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1.
氮素作为生态系统功能和过程的重要限制性因子,其平衡和收支研究对于深入理解和分析河流非点源污染具有十分重要的意义。利用野外原位定点采样法,通过测定降水前后岷江中游成都段河流水体中NH4+-N(铵态氮)、NO3--N(硝态氮)和DIN(总无机氮)浓度,分析了氮素污染物特征值在干、湿季节空间分布差异及其影响因素。研究结果表明:(1)NH4+-N、NO3--N和DIN浓度均在10月达到最大值,而NH4+-N和DIN在3月达到最低,NO3--N在4月达到最低,且湿季的NO3—N、DIN含量显著高于干季。(2)NH4+-N含量表现出沙河府河江安河清水河,NO3--N和DIN含量均为府河沙河江安河清水河,且NH4+-N和DIN含量在下游河段出现富集效应。(3)三种形态氮素均与前三个月、前一个月的累计降水量之和成显著的正相关关系,前三个月的累计降水量之和的变化可分别解释NH4+-N、NO3--N和DIN浓度在不同季节77%,98%和89%的差异,前一个月的累计降水量之和的变化可分别解释NH4+-N、NO3--N和DIN浓度在不同季节77%,79%和66%的差异。  相似文献   

2.
2013年1~12月对湖光岩玛珥湖水体的叶绿素a和水质因子进行周年的逐月监测,探讨叶绿素a与水质因子的相关关系,并应用修正的卡尔森营养状态指数(TSI)对该湖泊的营养状态进行分析评价。结果表明,湖光岩玛珥湖水体叶绿素a含量的变化范围为1.08~4.22μg·L-1。氮磷比年均值为20.9,磷为营养限制因子,氮、磷共同限制浮游植物的生长。影响叶绿素a含量的主动因子与叶绿素a之间的Pearson相关系数大小关系为:r(NH4+-N)r(DO)r(NO2--N)r(TP)r(TN)r(NO3--N),其中NH4+-N与叶绿素a含量呈极显著正相关,r(NH4+-N)=0.907,NH4+-N为调控该湖泊浮游植物生长最关键的水质因子。水体TSI值的全年变化范围为34.6~48.0,其中1、2、3月的TSI37,属贫营养型;而其他月份为38TSI53,属中营养型;从全年分布来看,湖光岩玛珥湖属贫-中营养型。  相似文献   

3.
Eutrophication, which is the enrichment of a water mass with inorganic and organic nutrients that support plant growth, is a key factor in stimulating phytoplankton growth. In this study, we determined the effects of various nitrogen sources, different nitrogen concentrations in the culture medium, and two culture methods on the growth of the green alga, Enteromorpha prolifera. The relationship between the specific growth rate of E. prolifera and NO3--N concentration was consistent with that estimated using the Monod equation (R2 = 0.9713, P < 0.01). In the NO3--N medium, the maximum specific growth rate was calculated to be 0.1634/d and the semi-saturation constant was calculated to be 16.86 μmol/L. Our results show that E. prolifera can effectively utilize NH4+-N, NO3--N, and NO2--N and urea-N in the range of 5 to 50 μmol/L. NH4+-N was preferentially assimilated by E. prolifera, and urea-N was favorable for long-term growth.  相似文献   

4.
徐闻珊瑚礁保护区营养盐时空分布特征   总被引:2,自引:1,他引:1  
2006年8月(夏季)、2006年11月(秋季)、2007年2月(冬季)和2007年4月(春季)在徐闻珊瑚礁自然保护区灯楼角至流沙湾近岸海域调查徐闻珊瑚礁保护区的营养盐变化及空间分布特征。结果表明:徐闻珊瑚礁保护区水域溶解态无机氮以NO3--N为主,其含量超过总溶解无机氮的50%;各站点NO2--N含量相对较低,冬季NO3--N和NH4+-N含量均高于其它季节;无机磷含量在0mg/L~0.030mg/L之间变化;活性硅含量表现为夏秋季节高、冬春季节低;表层水体硝酸盐氮/无机磷原子比值(N/P)夏季较低,不存在无机磷受限情况,而冬季N/P整体较高,此时水体主要受无机磷限制。  相似文献   

