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1.
大镜山水库底泥磷释放模拟研究   总被引:1,自引:0,他引:1  
通过模拟实验,研究了从耗氧到厌氧转变过程中期间大镜山水库底泥磷的释放特征。结果表明:两处底泥均表现为磷的释放,大坝区底泥释放速率高于库中区的底泥;两个点底泥的磷释放速率均先升高后缓慢降低,在第2周达到最大值;大坝区域底泥总磷和可溶性总磷释放的最大速率分别为6.64mg·m-2·d-1和1.37mg·m-2·d-1,库中区底泥的总磷和可溶性总磷的释放速率最大值分别3.24mg·m-2·d-1和0.62mg·m-2·d-1;底泥上覆水的氧化还原电位和pH均趋下降趋势,它们是影响底泥磷释放的重要影响因子。  相似文献   

2.
胶州湾互花米草湿地氮、磷元素的垂直分布及季节变化   总被引:1,自引:0,他引:1  
为了研究胶州湾互花米草湿地N、P的垂直分布及季节变化特征,分别于2015年4、7、9、10、11和12月对该区域互花米草湿地和光滩土壤全氮(TN)、铵态氮(NH4+-N)、全磷(TP)、速效磷(AP)、总有机碳(TOC),以及pH、盐度、含水量进行了测定.结果表明: 胶州湾互花米草湿地土壤TN、NH4+-N、TP、AP含量平均值分别为0.396 g·kg-1、12.14 mg·kg-1、0.419 g·kg-1、16.52 mg·kg-1,光滩平均值分别为0.385 g·kg-1、8.13 mg·kg-1、0.423 g·kg-1、19.57 mg·kg-1.总体来说,它们的含量随着土壤深度(0~60 cm)的增加逐渐降低;互花米草湿地N、P含量的季节变化明显,互花米草湿地土壤全氮含量在春季最高,秋季最低,而光滩土壤随着季节变化逐渐降低;二者土壤全磷含量的季节变化趋势相反,而速效磷含量的季节变化趋势一致;胶州湾互花米草湿地土壤TN、TP与土壤TOC含量呈显著相关,而在光滩土壤中无显著相关关系.pH、盐度显著影响互花米草湿地和光滩土壤N、P含量.  相似文献   

3.
2008年6-8月,三峡水库香溪河库湾相继暴发蓝藻和绿藻水华.依据香溪河库湾夏季的每周监测,对研究区2次水华分别进行聚类和判别分析,研究了2次水华的时空动态及其影响因素.结果表明:研究区2次水华过程均可划分为无水华组、过渡组和水华组;2次水华的暴发对可溶性硅(DSi)、硝态氮与亚硝态氮(NO3--N+NO2--N)和磷酸盐(PO43--P)3种营养盐的吸收程度不同;蓝藻水华暴发期间的DSi、总氮/总磷(TN/TP)、DSi/TN和DSi/TP值均低于绿藻水华;判别蓝藻水华暴发的参数为叶绿素a(Chl a)、TN和PO43--P,而Chl a和DSi则是绿藻水华暴发的判别因子,将2次水华过程划分为水华组和无水华组的判别效果更好;判断蓝藻和绿藻水华暴发的叶绿素a临界浓度分别为40和20 μg·L-1.  相似文献   

4.
香溪河库湾春季叶绿素a 浓度动态及其影响因子分析   总被引:30,自引:3,他引:27  
2005年3月至4月,对三峡水库香溪河库湾的叶绿素a动态及其与TN、TP等环境因子的关系进行了研究。结果表明,从香溪河库湾下游到上游,叶绿素a存在明显的水平分布。在时间分布上,3月17日暴发一次大规模的水华,4月份水华的暴发有一个明显的平面推移的过程。叶绿素a浓度与TN、TP之间存在着一定的负相关关系,TN与叶绿素a浓度的相关性较显著。香溪河库湾极可能是N限制型水体,而不受P限制。叶绿素a与透明度存在反双曲线关系,与溶解氧呈显著正相关关系。  相似文献   

