首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到17条相似文献,搜索用时 15 毫秒
1.
太湖表层沉积物中多磷酸盐检出的环境意义   总被引:1,自引:0,他引:1  
在氮限制型富营养化湖泊中,沉积多磷酸盐(Poly-P)可以用来示踪营养盐磷的输入和湖泊的富营养化过程。太湖是一个典型的磷限制型富营养化湖泊,通过对太湖表层沉积物中总有机碳(TOC)、总氮(TN)、总磷(TP)、氢氧化钠可提取磷(NaOH-P)以及Poly-P的提取分析,初步探讨了太湖营养盐磷输入的历史记录,并揭示了该湖Poly-P的主要来源和保存机制。太湖Poly-P的质量浓度较低,变化范围为0.004~0.065mg·g-1。NaOH-P占TP组成的22%,是太湖沉积物总磷的主要组成部分之一。结果显示,在湖泊水体藻类生物量较大和NaOH-P是沉积物TP重要组成部分的磷限制型湖泊中,Poly-P也是沉积物磷汇组成的一个重要部分,同时还是一个可以反映由人为磷输入增大导致湖泊富营养化程度加剧的敏感指标。  相似文献   

2.
连续的沉积物记录为研究湖泊富营养化的长期过程提供了可能。分析了洱海湖中心沉积柱的营养盐浓度垂向分布和沉积物年代记录,并结合湖心水质变化情况,研究了洱海沉积物营养盐的时间演化特征及生态意义。结果显示:Cal.AD 1960年以前,洱海沉积物营养盐稳定在较低水平,总有机碳(TOC)平均质量分数为1.45%,总氮(TN)平均质量分数为0.20%,总磷(TP)质量分数低于1 000 mg·kg~(-1);Cal.AD 1960年以后,TOC和TN质量分数均急剧升高,尤其在1990年之后呈直线上升态势,最高值分别为5.8%和0.84%,TP质量分数从1 000 mg·kg~(-1)。左右直线上升至1 345 mg·kg~(-1),反映了洱海近几十年来的人为富营养化加剧过程。沉积物TP与TOC、TN呈极显著正相关(P=0.001),TOC与TN的Pearson相关系数最大。洱海沉积物的TOC/TN比值总体比较稳定,数值在5.8~11.5之间波动,反映出这3种营养物质的藻类同源性。沉积物的营养物累积过程伴随水质变化呈不断恶化趋势,1990年后沉积物营养盐的时间演变规律与湖心区水质随时间的变化趋势基本一致。洱海表层沉积物TN、TP浓度明显高于东部平原湖区的湖泊,其营养盐内源负荷不容忽视。与同地区湖泊相比,沉积物TN浓度水平与抚仙湖和滇池相当,而TP浓度明显低于这两个湖泊,说明洱海沉积物对P仍具有较强的吸附容量及潜在缓冲能力。  相似文献   

3.
南四湖沉积物营养盐释放特性   总被引:2,自引:0,他引:2  
通过营养盐静态释放模拟试验,研究了南四湖沉积物NH4+-N、TP和有机质(OM)的释放能力;针对微山湖区(WS)沉积物氮含量较高、释放较强的特点,为明晰WS湖区的氮释放潜力,考察了该湖区16个点位沉积物对NH4+-N的等温吸附特性.静态释放试验表明,沉积物TP和OM释放能力较弱,对南四湖上覆水水质影响不明显;而WS湖区的NH4+-N释放能力较强.WS湖区沉积物的NH4+-N等温吸附试验表明,湖心区沉积物NH4+-N释放能力最强,吸附/解吸平衡浓度(CEAC)高于1 mg.L-1的区域面积约占微山湖的1/5,该区域沉积物NH4+-N释放将会对南水北调东线调水水质产生不利影响.  相似文献   

