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1.
利用磷的分级提取分析方法,首先对瑶湖沉积物磷赋存形态进行了分析;其次将瑶湖分成A、B和C 3个区段(其营养状态指数TLI值的大小为:B区A区C区),在此基础上,探讨了铁结合态磷(Fe-P)、铝结合态磷(Al-P)、钙结合态磷(Ca-P)和有机磷(OP)的空间分布特征。研究结果表明:在沉积物磷赋存形态中,无机磷形态(IP)占总磷(TP)的平均比重为75%以上,Fe-P是IP的主要成分,Fe-P占TP比重范围为40.55%~67.63%;各种形态磷的平均含量(或占TP比重)大小为Fe-PAl-POPCa-PDP。Fe-P、Al-P和OP的水平分布特征的结果表明:对于相同的区段,不同磷赋存形态的含量变化具有相同的变化规律,其含量大小为Fe-PAl-POP,而Ca-P含量变化相对稳定;对于不同的区段,相同磷的赋存形态含量的极值变化具有一定的差异,其中Fe-P、Al-P和OP的最大值均出现在B区段,而Fe-P和Al-P最小值出现在A区段,OP则出现在C区段。Fe-P、Al-P、Ca-P和OP的垂直分布特征的结果显示:对于相同的区段,Fe-P、Al-P、Ca-P和OP的含量均随深度呈现递减趋势,当达到25 cm深度时其含量基本稳定;而对于不同的区段,Fe-P、Al-P和OP的含量随深度的变化趋势具有一定的差异性,A区段随深度的变化趋势比B区段和C区段缓慢,而Ca-P变化趋势则没有明显的区分,这一研究结果为揭示瑶湖富营养化发生的机制提供了数据和理论支撑。  相似文献   

2.
构建处理不同负荷养殖废水的绿狐尾藻人工湿地,采集湿地表层(0~5cm)、中层(5~10cm)和底层(10~20cm)底泥样品,测定TP及有机磷含量,并用五步化学分级提取法将无机磷逐级提取为水溶性磷、铝结合态磷(Al-P)、铁结合态磷(Fe-P)、闭蓄态磷(O-P)和钙结合态磷(Ca-P),对比了各形态无机磷水平和垂直分布差异。结果表明,绿狐尾藻人工湿地表层底泥TP质量浓度在167~965mg/kg,其中有机磷占TP的66.0%(质量分数,下同)~79.2%。各形态无机磷的含量排序为:O-PFe-PCa-PAl-P可溶性磷。不同形态无机磷随着底泥深度的增加变化不同,总体来看,从表层到中层,Al-P、Fe-P和Ca-P含量呈现降低趋势,中层到底层无明显变化规律;低负荷湿地中,O-P含量随深度增加逐渐降低,而在中、高负荷湿地中O-P含量随深度增加逐渐增加。相关分析结果显示,Al-P、Fe-P、O-P含量与底泥pH和溶解性有机碳(DOC)呈显著或极显著正相关,说明磷在底泥中的行为易受底泥pH和DOC影响。  相似文献   

3.
桂林会仙湿地沉积物中磷形态及分布特征   总被引:1,自引:0,他引:1  
沉积物中磷的含量及其形态是影响水体营养化进程的重要因素,对研究湿地水体富营养化具有重要意义。应用蒋柏藩等石灰性土壤无机磷提取方法,调查了桂林会仙岩溶湿地5个典型区域柱状沉积物中的磷形态分布、垂向上的变化特征,分析了各形态磷之前的相关性。结果表明,桂林会仙湿地柱状沉积物中w(TP)为161.14~555.48 mg/kg,活性较高的Ca2-P(5.27~51.45 mg/kg)、Ca8-P(7.76~37.57 mg/kg)均较低。沉积物中的磷以Ca-P(42.92%)为主,Ca-P中的Ca10-P所占比例较高(>70.3%),导致内源磷不易释放,有利于减缓桂林会仙湿地水体富营养化进程。在空间分布上,Ca2-P、Ca8-P、Al-P、Fe-P与TP分布趋势相似,从沉积物表层至底层逐渐降低并趋于稳定。Pearson相关系数表明,TP与总氮(TN)、有机质(OM)、Ca2-P、Ca8-P、Al-P、Fe-P极显著相关,与Ca10-P显著相关。  相似文献   