5.
为了明确河涌和湖泊水样中COD、TP、TN和阴阳离子的植物处理效果,以及含氮污染物的植物转化规律,以前期研究中选育的再力花处理了广州市某河涌和暨南大学明湖水样.结果证明,再力花能有效地促进河涌和湖泊水样中TN、CODCr和TP的去除.处理144h后,河涌水样初始浓度为11.15mg·L-1、45mg·L-1和1.17mg·L-1的TN、CODCr和TP分别降至3.21mg·L-1、15.8mg·L-1和0.53mg·L-1;湖水初始浓度为4.50mg·L-1、36mg·L-1和0.25mg·L-1的TN、CODCr和TP分别降至2.31mg·L-1、11.7mg·L-1和0.03mg·L-1.水样中的微生物和再力花均能去除NH4+,并引起水中还原态氮发生亚硝化和硝化,但是不会明显改变Cl-、SO42-、Na+、K+、Mg2+和Ca2+等离子的浓度.  相似文献   

6.
朱翔  张敏  渠晓东  彭文启  段龙飞 《生态学杂志》2018,29(11):3847-3856
潘家口-大黑汀水库(简称“潘大水库”)作为“引滦入津工程”的水源地,其水质状况直接关系到受水区饮水安全,是京津冀区域协同发展的重要影响因素.本研究基于2016年7月的调查,分析了沉积物中氮、磷和有机质的含量.结果表明: 潘大水库表层沉积物中总氮(TN)含量在1175.41~2415.67 mg·kg-1(平均值为1648.71 mg·kg-1),总磷(TP)含量在1773.25~3471.70 mg·kg-1(平均值为2790.89 mg·kg-1),有机质(OM)含量6.0%~25.3%(平均值为12.5%).在空间上,与上游的潘家口水库相比,处于下游的大黑汀水库TN含量与潘家口水库相近,TP含量略高.沉积物中氮主要以有机氮为主,磷主要以无机态的钙磷形态存在,有机质主要来源于外源性物质的输入.污染状况评价结果显示,潘大水库沉积物整体处于有机污染状态,且已达到严重污染的级别,可能会通过沉积物-水界面的营养交换对水环境改善产生潜在影响.  相似文献   

7.
以竹叶眼子菜(Potamogeton malaianus)无菌系种苗为试验材料,研究了不同水体营养浓度水平(低营养:TN0.213 mg·L-1,TP 0.0093 mg·L-1;中营养:TN 0.71 mg·L-1,TP 0.031 mg·L-1;高营养:TN 7.1 mg·L-1,TP0.31 mg·L-1)对其生长与NH4+-N的吸收动力学参数的影响。结果表明,不同浓度水体营养对竹叶眼子菜生长的影响较小,而NH4+-N的吸收动力学参数有显著差异。竹叶眼子菜在高、中和低营养培养条件下的NH4+-N最大吸收速率Vmax分别为41.1、29.1、21.1μmol·g-1·h-1,米氏常数Km分别为0.356、0.306、0.122 mmol·L-1。竹叶眼子菜营养吸收动力学与其生长环境关系紧密,在低浓度生长环境中时,竹叶眼子菜可以通过降低Km值来提高对营养离子的亲和力以满足营养需求;在高浓度生长环境中,该植物通过增大吸收潜力来适应高营养。  相似文献   

8.
2003 年三峡水库蓄水后, 香溪河入库区段形成典型的水库型库湾, 磷污染严重, 导致水华频发。异养细菌是水体物质循环的重要参与者, 其中无机磷细菌释放结合态磷加重了水体富营养化。为了研究异养细菌和无机磷细菌对水体富营养化的影响, 在库湾设置7 个采样点, 2015 年 4 月、6 月、9 月和12 月分别采集水样, 测定样品总氮(TN)、总磷(TP)、磷酸盐(PO4-P)及表层(水面下方0.5 m)水体叶绿素a(Chl.a)浓度, 实验室培养异养细菌及无机磷细菌。利用SPSS 17.0 对水体可培养异养细菌和无机磷细菌的时空变化进行单因素方差分析, 并用SPSS 软件分析细菌含量与总氮浓度、总磷浓度、磷酸盐浓度和叶绿素 a 浓度的相关性。结果显示: 异养细菌和无机磷细菌含量与叶绿素 a 浓度无显著相关性; 无机磷细菌与氮磷相关性均高于异养细菌, 说明香溪河库湾无机磷细菌与水体氮磷关联性大于异养细菌。  相似文献   