5.
在实验室条件下研究半叶马尾藻对不同浓度N、P以及不同化合态N的吸收速率。结果显示:不同浓度N、P下,半叶马尾藻对N、P的吸收速率差异有统计学意义(P0.05);半叶马尾藻对N、P的吸收速率随N、P浓度的升高而增加,最大吸收速率出现在N为200μmol/L、P为20μmol/L时,分别为2.397和0.229μmol·g-1·h-1;不同氮磷比条件下,半叶马尾藻对N、P的最大吸收速率出现在氮磷比为10时,在氮磷比为1~30范围内,氮磷比对半叶马尾藻吸收N、P速率的影响有统计学意义(P0.05);不同化合态N对半叶马尾藻吸收N、P速率的影响有统计学意义(P0.05),当NH4+-N和NO3--N共存时,半叶马尾藻对这2种化合态氮可同时吸收利用,各处理组间,对总无机N的吸收速率差异有统计学意义(P0.05),在c(NO3--N)/c(NH4+-N)为2∶1和1∶2处有两个峰值,分别为2.036、1.862μmol·g-1·h-1,对P的最大吸收速率均出现在c(NO3--N)/c(NH4+-N)值为2∶1时,为0.206μmol·g-1·h-1。因此,在粤西沿海半叶马尾藻在消除养殖水域营养盐、防治海水富营养化方面有很大优势。  相似文献   

6.
利用2008~2011年共6个航次调查数据,对雷州半岛近岸海域关键水质环境因子进行时空分析,并采用富营养指数法对该海域水质环境进行了评价,结果表明:该海域近几年COD、PO4-P、NO2-N、NO3-N、NH4-N、石油类、叶绿素浓度等关键水质因子的均值变化范围分别为0.61~1.71 mg/L、0.01~0.04 mg/L、0.004~0.05 mg/L、0.05~0.21 mg/L、0.02~0.20 mg/L、0.01~0.60 mg/L、1.16~3.17μg/L。该海域COD、石油类污染程度较低,而PO4-P、无机氮污染程度高、污染风险大。半岛东部海域污染程度高于西部海域,尤其是湛江港、雷州湾及半岛东北海域呈高富营养化水平。  相似文献   

7.
Sediments and surface water were sampled in a tide flat in the Huiquan Bay, Qingdao, China in January 2004 to simulate the exchange of NH4-N/NO3-N/PO4^3- between sediments and surface water. A working system was designed with which samples were shaken at 60, 120 and 150 revolutions per minute (r/min). Experiment results show that NH4-N concentration in water at shaking rate of 60 r/min decreased gradually, while at 120 r/min increased gradually. In resuspension, fine-grained sediments contributed most NH4-N to the seawater, followed by medium-grained and coarse-grained sediments. The NO3-N concentration in water had a negative relation with the shaking rate; the medium-grained sediments contributed more NO3-N to seawater than the coarse- and fine-grained sediments. The PO4^3- concentration is positively related with the shaking rate, the fine-grained sediments were the main N and P contributor to the seawater, followed by medium- and coarse-grained sediments.  相似文献   

8.
Water samples were collected at 20 sites on 4 occasions in 2009(twice in May,and once in both August and November) along the Jiulong River,South China to examine how nutrient inputs from the Jiulong River could affect the nutrient status of the Xiamen Water.Samples were analyzed for nitrite(NO2-N),nitrate(NO3-N),ammonium(NH4-N),phosphate(PO4-P),silicate(SiO3-Si),salinity,and temperature,to determine the nutrient and trophic status of the river.The results indicate that nutrients are derived mainly from river runoff.NO3-N was the main form of DIN in most parts of the river.In addition,NO3-N,DIN,and SiO3-Si behave conservatively.There is a surplus of DIN and SiO3-Si in the river,and PO4-P is a limitation on phytoplankton growth.The concentration of DIN is typically above 0.60 mg/dm3,and higher than 1.00 mg/dm3in most parts of the river.The concentration of PO4-P is typically above 0.02 mg/dm3,while the concentration of SiO3-Si is higher than 1.00 mg/dm3.Between 2003 and 2008,samples were collected 3 times per year(May,August and November) at 27 sites in the Xiamen Water and analyzed for NO2-N,NO3-N,NH4-N,PO4-P,salinity,and temperature.We discovered that the Jiulong River was the key source of DIN into the Xiamen Water,but not PO4-P,indicating the reason of the N/P molar ratio imbalance in the Xiamen Water.In the future,the effects of high DIN concentrations on the phytoplankton communities and marine ecosystems of the Xiamen Water shall be studied.  相似文献   

9.
Sediments and surface water were sampled in a tide flat in the Huiquan Bay, Qingdao, China in January 2004 to simulate the exchange of NH4-N/NO3-N/ PO 43- between sediments and surface water. A working system was designed with which samples were shaken at 60, 120 and 150 revolutions per minute (r/min). Experiment results show that NH4-N concentration in water at shaking rate of 60r/min decreased gradually, while at 120r/min increased gradually. In resuspension, fine-grained sediments contributed most NH4-N to the seawater, followed by medium-grained and coarse-grained sediments. The NO3-N concentration in water had a negative relation with the shaking rate; the medium-grained sediments contributed more NO3-N to seawater than the coarse-and fine-grained sediments. The PO 43- concentration is positively related with the shaking rate, the fine-grained sediments were the main N and P contributor to the seawater, followed by medium-and coarse-grained sediments.  相似文献   

