphingobium、Comamonas、Sphingobium和Altererythrobacter属细菌具有降解多环芳烃、氯代硝基苯、农药和石油化合物的功能,有利于石化废水的降解.  相似文献   
103.
舟山渔场有色溶解有机物(CDOM)的三维荧光-平行因子分析   总被引:18,自引:10,他引:8  
利用三维荧光光谱(EEMs)-平行因子分析(PARAFAC)技术研究春季舟山渔场有色溶解有机物(CDOM)的荧光成分组成、分布特征及来源.PARAFAC模型解析出舟山渔场CDOM由2类5个荧光组分组成,即类腐殖质成分C1(330/420 nm)、C2[(290)365/440 nm]、C3[(260)370/490 nm]及类蛋白质成分C4(285/340 nm)、C5(270/310 nm).5种荧光组分的平面分布模式基本一致,在各层均呈现由近岸海域向远岸海域逐渐减小的趋势,但各层又略有差别.表层高值区出现在杭州湾口外北部海域、虾峙门航道口外海域,且杭州湾口外北部海域的荧光值要高于虾峙门航道口外海域;中层高值出现区域与表层相同,但杭州湾口外北部海域的荧光值要低于虾峙门航道口外海域;底层从近岸向远岸梯度减小,高值区出现在舟山本岛附近海域.各荧光组分的分布与盐度之间存在明显负相关关系,与叶绿素a的线性关系不明显.分析表明,春季舟山渔场CDOM表、中层主要受长江输入和舟山工农业等人为活动排放影响,而底层主要受舟山工农业等人为活动排放影响.从垂直分布模式上,CDOM在30°N断面上由中、表层水体向底层呈现逐渐减小的趋势,并在近岸和远岸海域都出现了高值区,且与盐度低值区、叶绿素a高值区相对应,反映该断面近岸区CDOM主要受长江输入影响,远岸区CDOM主要受生物活动影响;在30°N断面,CDOM分布模式与30.5°N断面基本类似,只是在近岸区域底层出现CDOM高值区,可能是由于潮汐、底层上升流等物理外力作用下,沉积物间隙水中高浓度的CDOM释放出来,使得靠近沉积物界面的底层水体中CDOM浓度升高.5种荧光组分中,C1、C3、C4之间相关性较强,与C2、C5相关性相对较弱,说明C1、C3、C4在来源上具有相似性与C2、C5有一定的差异性.春季舟山渔场CDOM腐殖化指数(HIX)的值较小,反映了春季舟山渔场CDOM的腐殖化程度较低,稳定性较差,在环境中存在时间较短;生物指数(BIX)在舟山外海出现高值区,近岸海域出现低值区,反映出在近岸海域人类活动的影响较大,而在外海生物活动的影响较为明显.  相似文献   
104.
随着农业氮肥大量施用,大量碳氮营养物质以淋溶或径流形式进入周边灌溉水体,使其成为甲烷(CH4)和氧化亚氮(N2O)的重要排放源.以我国东南部地区典型稻田灌溉河流为研究对象,于2014年9月至2016年9月连续两年原位观测表层水体CH4和N2O溶存浓度及其排放通量,旨在明确稻田灌溉河流CH4和N2O的排放特征、排放强度及其主要驱动因子.结果表明,观测期内c(CH4溶存)的年平均值为(390.57±43.95)nmol·L-1(92.80~1 577.54 nmol·L-1),c(N2O溶存)的年平均值为(40.23±3.20)nmol·L-1(10.05~75.40 nmol·L-1).CH4和N2O的排放通量(年平均)分别为(20.73±6.08)mg·(m2·h)-1和(34.30±7.12)μg·(m2·h)-1.CH4和N2O溶存浓度和排放通量整体上均呈现出春夏排放高,秋冬排放低的季节变化趋势.两年CH4累计排放总量为(3 876.30±1 153.96)kg·hm-2,N2O累计排放总量为(5.74±0.98)kg·hm-2.两者持续性全球增温潜势(SGWP,以CO2-eq计)平均为(87.99±15.73)t·(hm2·a)-1.CH4排放通量与水温、底泥可溶性有机碳(DOC)显著正相关,而与水体溶解氧(DO)显著负相关;N2O排放通量与水温、水中铵态氮(NH4+-N)和硝态氮(NO3--N)显著正相关,而与水体DO显著负相关.该研究可为科学估算我国农业灌溉流域CH4和N2O排放总量提供数据支撑和重要参考.  相似文献   
105.
Dissolved ions and suspended participates from twelve water samples from Sohag (different localities) and Aswan (behind and below the High Dam) areas were collected along the River Nile, upper Egypt, which is at present affected seriously by pressure of population, intense industrial and agricultural activities, and atmospheric fallout. Eighteen trace and nine major ions in solution and fourteen metals in suspension were analyzed to establish whether elements are of anthropogenic or natural origin. Results of this study show that the Nile water was contaminated with high concentrations of dissolved lead, and with copper, nickel and mercury to a lesser extent, suggesting that these contaminants are generated from anthropogenic activities. the other dissolved ions in the Nile are of natural origin because their metal concentrations fall within the range of the normal background and average world dissolved values for inland waters. Results show that the usual constituents of suspended particulates in the Nile seem to be some metals (Cu and Zn) adsorbed on iron and manganese oxide/hydroxide. the results also reveal that most trace and major metal particulates increase from south to north due to activities associated with the dense population living along the Nile banks. No significant differences were observed between the chemical composition of trace and major elements taken on the east and west river Nile banks.  相似文献   
106.