4.
绿潮藻类暴发对天鹅湖水体和沉积物磷含量的影响   总被引:1,自引:0,他引:1  
魏权  邵雪琳  高丽 《生态环境》2014,(1):139-144
在荣成天鹅湖藻类暴发区域采集新鲜沉积物和丝状硬毛藻(Chaetomorpha spp.),进行室内模拟试验,监测了生长过程中硬毛藻的生物量、磷富集量以及不同处理水体总磷(TP)和可溶性磷(SRP)质量浓度的变化,并分析了藻类生长对沉积物中各形态磷含量的影响。结果表明,当水体磷含量较高时,硬毛藻生长较快,相对生长速率高达14.88%,之后随着水体磷浓度的下降,生长速率逐渐减小。不同处理间硬毛藻的生物量相差很大,高磷含量处理显著高于低磷处理,最大差值可达26.50 g。随着藻类的生长,水体TP和SRP含量明显降低,其中高磷含量处理的TP质量浓度由0.93 mg·L-1降至0.01 mg·L-1,低磷含量处理水体SRP质量浓度均降至0.006 mg·L-1以下。当水体磷含量降至一定水平,沉积物中磷可向水体释放,其中可还原态磷和铁铝结合态磷的降幅分别为23.98%和12.61%。在高磷含量处理组,藻体中磷的富集量显著升高,且当水体磷含量相同的条件下,有沉积物处理的富集量显著高于无沉积物处理。相关分析表明,藻体生物量与水体TP和SRP的相关性较好,其中高磷含量处理组生物量与水体TP、SRP呈高度负相关,而相对生长速率与之呈显著正相关。结果说明,水体及沉积物中磷均可作为硬毛藻生长的营养来源;另一方面,藻类生长可明显降低水体磷含量,并促进沉积物中磷的释放。  相似文献   

5.
鄱阳湖沉积物中磷吸附释放特性及影响因素研究   总被引:3,自引:0,他引:3  
沉积物是氮磷营养盐的主要蓄积库,它不仅是外来污染物的归宿地,同时其自身营养盐的释放也可对水环境产生重大影响。针对鄱阳湖存在的沉积物磷释放问题,关键环境因子对基质磷吸附的影响规律进行了探讨。通过控制在不同环境因素条件下,上覆水中磷的变化规律探讨,阐明磷在上覆水-底泥界面迁移转化的规律和环境因素对迁移转化过程的影响。研究结果表明,吸附初始阶段,两者含量相差较大,起始吸附速率很高;随着反应时间的推进,两者含量差随之减小;当吸附时间达到30 min时,此时上覆水的平衡质量浓度为8.648 mg·L^-1,两者含量达成平衡。由磷的吸附等温试验同样可看出,随着平衡质量浓度逐渐增加,土壤吸磷量刚开始增加较快,随后增加趋势逐渐减缓直至磷饱和。pH越小,上覆水质量浓度越低,沉积物对磷的吸附作用越强;pH越大,上覆水中TP质量浓度越大,强碱条件下,TP吸收量剧减。在好氧条件下,沉积物对磷的吸附远远高于厌氧条件下沉积物的吸附。好氧条件下,反应在4 h内,沉积物对磷的吸附速率最高,随后吸附量很小直至逐渐饱和。厌氧条件下,吸附作用不明显;当反应时间达到24 h后,上覆水磷质量浓度保持不变,此时沉积物磷吸附达到饱和。高溶解氧水平对于控制底泥向上覆水体释放磷,维持水体较低总磷是必要的。温度为30℃,20℃和5℃3种条件下,当反应24 h后,三者均达到吸附平衡。因此,当上覆水的磷质量浓度较低时,高温条件下基质的磷释放速度会高于低温条件下的磷释放速度。研究结果旨在为正确认识、合理评估环境因素对湖泊水体磷的影响提供更为充分恰当的试验依据和理论解释。  相似文献   

6.
初春苦草腐解过程中营养盐释放过程及规律   总被引:4,自引:0,他引:4  
采用室内模拟方法研究初春温度条件下苦草在腐解过程中碳、氮和磷的释放过程,研究沉水植物衰亡过程中营养盐的释放规律.结果表明,在初春温度条件下,苦草迅速腐解,向水体释放大量碳、氮和磷.随着时间的推移,苦草向水体释放的磷大部分沉积进入底泥,而氮则是部分沉积进入底泥,部分以气体形式移出水体.苦草腐烂分解产生的厌氧条件和大量有机碳的供给促进了水体反硝化作用并加快氮素移出水体.较大的生物残留量会引起水体缺氧,同时产生大量营养盐,导致水质严重恶化,因此需要适时收割水生植物来控制水体残留生物量.  相似文献   