10.
着重研究了红海湾养殖区底质水中 NO-3 -N、NO-2 -N、NH 4-N、PO3 -4 -P、有机质及 c( NO-3 -N) /c P 和 ∑c N/c P( ∑c N=c( NO-2 ) c( NO-3 ) c( NH 4) )比值的分布特征 ,并对该湾低质水中氮、磷及有机质的季节变化及其它们之间的相互关系作了讨论 ,结果表明 :在春、夏、冬三个季节中 ,NH 4-N的浓度比NO-2 -N及 NO-3 -N高 ,春季 NH 4-N的平均浓度为 92 .60 μm ol/L,占总无机氮 80 .57% ;夏季浓度为4 7.0 4μmol/L ,占总无机氮 61 .64 % ;冬季 NH 4-N的浓度最低 ,为 9.60μmol/L ,占总无机氮 4 5.76% ;而夏季 PO3 -4 -P浓度及有机质的含量比春、冬季高 ,分别为 53 .68μm ol/L和 1 .3 62 %。分析指出该湾底质水中无机氮是以 NH 4-N为主要存在形态。  相似文献   

11.
The purification law of nitrogen in Deyeuxia angustifolia,Carex lasiocarpa and Deyeuxia angustifo-lia-Carex lasiocarpa combined wetland systems in the Sanjiang Plain,China was studied by field simulation experi-ment.The results indicate that the removal rates of TN,NH4+-N and NO3--N in above three types of wetlands present an obvious logarithm growth trend along with the time.There are evident removal effects for NH4+-N and NO3--N in water bodies of wetlands after the 30th day of experiment,with the removal rates over 80.0%,but the removal rate of TN is slightly low,being 63.1%-74.3%.NO3--N is most quickly removed by the combined wetland,and NH4+-N by Deyeuxia angustifolia wetland.The removal speeds of TN by the three wetland systems are comparatively slow,of which the Deyeuxia angustifolia wetland is the fastest.In consideration of plant growth season,Deyeuxia angustifolia wetland has much more practical application value in purifying nitrogen.These results can provide references for the study on the purification function of wetlands and the control of non-point source pollution in Northeast China.  相似文献   

12.
甘肃黄土高原作物生长期土壤干旱及气候生产力特征分析   总被引:5,自引:0,他引:5  
分析了近40年甘肃黄土高原区域作物生长期土壤干旱和气候生产力特征,结果表明:(1) 土壤干旱和气候生产力在空间上表现为全区一致,区域内相关性很好.(2) 时间演变规律上,土壤干旱有加重的趋势、气候生产力呈下降的趋势.(3) 土壤干旱和气候生产力变化阶段性明显,年际变化具有3~5a的振荡,4a周期最为明显.  相似文献   

13.
To evaluate the influence of wetland reclamation on vertical distribution of carbon and nitrogen in coastal wetland soils, we measured the soil organic carbon(SOC), soil total nitrogen(STN) and selected soil properties at five sampling plots(reed marsh, paddy field, corn field, forest land and oil-polluted wetland) in the Liaohe River estuary in September 2013. The results showed that reclamation significantly changed the contents of SOC and STN in the Liaohe River estuary(P 0.001). The SOC concentrations were in the order: oil-polluted wetland corn field paddy field forest land reed marsh, with mean values of 52.17, 13.14, 11.46, 6.44 and 6.16 g/kg, respectively. STN followed a similar order as SOC, with mean values of 1351.14, 741.04, 632.32, 496.17 and 390.90 mg/kg, respectively. Interaction of reclamation types and soil depth had significant effects on SOC and STN, while soil depth had significant effects on SOC, but not on STN. The contents of SOC and STN were negatively correlated with pH and redox potential(Eh) in reed marsh and corn field, while the SOC and STN in paddy field had positive correlations with electrical conductivity(EC). Dissolved organic carbon(DOC), ammonium nitrogen(NH_4~+-N) and nitrate nitrogen(NO_3~–-N) were also significantly changed by human activities. NH_4~+-N and NO_3~–-N increased to different degrees, and forest land had the highest NO_3~–-N concentration and lowest DOC concentration, which could have been caused by differences in soil aeration and fertilization. Overall, the results indicate that reed harvest increased soil carbon and nitrogen release in the Liaohe River Estuary, while oil pollution significantly increased the SOC and STN; however, these cannot be used as indicators of soil fertility and quality because of the serious oil pollution.  相似文献   