9.
不同栽培方式对籼、粳稻根表铁膜和根铁、镉含量的影响   总被引:7,自引:1,他引:6  
在Cd污染土壤中研究淹水、覆膜、覆草和湿润栽培对籼、梗稻不同生育时期根表铁膜Fe、Cd含量和根Cd含量的影响.结果表明,在分蘖期,梗稻根表铁膜Fe含量和根Cd含量在4种栽培方式中平均为6.37和25.49mg.kg-1。分别比籼稻的4.52和16.37mg·kg-1增加1.85和9.12mg·kg-1.在孕穗期,粳稻根表铁膜Fe、Cd含量和根Cd含量在4种栽培方式中平均为1.60、16.35和54.68mg·kg-1,分别比籼稻的1.06、9.56kg和43.31mg·kg-1增加0.54、6.79和11.37mg·kg-1.在灌浆期,梗稻根表铁膜Fe含量覆草和湿润栽培为0.89和1.00mg·kg-1,分别比籼稻的0.63和0.30mg·kg-1增加0.26和0.70mg·kg-1;梗稻根表铁膜Cd和根Cd含量在4种栽培方式中平均为15.23和73.68mg·kg-1,分别比籼稻的3.46和52.38mg·kg-1增加11.77和21.30mg·kg-1收获时。根表铁膜Fe含量淹水栽培的籼稻为1.21mg·g-1,比梗稻的0.65mg·g-1增加0.56mg·g-1,覆草栽培的梗稻为0.94mg·g-1,比籼稻0.55mg·g-1增加0.39mg·g-1;根表铁膜Cd含量湿润栽培的梗稻为7.96mg·kg-1,比籼稻的5.09mg·kg-1增加2.87mg·kg-1;根Cd含量梗稻在4种栽培方式中平均为54.53mg·kg-1,比籼稻的35.91mg·kg-1增加18.62mg·kg-1。  相似文献   

10.
三峡水库香溪河库湾主要营养盐的入库动态   总被引:15,自引:0,他引:15  
李凤清    叶麟  刘瑞秋  曹明    蔡庆华   《生态学报》2008,28(5):2073-2073~2079
基于香溪河及其主要支流高岚河的5a监测数据,估算三峡水库香溪河库湾氮磷营养盐的入库通量,并分析了氮磷营养盐的浓度及其通量的逐月动态.研究发现,每年大约有1623.49 t总氮和331.85 t总磷汇入香溪河库湾,其中,香溪河贡献了68.50%的总氮和91.74%的总磷.在这两条河流中,溶解无机氮是氮的主要存在形式;氮通量表现出夏季7月份偏高、春秋季次之、冬季较低的规律;面源污染是氮进入河道的主要途径.磷酸盐是香溪河磷的主要存在形式,而高岚河磷酸盐的含量则较低;香溪河磷通量的月均波动规律不明显,高岚河磷通量的高峰期出现在春末和夏季;高岚河的磷主要通过面源途径进入河道,而香溪河的磷则存在点源污染.水土流失可能是香溪河流域面源污染的主要途径,磷矿和磷化工厂的排污则是磷点源污染的主要途径.从保护三峡水库香溪河库湾的生态学角度考虑,应重点控制香溪河磷的点源污染.  相似文献   

11.
Ecological engineering was carried out in Meiliang Bay of Lake Taihu beginning in 2003 in order to improve water quality. There were two main objectives: to improve the growth environment for macrophytes, and to restore macrophyte assemblages. We examined surface sediments once per month beginning in April 2005 to study the response of sediment nutrient content to the ecological engineering. Average total nitrogen (TN) and total phosphorus (TP) concentrations in the surface sediments were 7043 and 1370 mg kg−1, respectively, in May 2005, while after 1 year, TN concentration was reduced to 2929 mg kg−1 and TP concentration was reduced to 352 mg kg−1. We conclude that ecological engineering can lower the nutrient content in surface sediments when it is used to improve water quality.  相似文献   