4.
按照城市地表雨水径流水质指标,通过在自来水中添加药剂或材料,人工配制模拟地表雨水径流。通过对有植物和无植物种植的两个土壤渗滤系统开展4次模拟地表雨水径流渗滤试验,监测每次模拟地表雨水径流渗滤试验的渗滤出水中TP含量以及在进水、落干阶段土壤渗滤系统试验装置中0、5、15、35cm深度改良土壤渗滤介质的交换态无机磷(Ex-P)、铝磷(Al-P)、铁磷(Fe-P)的含量,研究土壤渗滤系统中植物对地表雨水径流中磷的控制效果和对改良土壤渗滤介质吸附磷迁移转化过程的影响。结果表明:(1)4次模拟地表雨水径流渗滤试验中,土壤渗滤系统对模拟地表雨水径流中TP的去除率均在89%以上,有植物种植的土壤渗滤系统中TP去除率均高于无植物种植的土壤渗滤系统。(2)改良土壤渗滤介质对模拟地表雨水径流中无机磷的吸附是分层进行的,随着上层改良土壤渗滤介质固定的无机磷量逐渐增加,改良土壤渗滤介质对模拟地表雨水径流中磷的吸附作用逐渐减弱,含有较多磷的模拟地表雨水径流进入下层的改良土壤渗滤介质再被吸附固定。在没有外源磷进入的阶段,改良土壤渗滤介质吸附磷的主要介质为红壤土中无定形态的铝,植物的生长会促使改良土壤渗滤介质中Al-P累积到一定程度后会向Fe-P转化。  相似文献   

5.
为了探明水源水库沉积物磷的赋存形态及其对水体磷的影响,采用连续提取方法,研究了周村水库沉积物中磷的赋存形态分布特征,并探讨了沉积物各形态磷与总磷、烧失量及间隙水中磷的相关性。结果表明,周村水库内源磷负荷较高,沉积物中TP表现出表层富集的现象,表层沉积物中TP空间分布存在较大差异,上游浅水区为554~563 mg·kg~(-1),库心附近为424~1 161 mg·kg~(-1),而坝前深水区高达812~2 969 mg·kg~(-1)。无机磷(IP)是总磷(TP)的主要成分,占TP的79.26%~89.12%,IP主要由铝/铁磷(Al/Fe-P)构成。沉积物中的Al/Fe-P含量很高,具有很大的磷释放潜能。沉积物中各形态磷的浓度垂向分布随深度增加而逐渐降低,其中B、C两点变化最为明显。相关性分析结果表明,间隙水PO3-4-P与Fe-P存在较好的相关性,说明Fe-P对周村水库沉积物间隙水中PO3-4-P浓度分布有着重要的影响,周村水库水体季节性分层导致恒温层厌氧情况的发生,Fe-P在厌氧还原条件下释放进入间隙水并向上覆水扩散,进而可能对水体水质产生影响。  相似文献   

6.
为了研究高原湖泊底泥沉积物中磷的释放负荷,对贵州红枫湖区10个地区的沉积物进行了磷形态分析。选取10个采样点中5个典型区域,研究结果表明,底泥中各形态磷占总磷比例Org-P为58.6%,NaOH-P为29.91%,Ca-P为11.48%,底泥中主要的磷形态为有机磷。上覆水溶解性总磷酸盐(TSP)与底泥中各形态磷的相关性研究表明,底泥中的Ca-P与上覆水中的TSP几乎没有相关性,NaOH-P与Org-P与上覆水的TSP有较高的相关性(R2>0.94),而底泥中的总磷(TP)与上覆水中的TSP相关性最高(R2>0.98),底泥中这种形态的结构有利于抑制底泥的释放。研究表明,在10点位样品中,间隙水中TP和SRP(溶解性正磷酸)浓度远大于上覆水体中相应磷形态的浓度,间隙水中TP平均浓度为0.37 mg/L,SRP平均浓度为0.18 mg/L,上覆水体中TP平均浓度为0.10 mg/L,SRP平均浓度为0.02 mg/L,间隙水中TP、SRP与上覆水中TP、SRP存在了一种浓度梯度。  相似文献   