7.
沉积物是湖泊营养盐重要的蓄积库,是湖水氮、磷元素的重要来源之一.碱性磷酸酶是一种专一性的磷酸酯水解酶,可以催化所有的磷酸酯水解反应和磷酸基团的转移反应,在沉积物的生物释磷过程中具有关键作用.研究湖泊碱性磷酸酶的活力及其对湖泊营养盐的影响,对于控制内源磷污染,防治水体富营养化具有重要的意义.  相似文献   

8.
三峡水库香溪河库湾氮磷分布状况及沉积物污染评价   总被引:3,自引:0,他引:3  
为了解三峡大坝蓄水完成之后香溪河库湾水体及沉积物中氮、磷的分布状况以及沉积物污染水平,2013年4月对三峡水库香溪河库湾进行调查采样,测定表层水及沉积物中氮磷含量和形态组成。结果表明,香溪河库湾表层水总磷(TP)含量范围为0.20~0.51 mg·L~(-1),总氮(TN)含量范围为0.54~2.25 mg·L~(-1),TP主要由磷酸盐(PO_4~(3-))组成,TN主要由硝酸盐(NO_3~-)以及氨氮(NH_4~+)组成,TP在空间上呈现从河口向库尾逐渐升高的分布格局,TN分布从河口向库尾逐渐降低。香溪河库湾沉积物中TP含量变化范围为642~1 189 mg·kg~(-1),TN含量变化范围为867~1 718 mg·kg~(-1),沉积物TP含量分布呈现上游高下游低,沉积物TN分布趋势呈现中间高,两头低。沉积物中TP主要由无机磷(IP)组成,有机磷(OP)所占比例较小,其中IP由钙磷(Ca-P)、铁铝磷(Fe/Al-P)组成,三者含量:Ca-POPFe/Al-P,且沉积物TP含量空间变化受到三者影响(P0.05)。采用单一因子标准指数法对香溪河库湾沉积物中TN、TP污染水平进行评价,结果表明,表层沉积物中TN、TP最低级别污染指数平均值为2.0和1.6,表层沉积物中TN、TP污染指数均超过最低污染水平,且TP的严重级别污染指数达到0.5以上。三峡水库三期蓄水完成以后,香溪河库湾表层水体中氮磷含量较初期蓄水有所升高,各样点沉积物中氮磷含量表现出相同的趋势,沉积物中不稳定磷释放对水体富营养化具有影响,香溪河库湾的表层沉积物已经受到一定的污染,磷污染水平较高。  相似文献   

9.
荣成天鹅湖为一天然瀉湖,近年来绿潮硬毛藻大量爆发,内源污染日益严重。以大型硬毛藻和不同湖区沉积物为试材,设置沉积物+水、沉积物+水(灭菌)、沉积物+水+藻、沉积物+水+藻(灭菌)4个处理,研究了不同微生物活性及藻类条件下上覆水体氮磷质量浓度的变化,同步监测水土界面DO和pH等理化参数,以探讨藻分解和微生物对天鹅湖不同湖区沉积物氮磷释放的影响,为藻华消亡过程中内源污染的治理提供理论依据。结果表明,微生物存在和硬毛藻分解可使水体氮质量浓度明显增加(P<0.05)。试验过程中,水体总氮在有藻和无藻条件下的质量浓度变幅分别为1.56-14.11 mg·L^?1和0.11-8.96 mg·L^?1,后期灭菌处理明显低于未灭菌处理。藻分解对水体磷质量浓度具有极显著影响(P<0.01),有藻条件下灭菌处理总磷质量浓度为0.31-1.27 mg·L^?1,未灭菌处理为0.27-1.41 mg·L^?1;而无藻条件下灭菌和未灭菌处理变幅分别为0.019-0.047 mg·L^?1和0.025-0.078 mg·L^?1。在天鹅湖,不同湖区沉积物氮磷的释放能力存在差异,水体氮质量浓度在有藻和无藻条件下均表现为西北部>湖中心>湖南部,磷质量浓度有藻条件下与氮一致,而无藻条件下则表现为湖中心>西北部>湖南部。湖中心沉积物处理水体营养盐浓度受微生物活性影响较大。3种因素对水体氮磷质量浓度的影响效应表现为:藻类>微生物>沉积物。可见,在藻类大量暴发且微生物活性较高的湖中心及西北部,沉积物氮磷的释放潜力较大,尤其在藻类堆积腐烂时期,应引起足够重视。  相似文献   