The extraction of K+ and SiO2 from silicate minerals by Bacillus mucilaginosus in liquid culture was studied in incubation experiments. B. mucilaginosus was found to dissolve soil minerals and mica and simultaneously release K+ and SiO2 from the crystal lattices. In contrast, the bacterium did not dissolve feldspar. B. mucilaginosus also produced organic acids and polysaccharides during growth. The polysaccharides strongly adsorbed the organic acids and attached to the surface of the mineral, resulting in an area of high concentration of organic acids near the mineral. The polysaccharides also adsorbed SiO2 and this affected the equilibrium between the mineral and fluid phases and led to the reaction toward SiO2 and K+ solubilization. These two processes led to the decomposition of silicate minerals by the bacterium.  相似文献   
107.
ABSTRACT: In 1983, the City of Indianapolis, Indiana, completed construction of advanced wastewater treatment (AWT) systems to enlarge and upgrade its existing Belmont Road and South port Road secondary treatment plants. A nonparametric statistical procedure, a modified form of the Wilcoxon-Mann-Whitney rank-sum test, was used to test for trends in water quality at two upstream and two downstream sites on White River and at the two treatment plants. Results comparing the pre- (1978–1980) and post- (1983–1986) AWT periods show statistically significant improvements in the quality of the treated effluent and of the White River downstream from the plants. Water quality at sites upstream from the city was relatively constant during the period of study. Total ammonia (as N) decreased 14.6 mg/L and BOD5 (five-day biochemical oxygen demand) decreased 10 to 19 mg/L in the two effluents. Total ammonia in the river downstream from the plants decreased 0.8 to 1.9 mg/L and BOD5 decreased 2.3 to 2.5 mg/L. Nitrate (as N) increased 14.5 mg/L in the plant effluents and 2.0 to 2.4 mg/L in the river because of in-plant nitrification. Dissolved oxygen concentration in the river increased about 3 mg/L because of reduced oxygen demand for nitrification and biochemical oxidation processes.  相似文献   
108.
Dissolved iron (Fe) distribution and speciation was determined in water samples (0–200?m) collected in a coastal area near Terra Nova Bay during the austral summer of 2014. Nutrients, dissolved oxygen, chlorophyll-a, phytoplankton composition and prokaryotic biomass distribution were investigated in combination with measurements of the physical properties of the water columns and its dynamics. The dFe value was above the limiting growth concentration, ranging from 0.52 to 4.51?nM, and it showed a spatial variability with a horizontal length scale of about 10?km, according to the variability of the water column physical properties and to iron sources. The organic ligands (L) maintained the concentrations of dFe at levels much higher than the inorganic solubility of Fe, keeping it available for phytoplankton and the log K’FeL values found (from 22.1 to 23.6) highlighted the presence of complexes of differing stabilities.  相似文献   
109.
This study presents the concentrations of about 50 metals and ions in 33 different brands of bottled waters on the Swedish market. Ten of the brands showed calcium (Ca) concentrations ≤10 mg L−1 and magnesium (Mg) levels <3 mg L−1, implying very soft waters. Three of these waters had in addition low concentrations of sodium (Na; <7 mg L−1), potassium (K; <3 mg L−1) and bicarbonate (HCO3 ≤31 mg L−1). These brands were collected from barren districts. Nine of the brands were collected from limestone regions. They showed increased Ca-levels exceeding 50 mg L−1 with a maximum of 289 mg L−1. Corresponding Mg-levels were also raised in two brands exceeding 90 mg L−1. Two soft and carbonated waters were supplemented with Na2CO3 and NaCl, resulting in high concentrations of Na (644 and 648 mg L−1) and chloride (Cl; 204 and 219 mg L−1). Such waters may make a substantial contribution to the daily intake of NaCl in high water consumers. The storage of carbonated drinking water in aluminum (Al) cans increased the Al-concentration to about 70 μg L−1. Conclusion As there was a large variation in the material as regards concentrations of macro-elements such as Ca, Mg, Na, K and Cl. Supplementation with salts, e.g., Na2CO3, K2 CO3 and NaCl, can lead to increased concentrations of Na, K and Cl, as well as decreased ratios of Ca/Na and larger ratios of Na/K. Water with high concentrations of e.g., Ca and Mg, may make a substantial contribution to the daily intake of these elements in high water consumers. Al cans are less suited for storage of carbonated waters, as the lowered pH-values may dissolve Al. The levels of potentially toxic metals in the studied brands were generally low.  相似文献   
110.
Dissolved organic matter (DOM) is an important component of plant-soil systems. Its essential role in soil solution chemistry, soil-forming processes and its effects on biota, including soil fauna, bacteria, fungi and plants, is extensively documented in literature. in this contribution several forest leaf litter types are compared as sources of DOM and the released organics are subjected to gel permeation chromatography to reveal their molecular-size distribution. Moreover, complexing properties, as an indication for the podzolization potential of the litter leachates, were established. the occurrence and properties of DOM in different soil horizons were monitored beneath a stand of Scots pine. the effects of the different groups of soluble organics including phenolic, fulvic and humic acids, and of water-extractable humic substances on the performance of herbaceous plants of the forest floor are briefly reviewed.  相似文献   
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