7.
分别向复合垂直流人工湿地下行流池和上行流池中加入蚯蚓和泥鳅,研究动物加入后人工湿地基质中磷形态及去除效率的变化。结果表明,加入蚯蚓后,下行流池基质中铁铝磷(Fe/Al-P)、钙磷(Ca-P)、有机磷和总磷的含量显著增加(p0.05);加入泥鳅后,上行流池基质中Fe/Al-P含量无显著性变化,钙磷、有机磷、总磷含量增加。人工湿地加入蚯蚓后,基质中Ca-P占总磷的百分比下降,Fe/Al-P和有机磷占总磷的百分比增加;加入泥鳅后,基质中Ca-P占总磷的百分比也下降,而有机磷占总磷的百分比升高,该结果表明,蚯蚓和泥鳅促进了基质中Ca-P向有机磷的转化。加入蚯蚓的人工湿地对磷的去除率高于未加蚯蚓的人工湿地,其原因之一可能与加入蚯蚓后人工湿地基质总磷含量增加有关。  相似文献   

8.
合肥城郊典型排水沟渠沉积物磷形态及其释放风险   总被引:1,自引:0,他引:1  
为弄清合肥市城郊排水沟渠—关镇河水体沉积物磷赋存形态及其污染特征,于2013年9月—2014年6月,在沟渠上选取8个采样点,逐月采集水样和表层沉积物样,解析沉积物的磷赋存形态及其时空变化特征,并对磷的潜在释放风险进行分析。结果表明:关镇河水体氮、磷污染严重;沉积物中TP含量处于1 430.10~1 941.26 mg/kg范围,平均为1 734.42 mg/kg;沉积物各形态磷含量由高到低排序为:OPFe-PCa-PDe-PAl-POc-PEx-P;生物有效性磷平均值为464.01 mg/kg,占TP的26.81%;广义生物有效性磷的平均含量为1 226.92 mg/kg,占TP的71.00%;PSI变化范围为18.31~69.96 mg P/(100 g)·(μmol/L),且沉积物磷释放风险春夏季高于秋冬季。  相似文献   

9.
为科学评价磷在河道沉积物中的环境行为,在模拟条件下研究了上海市进木港和苏州河沉积物中磷的分布形态、吸附特征及释放规律.结果表明:(1)2种沉积物中碎屑钙磷(De-P)浓度最高,闭蓄态磷(Oc-P)次之,其他形态磷浓度相对较低,而活性磷中以铁磷(Fe-P)为主;(2)2种沉积物对磷的吸附均符合线性方程,在4.0h时基本达...  相似文献   

10.
钱塘江富阳-杭州段沉积物磷的赋存形态分析   总被引:4,自引:0,他引:4  
研究了钱塘江富阳一杭州段10个采样点表层沉积物中TP、各组分磷的含量分布以及沉积物有机质和粒径对磷分布情况的影响.结果表明,钱塘江富阳一杭州段表层沉积物中的TP为594.76~1 463.06 mg/kg,平均为940.24 mg/kg.NaOH提取态磷(NaOH-P)是污染河段无机磷(IP)的主要赋存状态.除个别采样点外,有机磷(OP)在TP中所占的比例相对较低.钱塘江富阳一杭州段沉积物TP以及赋存状态与沉积物粒度组成及有机质含量有显著的相关关系,沉积物中细颗粒越多,有机质含量越高,其TP也就越高,污染河段磷素增加主要造成NaOH-P升高,因此可以判断河段释磷潜力与污染有关.  相似文献   

11.
Phosphorus (P) in wetlands is mainly bound to sediment in various species, which is essential to predict water column P levels. The purpose of this work is to understand the influences of sediment properties and vegetation types on P speciation. Sediments under four vegetation types in the tidal flat and offshore sandbar in Hangzhou Bay of China were collected seasonally. The rank order of P species in sediment based on concentration was exchangeable P (Exch-P)?相似文献   