10.
以荣成天鹅湖暴发的硬毛藻和湖中心的沉积物为试材,通过室内模拟分析了不同密度藻类分解条件下水体可溶性磷(SRP)、Fe~(2+)、S~(2-)质量浓度以及主要理化参数的动态变化,以探讨硬毛藻分解对沉积物中铁磷释放的影响以及铁磷间的耦合关系,为藻华后水体富营养化以及内源污染的治理提供理论依据。在整个试验周期,不同藻密度条件下水体SRP、Fe~(2+)和S~(2-)的质量浓度变幅分别为0.004-0.89、0.04-0.50和0.02-17.36 mg·L~(-1);试验前期质量浓度较高,之后随时间呈下降趋势,后期各处理间差异减小。多重比较表明,残藻密度对上覆水中SRP、Fe~(2+)和S~(2-)的质量浓度均具有极显著影响(P0.01);各处理质量浓度表现为:沉积物+50 g藻+水沉积物+30 g藻+水30 g藻+水沉积物+10 g藻+水沉积物+水。试验前期(1-7 d),各处理差异较大,其中沉积物+50 g藻+水与沉积物+30 g藻+水、沉积物+10 g藻+水处理间的SRP、Fe~(2+)、S~(2-)质量浓度差异均达极显著水平(P0.01);沉积物+10 g藻+水与沉积物+水处理间Fe~(2+)质量浓度差异达显著水平(P0.05)。藻分解过程中,上覆水磷铁之间、磷硫质量浓度间均呈显著正相关关系,r值分别为0.671(P=0.000)和0.498(P=0.013)。残藻密度越高,水体理化性质的变幅则越大。硬毛藻体内的磷和铁可在分解初期大量向水体释放,且高密度残藻的堆积分解可明显降低水土界面的氧化还原电位而促进沉积物中磷铁的释放,使得水体磷和铁质量浓度急剧增加。  相似文献   

11.
海洋沉积物-水界面营养盐交换过程的研究1   总被引:5,自引:0,他引:5  
对胶州湾和渤海沉积物分别进行室内培养实验.结果表明,在沉积物中加入营养盐后,铵氮、硅酸盐由沉积物向水体的迁移增大,铵氮的迁移在总溶解态氮的交换中起主要作用,其交换量约占总溶解态氮扩散量的76%,硝酸盐及磷酸盐由水体向沉积物的迁移减弱.在上覆水中加入营养盐后,硝酸盐、磷酸盐由水体向沉积物的迁移增大,硝酸氮的迁移占总溶解态氮交换的主要部分,约为62%.铵由沉积物向水体的迁移减弱,硅酸盐变成由水体向沉积物迁移.沉积物对于上覆水中营养盐的浓度具有一定的调节作用.无论在充空气或充氮气条件下,磷及硅的交换速率变化不明显,铵氮的迁移占总溶解态氮扩散量的98%以上.充氧条件下硝酸盐由沉积物向上覆水的迁移通量较充氮气条件增加.比较两种不同的通量计算方法(积分和拟合),结果表明由两种计算方法计算的交换速率的变化趋势基本是一致的.  相似文献   