12.
胶州湾叶绿素a浓度及浮游植物的粒级组成   总被引:2,自引:0,他引:2  
潘胜军  沈志良 《应用生态学报》2009,20(10):2468-2474
2008年2、5、8和11月对胶州湾及邻近水域中表层叶绿素a浓度和浮游植物粒级组成进行了调查.结果表明:胶州湾内和湾外表层叶绿素a年平均浓度分别为4.90和2.03 mg·m-3;叶绿素a浓度的平面分布呈现自东北部及近岸向中部、南部及湾外递减的趋势;叶绿素a浓度季节变化明显,冬季和夏季浓度较高,春季次之,呈现温带海域双峰型的变化趋势.胶州湾浮游植物粒级组成以微型浮游植物为主,平均占叶绿素a总量的60.9%,其次是小型浮游植物,超微型浮游植物所占比例最低,与我国近海浮游植物粒级组成基本一致.与历史资料相比,微型浮游植物所占比例有所增加,超微型浮游植物所占比例降低.  相似文献   

13.
Nutrient-phytoplankton relationships in a tropical meromictic soda lake   总被引:1,自引:1,他引:0  
Seasonal variation through one year in total nitrogen (TN), total phosphorus (TP), phytoplankton biomass, phytoplankton species composition and other environmental factors were examined in Lake Sonachi, a tropical meromictic soda lake. Mean concentrations of TN and TP were 11 000 µg N l-1 and 100 µg P l-1, respectively. Maximum concentrations of TN and TP occurred in the monimolimnion. Phytoplankton biomass ranged from 350 to 1260 mg m-3. Synechococcus bacillaris, a small coccoid cyanophyte, dominated the phytoplankton. The mean chlorophyll a concentration of 37 mg · m-3 was a modest value when compared with those of other tropical soda lakes. High TN:TP ratios indicated phosphorus limitation in the lake.  相似文献   

14.
The surficial sediments recovered from 12 sites located near the channel axis of the Florida Straits and the lower slope off NW Cuba were analyzed for total organic carbon (TOC), nitrogen (TN), phosphorus (TP), elemental C:N:P ratios, C and N isotopic values, and 14C dating. The depth profiles of TOC, TN, and TP (0-18 cm) displayed a downcore trend and a significant variation. The TOC values were low (0.15 to 0.62%; 66 to 516 µmol g-1). Sites near the island’s lower slope had lower TOC average concentrations (158-333 µmol g-1) than those closer to the channel axis (averaging 341-516 µmol g-1; p <0.05). The TN concentrations near the lower slope attained 0.11% (80 µmol g-1), whereas, towards the channel axis, they decreased to 0.07% (55 µmol g-1; p<0.05). The C:N ratios ranged from 1.9 to 10.2. The mean molar C:N ratio (5.4) indicated a marine hemipelagic deposition. The TP was lower at sites near the lower slope (38.4 to 50.0 µmol g-1; 0.12% to 0.16%) than those near the channel axis (50.0 to 66 µmol g-1; 0.15 to 0.21%). C:P fluctuated from 7.7 to 14.1 in the surficial sediment layer. The bulk organic δ13Corg and δ15N values confirmed pelagic organic sources, and the 14C dating revealed that the sediments were deposited during the Holocene (1000-5000 yr BP). We suggest that the hydrodynamic conditions in the Straits influence vertical and advective fluxes of particulate organic material trapped in the mixed-layer, which reduces the particulate matter flux to the seabed.  相似文献   