12.
合肥市南淝河不同排口表层沉积物磷形态分布特征   总被引:4,自引:0,他引:4  
对合肥市南淝河不同排口处表层沉积物进行了采样,并采用修正后的标准测试程序SMT和钼锑抗紫外分光光度法测定了其中的总磷(TP)、无机磷(IP)、有机磷(OP)、铁/铝磷(Fe/Al-P)和钙磷(Ca-P),同时分析了各形态磷之间以及与沉积物有机质之间的相关性。结果表明,由于各排口附近不同的水动力条件,污染状况以及沉积环境,各排口表层沉积物总磷(TP)的质量分数存在显著差异,其值在771.23~3 065.36 mg/kg之间,除二里河排口(S15)沉积物磷以钙磷(CaP)为主外,其他采样点表层沉积物磷均以铁/铝磷(Fe/Al-P)为主,各形态P的最低值均在位于南淝河上游的S4点,TP、IP、Fe/Al-P的最大值均出现在位于望塘污水厂排口下游60 m处的S6点,潜在释放磷比例最大值在南淝河上游受农业面源污染影响较大的S3点。沉积物各形态磷之间存在着不同程度的相关性,各形态磷与有机质存在着显著的正相关。以上结果表明,南淝河沉积物磷形态分布特征受排口类型影响显著,其中城市污水处理厂尾水可能是受纳水体沉积物重要的磷源。  相似文献   

13.
Phosphorus is an essential and often limiting nutrient in both marine and freshwater ecosystems. However, its oversupply is of great concern in many environments due to its role in eutrophication. The concentration and distribution of sediment bound phosphorus species not only record its input into the environment, but also suggest their possible sources. It is recognized that the features of phosphorus behaviour have not been extensively studied in urban environments. In this study, phosphorus in solid waste and sediments from drainage canals within the industrial belt of Delhi were fractionated into five operationally defined forms, i.e., exchangeable or loosely sorbed phosphorus (Exch-P), Fe-bound phosphorus (Fe-P), authigenic apatite, CaCO3-bound phosphorus and biogenic apatite (Acet-P), detrital apatite (Det-P) and organic-bound phosphorus (Org-P), in order to assess the potential bioavailability status in these systems.  相似文献   

14.
三垟湿地沉积物-间隙水-上覆水界面磷形态研究   总被引:1,自引:0,他引:1  
沉积物与上覆水间营养物质交换,成为导致水体发生富营养化的首要化学变迁过程.分别在三垟湿地的柑橘林(S1)、景观用地(S2)和生活用地(S3)取样,研究了沉积物-间隙水-上覆水界面磷形态以及相互关系.结果表明:(1)沉积物TP增加时,间隙水PO3-4和可溶性总磷(TDP)也增加.要削减磷在上覆水中的含量,控制间隙水PO3-4或TDP是一良策.(2)随着沉积物铁磷、铝磷的增加,间隙水PO3-4也增加.在三垟湿地沉积物中,铁磷和铝磷含量都可作为间隙水PO34-含量的指示.(3)S1、S2和S3的沉积物活性磷、间隙水TDP和上覆水TDP存在明显的浓度梯度,沉积物活性磷>间隙水TDP>上覆水TDP.说明在三垟湿地中,沉积物活性磷是磷释放的关键因子,而沉积物-间隙水界面则是磷释放的关键界面.  相似文献   

15.
Mechanisms of phosphorus solubilisation in a limed soil as a function of pH   总被引:5,自引:0,他引:5  
Phosphorus (P) quantity-intensity relationships are central to the solubility and release of P from soil to water. Relationships between P extractable by 0.5 M NaHCO extractable P (Olsen P; quantity, Q) and P extractable by 0.01 M CaCl(2) (CaCl(2)-P; possible predictor of soil solution or drainage water P; intensity, I) are curvilinear: above a certain Olsen P concentration, CaCl(2)-P becomes much more soluble than when below it. Aluminium-, Fe- and Ca-P forms (extractable by Olsen's reagent) are thought to control P solubility. Thus, our objectives were to identify P forms in equilibrium with CaCl(2)-P via solubility equilibrium experiments, and the behaviour of CaCl(2)-P in relation to Al, Fe and Ca associated P, determined with 31P high power decoupling magic angle spinning nuclear magnetic resonance spectroscopy (31P HPDec/MAS NMR). Results indicated that two Q-I relationships occurred, one for soils above pH 5.8, and the other for soils below pH 5.8. Above pH 5.8, soils were saturated with respect to hydroxyapatite (Ca(5)(PO(4))(3)OH) and undersaturated with respect to beta-tricalcium phosphate (beta-Ca(3)(PO(4))(2)), while log ion-activity products showed that all soils and pHs were either saturated or in equilibrium with variscite (AlPO(4).2H(2)O) or its amorphous analogue. Using 31P HPDec/MAS NMR, Ca-P was best correlated with CaCl(2)-P in soils above pH 5.8, and with Al-P in soils below this pH. This study demonstrates the value of solid-state NMR in conjunction with wet chemical techniques for the study of labile P and P loss from pasture soils with a wide range of managements.  相似文献   