12.
水体富营养化是常见的世界性水体生态系统障碍问题之一,给人类生产、生活造成了广泛而严重的影响,同时也是造成世界各地结构性缺水的重要原因之一。底泥磷释放是水体富营养化的重要原因,但目前常用的控磷技术往往成本较高,内源磷再释放风险仍然较大。该研究按铁-泥质量比1.00%、3.33%、5.00%、10.00%,分别向富磷底泥投加的铁粉来模拟零价铁控磷过程,通过分析3、7、14、21、28、35d内底泥磷形态的变化趋势,研究零价铁控磷过程及磁性分离除磷技术的应用前景。结果表明:底泥中水溶性磷、弱结合态磷是水体磷元素的主要来源,零价铁对底泥中高生物活性的弱吸附态磷(NH4Cl-P)去除率最高可达75%,对水溶性磷的去除率可达90%以上,向富磷底泥投加零价铁能够原位富集、降低内源磷生物有效性,阻断底泥向水体释磷的过程;零价铁原位控制底泥磷释放主要依赖于零价铁氧化形成的铁离子和铁氧化物与磷酸根的沉淀和共沉淀过程,加入零价铁后水溶性磷和弱结合态磷主要向铁结合态(Fe-P)转化,联合外加磁场后大部分可随铁粉拔出,最终达到安全高效地去除水体和底泥表层中高生物有效性磷的目的。该方法可以有效解决挖掘清淤、疏浚等控磷方法高成本、易反复的问题,为高效原位治理水体富营养化,保障湖泊、水库生态环境安全提供有价值的技术方法。  相似文献   

13.
沉水植物黑藻对沉积物氨氮吸附/释放特征的影响   总被引:5,自引:0,他引:5  
氮素是主要的湖泊营养盐,而沉水植物作为湖泊生态系统主要的组成部分,对系统中氮素的跨界面迁移有着重要的影响。在实验室模拟条件下,通过沉积物氨氮释放动力学、吸附热力学和吸附动力学实验,研究了沉水植物黑藻(Hydrilla verticilla)对沉积物氨氮吸附/释放特征的影响,得到如下结论:(1)一级动力学反应模型能较好地拟合沉积物氨氮释放的动力学过程,种植沉水植物没有影响氨氮释放的趋势,但增强了沉积物释放氨氮的能力;(2)分别用多个模型对沉积物氨氮吸附热力学和动力学过程进行拟合,结果均表明种植沉水植物以后,沉积物对氨氮吸附的趋势没有影响,但吸附强度有所下降。  相似文献   

14.
The interactions between bed sediments and the water column in shallow, eutrophic lakes have tremendous implications for the fate and transport of nutrients in those water bodies. This has resulted in the development of water quality models for lakes incorporating the processes of sediment resuspension. Reliable resuspension models are thus needed to accurately represent this phenomenon. In this paper, three different sediment-resuspension models are combined with a hydrodynamic and water quality model, dynamic lake model-water quality (DLM-WQ), and the resulting models are used to simulate nutrient distributions in the highly eutrophic Salton Sea, California, USA. One of the resuspension formulas is based upon sediment characteristics as well as the bed shear stress exerted by wind-induced waves and currents, while the other two are standard, power-law-type formulas for cohesive sediments with two different exponents. The outputs for water quality variables, such as temperature, chlorophyll a, dissolved oxygen and nutrients, obtained from the three resulting models and from an earlier DLM-WQ run with a simple empirical sediment-resuspension model are compared with measured data. The level of agreement between the simulations and the measured data is assessed by using both statistical and graphical model evaluation methods, including measures of residual errors, sample autocorrelations, t-tests, and box plots. Based on these assessments, DLM-WQ with an extended version of the García and Parker [García, M.H., Parker, G., 1993. Experiments on the entrainment of sediment into suspension by a dense bottom current. J. Geophys. Res.-Oceans 98, 4793–4807] relationship gave the best results for water quality in the Salton Sea, confirming that the use of formulas with more information on the sediment characteristics yields more accurate results. To the best of our knowledge, this is the first effort to combine water quality models for lakes and reservoirs with a sediment-resuspension model which was originally intended for open-channel flows. The simulations confirm that sediment resuspension is the most dominant process in the Salton Sea's nutrient cycling. The effect of proposed physical changes to the Salton Sea on water quality characteristics is also addressed.  相似文献   