15.
太湖沉积物微生物生物量及其与碳、氮、磷的相关性   总被引:3,自引:0,他引:3  
对太湖沉积物中微生物生物量碳(MBc)、氮(MBN)、磷(MBp),以及沉积物总有机碳(TOC)、总氮(TN)、总磷(TP)进行测定并进行相关性分析,揭示太湖沉积物微生物对太湖沉积物营养盐的响应及反馈特征.结果表明:沉积物微生物生物量(MB)在湖体沿岸地区大于湖心区,平均值为184.66 mg·kg-1,MBc在西部沿岸区以及竺山湾和梅梁湾区域较高,平均值为127.57 mg·kg-1;MBN在梅梁湾、贡湖部分区域以及靠近梅梁湾和贡湖的湖心区域和东部沿岸区较高,平均值为19.25 mg·kg-1;MBp在东部沿岸区及其附近的湖心区最高,平均值为19.09 mg·kg-1;沉积物TOC高值区(≥2.30 g· kg-1)主要集中在竺山湾、西部沿岸区、梅梁湾、贡湖地区,平均值为1.59 g·kg-1;沉积物TN高值区(≥0.30g· kg-1)主要集中在贡湖、梅梁湾、竺山湾部分地区以及西部沿岸区,平均值为0.21 g·kg-1;沉积物TP高值区(≥1.20g·kg-1)主要集中在东部沿岸区以及湖心部分区域,平均值为0.55 g·kg-1;太湖沉积物TOC/TN在7~19,平均值为8.97,表明太湖沉积物中的有机质具有明显的双重来源,其中陆源有机质主要集中在西部沿岸区;太湖沉积物MB与沉积物TOC和TN呈显著正相关,与沉积物TP相关性不显著;沉积物MBc/MBN与沉积物TOC/TN显著相关.太湖沉积物微生物主要受沉积物TOC、TN影响,且沉积物TOC/TN的变化显著影响微生物群落结构.  相似文献   

16.
Summary Penicillin G recovery is investigated in a continuous flotation column in the presence of different collectors which form a complex with penicillin. The performance of the penicillin recovery was investigated as a function of the mole ratio () of collector-to-penicillin and the aliphatic chain length of the collector. At =1 and low penicillin concentrations (e.g., 20 mg·1-1), high foam liquid concentrations (680 mg·l-1), low residue concentrations (12 mg·l-1) and high penicillin separation (56) can be attained. At =4 the separation increases to 150, and 95% of the penicillin can be recovered.Symbols Cp penicillin concentration in feed (mg·l-1) - CR penicillin concentration in outlet liquid (mg·l-1) - CS penicillin concentration in foam liquid (mg·l-1) - CS/CP penicillin enrichment (-) - CS/CR penicillin separation (-) - % Pen in S penicillin yield in foam liquid (%) - VV}S foam liquid volume flow (ml·min-1) - VV}P feed (ml·min-1) - VVN 2 nitrogen flow rate (ml·s-1) - temperature  相似文献   

17.
武汉南湖水体及沉积物不同形态磷的季节变化   总被引:2,自引:0,他引:2  
在武汉南湖5个采样点分别采集了湖水和柱状沉积物样品,对水体、沉积物及其间隙水中磷的季节变化以及沉积物中的不同形态磷进行了研究.结果表明: 水体总磷(TP)和正磷酸盐磷(PO43--P)的平均含量分别为0.240和0.033 mg·L-1.TP和PO43--P均在11月含量最高,但TP含量的最低值出现在2月,PO43--P含量的最低值出现在8月.沉积物中TP的平均含量为1.005 mg·g-1, 4—11月呈上升趋势,11月至次年2月趋于稳定;其垂直分布上随沉积深度增加逐渐降低.其间隙水PO43--P的平均含量为0.209 mg·L-1,11月最高,2月最低,其垂直分布规律与沉积物TP一致.沉积物中的不同形态磷以无机磷为主,占TP的61.4%~77.1%.沉积物中活性磷(BA-P)的含量很高,但BA-P随沉积深度增加显著降低.相关性分析表明,沉积物主要通过BA-P和自生钙磷(ACa-P)的释放向水体供给磷.  相似文献   