14.
测试了由紫外线杀菌器、臭氧发生器、蛋白质分离器和生物过滤器4部分构成7种不同组合的水处理系统的水处理效果,探讨了各部分在水处理中的作用。结果表明,开启整套系统对砂滤水三次处理时,系统对NH4+-N、NO2--N、普通细菌、弧菌去除作用明显,去除率分别为41.92%、53.58%、94.59%和100%,且能明显增加水体溶解氧含量,对pH的影响不明显。  相似文献   

15.
利用有益微生物改善养殖生态环境的研究   总被引:1,自引:0,他引:1  
研究了噬菌蛭弧菌在实验室条件下对水产养殖中常见病菌的裂解能力及噬菌蛭弧菌和光合细菌对池塘生态环境的改善作用。结果表明 ,噬菌蛭菌对嗜水气单胞菌具有裂解作用 ,噬菌蛭弧菌和光合细菌结合使用对养殖环境具有明显的改善作用。 2 5d后实验组比对照组池塘中的细菌总数少 2个数量级 ,70d后实验组比对照组池塘中的细菌总数少 3个数量级 ;2 5d后对照组COD为 6 35mg L ,使用噬菌蛭弧菌浓度为 3、5、1 0mL m3 及光合细菌皆为 5mL m3 实验组的COD分别为 4 6 7、4 1 6、4 1 8mg L ;2 5d后对照组NH3 N为 0 4 9mg L ,使用噬菌蛭弧菌浓度为 3、5、1 0mL m3 及光合细菌皆为 5mL m3 实验组的NH3 N分别为 0 36、0 33、0 32mg L ,90d后对照组NH3 N为 0 4 1mg L ,使用噬菌蛭弧菌浓度为 3、5、1 0mL m3 及光合细菌皆为 5mL m3 实验组的NH3 N分别为 0 2 7、0 2 2、0 2 1mg L ;5 5d后对照组硫化物为0 0 1 1mg L ,使用噬菌蛭弧菌浓度为 3、5、1 0mL m3 及光合细菌皆为 5mL m3 实验组的硫化物分别为0 0 1 0、0 0 0 8、0 0 0 8mg L。  相似文献   

16.
本文比较了基于AMSR-E被动微波数据的3种土壤冻融判别算法在青藏高原相关地区的分类精度。3种算法分别是:双指标算法、决策树算法、判别函数算法。本文选取了来自青藏高原那曲、玛曲、阿里3个地区土壤温湿度观测网的地表温度数据,并结合AMSR-E被动亮温数据,对上述算法在以上地区的分类精度分别进行了比较评价。结果表明:不论是白天还是夜间,相较于干旱区微波信号来自深层土壤的难以准确探测,在青藏高原半湿润半干旱区算法可取得相对较好的判别准确率;双指标算法相较于其他2种算法,在观测区具有较高的分类精度,且夜间分类精度高于白天;实测数据存在资料代表性不普遍即网格所包含站点信息量不够的问题,这也是后续工作中提高分类精度值得关注的着手点。  相似文献   

17.
Gully erosion has caused soil degradation and even reduced soil productivity.However,only few studies on the effects of gully erosion and artificial controlling measures on soil degradation in the Black Soil Region of Northeast China are available.Thus,this study explores the relationships between gully erosion,gully filling and soil parameters.Two sets of soil samples were collected in the field at:(1) 72 sample points in the gully erosion study area,60 sample points in the ephemeral and classical gully erosion area(3,518 m2),12 sample points in the deposition zone(443 m2),(2)10 reference points along a slope unaffected by gully erosion representing the original situation before the gully was formed.All soil samples were analyzed for gravel content(GC),soil organic matter(SOM),total nitrogen(TN),available nitrogen(AN),available phosphorus(AP),and available potassium(AK).The soil property values on unaffected slope were fitted by the polynomial curves as the reference values in no gully erosion area.The interpolated soil property values in gully eroded study area were compared with these polynomial curves,respectively,and then,changes of soil property values were analyzed.Gully erosion caused an increase in GC and a decrease in SOM,TN,AN,AP and AK.The change of GC,SOM,TN,AN,AP,AK was 8.8%,-9.04 g kg-1,-0.92 g kg-1,-62.28 mg kg-1,-29.61 mg kg-1,-79.68 mg kg-1.The soil property values in the study area were below optimal values.Thus,we concluded that gully erosion and gully filling caused both on-site and off-site soil degradation.Soil degradation area was 0.65 % of the cultivated land.In addition,it was proved that gully filling were an improper soil and water conservation measure,which seems to exacerbate the problem.Thus,it is suggested that soil where soil is deep is moved to fill the gully,and then the area around the filled gullies should be covered by grass for preventing the formation and development of the gully.  相似文献   

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