16.
The distribution of alkaline phosphatase activity (APA) and P fractions in sediment cores and the relationship between them were studied in a shallow Chinese freshwater lake (Lake Taihu). Sediment cores were collected from four sites, characterized by different degrees of eutrophication in June 2004. Sediment P was fractionated into Fe/Al-P, Ca-P, organic P (OP), inorganic P (IP) and total P (TP). The former two species made the largest contribution to the sediment P pool. Results show that trophic status and hydrological conditions have great impact on the APA of the sediments. The order of the APA in sediments was conjectured to be: macrophyte dominated lake>transitional lake>algal dominated lake. APA profiles follow a similar downcore decreasing trend. There was a positive relationship between the APA and the TP, IP. The multiple linear regression equation of the APA and P fractions is: APA=-97+0.768TP-0.985Fe/Al-P.  相似文献   

17.
赤泥投加控制河道底泥磷释放的影响因素   总被引:1,自引:1,他引:0  
通过对不同赤泥投加比例下河道底泥磷释放作用的研究,发现底泥中铁铝磷与钙磷的比值(Fe/Al-P∶Ca-P)、铁磷比(Fe∶TP)及有机质含量(OM)是赤泥能否应用于河道底泥磷释放控制中的决定性因素。实验结果表明,只有当河道底泥中Fe/Al-P∶Ca-P小于0.88,Fe∶TP小于16.1,且有机质含量低于1.87%时,投加适量赤泥才能起到抑制河道底泥内源磷释放的作用;反之,赤泥的投加则有可能促进底泥内源磷的释放。在实际工程应用中,推荐赤泥与底泥的接触时间不低于7d,从而使赤泥的效能发挥到最佳状态。  相似文献   

18.
Phosphorus (P) surface run-off losses were studied following organic manure applications to land, utilising a purpose-built facility on a sloping site in Herefordshire under arable tillage. Different rates and timing of cattle slurry, farm yard manure (FYM) and inorganic nitrogen (N) and P fertiliser were compared, over a 4-year period (1993-97). N losses from the same studies are reported in a separate paper. The application of cattle FYM and, especially slurry, to the silty clay loam soil increased both particulate and soluble P loss in surface water flow. Losses via subsurface flow (30 cm interflow) were consistently much lower than via surface water movement and were generally unaffected by treatment. Increased application of slurry solids increased all forms of P loss via surface run-off; the results suggested that a threshold for greatly increased risk of P losses via this route, as for N, occurred at ca. 2.5-3.0 t/ha solids loading. This approximates to the 50 m3/ha application rate limit suggested for slurry within UK 'good agricultural practice'. The studies also provided circumstantial evidence of the sealing of the soil surface by slurry solids as the major mechanism by which polluting surface run-off may occur following slurry application on susceptible soils. Losses of total and soluble P, recorded for each of the 4 years of experiments, reached a maximum of only up to 2 kg/ha total P (TP), even after slurry applications initiating run-off. Whilst these losses are insignificant in agronomic terms, peak concentrations of P (up to 30,000 micrograms/l TP) in surface water during a run-off event, could be of considerable concern in sensitive catchments. Losses of slurry P via surface run-off could make a significant contribution to accelerated eutrophication on entry to enclosed waters, particularly when combined with high concentrations of NO3(-)-N. Restricting slurry application rates to those consistent with good agronomic practice, and within the limits specified in existing guidelines on good agricultural practice, offers the simplest and most effective control measure against this potentially important source of diffuse pollution.  相似文献   

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