18.
Distinct horizontal water column concentration gradients of nutrients and chlorophyll a (Chl a) occur within large, shallow, eutrophic Lake Taihu, China. Concentrations are high in the north, where some of the major polluted tributaries enter the lake, and relatively low in the south, where macrophytes generally are abundant. It is not clear, however, whether these water column concentration gradients are similarly reflected in spatial heterogeneity of nutrient concentrations within the bottom sediments. The main objective of this study was therefore to test if horizontal and vertical variations in the phosphorus and nitrogen content in bottom sediments of Lake Taihu are significantly related to (1) horizontal variations in overlying water column nutrient concentrations and (2) other sediment geochemical constituents. We measured the concentration of total phosphorus (TP) and total nitrogen (TN) in surficial sediments (0–2 cm) and TP, TN and Chl a concentrations in water column samples, collected from 32 sites in 2005. In 2006 sediment, TP, TN, carbon, iron and manganese concentrations were measured vertically at 2 cm intervals, extending to a depth of approximately 20 cm, at an additional eight sites. Linear correlation analysis revealed that surficial sediment TP concentrations across the 32 stations were related significantly, though weakly, to annual mean water column concentrations of TP, TN as well as Chl a. Correlations of surficial sediment TN with water column variables were, however, not significant (P > 0.05). Amongst the geochemical variables tested, the vertical variability of sediment TP concentrations was most strongly related to sediment manganese and carbon concentrations. A multiple stepwise linear regression revealed that the combination of sediment manganese and carbon concentrations explained 91% of the horizontal variability in sediment TP concentrations and 65% of the vertical variability. Handling editor: Luigi Naselli-Flores  相似文献   

19.
An increasing number of recent studies indicate that multiple interacting factors can affect the invasion of plants. However, few studies have focused on asexual propagation and the interaction of propagation with environmental factors that regulate the invasive potential of introduced exotic species in aquatic habitats. This study was designed to investigate the differences in asexual propagation between introduced exotic and non-invasive native aquatic macrophytes in nutrient-poor and nutrient-rich sediments and to test the hypothesis that differences in asexual propagation (stem fragment production) and propagule establishment between introduced exotic and non-invasive native macrophytes are driven by sediment nutrient levels. Three exotic aquatic macrophytes (Elodea nuttallii, Myriophyllum aquaticum, and M. propinquum) recently introduced to China and their non-invasive native counterparts (Hydrilla verticillata, Moguraense, and M. ussuriense) were used for comparison in nutrient-poor (TN 0.59 and TP 0.03 mg g−1) and nutrient-rich (TN 2.35 and TP 0.10 mg g−1) sediments. After 8 weeks of growth, the exotic species tended to produce more total biomass, branch biomass and apical shoots and have higher relative growth rate (RGR) than their native counterparts in nutrient-rich sediment. Rooting efficiency and root growth of exotic fragments were higher than that of native counterparts in nutrient-rich sediment, although the survival rates of fragments did not differ between native and exotic species. In addition, superior traits (rooting efficiency and root growth) of exotic species were also observed in nutrient-poor sediment, but to a lesser degree than in nutrient-rich sediment. These results suggest that asexual propagation of these three introduced exotic macrophytes is more effective in nutrient-rich sediment than in nutrient-poor sediment in China.  相似文献   

20.
Phosphorus (P) is a key indicator of the aquatic organism growth and eutrophication in lakes. The distribution and speciation of P and its release characteristics from sediments were investigated by analyzing sediment and water samples collected during high flow and low flow periods. Results showed that the average concentrations (ranges) of total phosphorus (TP) in the surface and deep water were 0.06 mg L-1 (0.03–0.13 mg L-1) and 0.15 mg L-1 (0.06–0.33 mg L-1), respectively, while the average concentration (range) of TP in sediments was 709.17 mg kg-1 (544.76–932.11 mg kg-1). The concentrations of TP and different forms of P varied spatially in the surface sediments, displaying a decreasing trend from south to north. P also varied topographically from estuarine areas to lake areas. The vertical distribution of TP and different forms of P were observed to decrease as depth increased. The P concentrations during the low flow period were higher than those during the high flow period. Inorganic phosphorus (IP) was the dominant form of P, accounting for 61%–82% of TP. The concentration of bioavailable phosphorus in sediments was relatively large, indicating a high risk of release to overlying water. The simulation experiment of P release from sediments showed that the release was relatively fast in the first 0-5 min and then decreased to a plateau after 1 hr. Approximately 84–89% of the maximum amount of P was released during the first hour.  相似文献   

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