15.
The modelling of the transformation processes in the river sediments is an important and still not investigated problem that is a key for water quality. The relation between nutrients transformation rate and moisture in sediments was investigated by means of analogous modelling. The mathematical dependences of the connection were derived, and only two of them were linear—at the early stage of COD (organic) change and at the late stage of transformation of phosphates that metabolically connected the biodegradation of organics with oxidative phosphorylation. The rest mathematical dependences were the polynomials of third order. This study confirmed that the leading factors which influence the transformation rate of nutrients are the sediment surface, particular organic matter and porosity of the medium, as well as the concentration on the sediment surface of micro-organisms, enzymes, co-metabolites, etc. The presented data from ecological modelling of the transformation processes in the parafluvial sediments showed how can the hydrological models be enlarged and enriched in their application to the key and critical (risk) fluctuations in the river functioning. The mathematical dependences and coefficients were extracted in our complex study to be included in HSPF model as an enlarged module. As far as the investigated transformation processes in the parafluvial have more universal significance, the results can be applied in the other models, bounded river water and sediment quality.  相似文献   

16.
Reliably predicting the consequences of short- or long-term changes in the environment is important as anthropogenic pressures are increasingly stressing the world's ecosystems. One approach is to examine the manner in which biota respond to changes in the environment ("response traits") and how biota, in turn, affect ecosystem processes ("effect traits"). I compared the response and effect traits of four submersed aquatic macrophytes to understand how water level management may affect wetland plant populations and ecosystem processes. I measured resource properties (nutrients in sediment and water), non-resource properties (pH, alkalinity, sediment temperature, oxygen production), and biotic properties (periphyton biomass) in replicated outdoor monocultures of Stuckenia pectinata, Potamogeton nodosus, P. crispus, and Zannichellia palustris. After seven weeks, three of eight replicates of each species treatment were subjected to a temporary water draw-down that desiccated aboveground plant parts. The four species differed in their effects on ecosystem properties associated with nutrient uptake and photosynthetic activity. Shoot growth rate was negatively correlated with light transmittance to the sediment surface whereas root growth rate and root:shoot ratio were correlated with a species' ability to deplete nutrients in sediment interstitial water. Occupation of space in the water column was correlated with water alkalinity and pH and with sediment temperature. Root growth rate was related simultaneously to species effects on sediment nutrient dynamics and recovery of ecosystem properties after water draw-down. This suggests that this morphological trait may be used to predict the effects of environmental change on ecosystem functioning within the context of water level management. Expanding these analyses to more species, different environmental stressors, and across aquatic and terrestrial ecosystems should enhance predictions of the complex effects of global environmental change on ecosystem functioning.  相似文献   

17.
The research aimed to evaluate present and potential phosphorous pollution due to high sedimentary phosphorus load and release from sediment, when external phosphorus was reduced in downstream Nansi Lake. Pollution load of the sediment and overlying water was investigated. Kinetics and isotherms of adsorption/release of sedimentary phosphorus were studied to determine equilibrium phosphate concentration (EPC0) and release potential. Kinetics of phosphorus adsorption on sediment and release from sediment were well described by both the pseudo-first-order rate equation and the pseudo-second-order rate equation, but more appropriate to the pseudo-second-order rate equation with the adsorption/release capacity more close to the measured values, suggesting that the processes were chemically rate controlled and dependent on adsorption capacity. Soluble reactive phosphorus (SRP) sorption isotherms on sediment were best fitted by the modified Langmuir model indicating a monolayer adsorption. By comparing EPC0 and SRP of water, the status (adsorption, releasing or in equilibrium) of sediment phosphorus could be determined. The sediments at site S1, S3, S4, S5, and S7 where the EPC0s were greater than the SRPs, had a potential to release phosphorus into the water column. However, those sediments at S9, S10, and S12, where the EPC0s were approximately equal to the SRPs, were in impermanent equilibrium with overlying water in status of phosphorus, the sediments can be likely to release phosphorus to the water column once the equilibrium was broken. Therefore, sedimentary phosphorus can be a secondary pollution source in downstream Nansi Lake.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号