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1.
对太湖流域长兴县浅层地下水的氮污染进行了系统的调查与研究,共取地下水样43个并测定了其三氮含量.结果表明氨氮、硝酸盐和亚硝酸盐的超标率分别为13.95%、16.27%和16.27%.三氮污染最严重的地区主要为农业活动集中区,即夹浦镇、小浦镇、洪桥镇和虹星桥镇等,其中虹星桥镇硝酸盐污染最为严重,高达22mg/L.采用地质统计学方法对太湖流域长兴县43个浅层地下水样“三氮”含量进行了区域空间变异分析,结果表明长兴县地下水NO3-N和NO2-N浓度变异函数满足球状模型,而NH3-N浓度变异函数为高斯模型,硝酸盐氮、亚硝酸盐氮和氨氮浓度的空间自相关距离分别为9.98、1.51和3.82kmn.对硝酸盐污染因素进行了分析,结果表明:硝酸盐浓度与氮肥使用量呈明显正相关关系,年平均施肥量(以N计)为300kg/ha地区平均硝酸盐氮浓度达6.7mg/L,年平均施肥量(以N计)为100kg/ha地区平均硝酸盐氮浓度为2.2mg/L;地下水硝酸盐与地下水位埋深有直接关系,埋深较浅(1~3m)地区的硝酸盐浓度较高;当土地利用类型相同时,硝酸盐氮浓度与人口密度具有线性正相关关系.  相似文献   

2.
湖泊在夏季由于藻类生长而消耗大量硝酸盐,水体硝酸盐含量一般要低于春季。而红枫湖南湖水体硝酸盐含量却高于春季(比平均含量高0.83mg/L),说明尚有其他重要的硝酸盐来源。据估算,南湖水体硝酸盐含量升高0.83mg/L约需要1.66×105kg硝酸盐,另外有约10.1×105kg硝酸盐随下泻水输出南湖,再加上夏季藻类生长(生产的chla量约为640kg)所消耗的硝酸盐3.52×105kg,共消耗硝酸盐15.28×105kg。扣除河流输入的4.42×105kg硝酸盐,南湖尚存在约10.86×105kg硝酸盐的亏空。利用氮稳定同位素示踪技术,结合硝酸盐及叶绿素a(chla)含量、溶解氧(DO)等的变化,认为这部分硝酸盐来自湖泊中下部(斜温层)有机质的大量矿化(硝化),是水动力驱动高DO的上部水体下沉从而引起下部有机质(硝化)的结果。南湖这种强水动力湖泊整个夏季分层期氮的生物地球化学循环是斜温层有机质矿化(硝化)释放硝酸盐和变温层藻类生长同化硝酸盐为有机质同时发生的特殊类型。  相似文献   

3.
为研究龙滩水库枯水期溶解态氮、磷营养元素的空间分布特征,在龙滩水库枯水期(2017年1月份)进行分层采样,现场测定水体理化性质及实验室分析水中营养盐浓度。结果表明:龙滩水库水温出现明显垂直分层:0~10m为温跃层;10~60m为混合层;60m以下为底温层;pH值为7.63~7.92,水体呈弱碱性。溶解无机氮(DIN)平均浓度为4.75mg/L。水体溶解性氨氮、硝态氮、亚硝态氮平均值为0.07mg/L、2.62mg/L、2.05mg/L,分别占DIN的1.6%、55.2%、43.2%,硝态氮、亚硝态氮是组成龙滩水库溶解无机氮的主要成分。磷酸盐平均浓度为0.04mg/L。参照潜在性富营养化评价标准,N/P(质量比)比值为73.84,说明龙滩水库枯水期属于磷限制潜在性富营养状态,营养状态空间分布特征:坝前水体双江口红水河镇小马场。  相似文献   

4.
张逢甲  姚祯业 《水文》1989,(3):8-14
本文介绍有机氮、氨氮、亚硝酸盐氮和硝酸盐氮在细菌和水生物的作用下,因水体中溶解氧含量不同而互相转化,并由此建立了一元稳态顺序转化与逆向反应和溶解氧两者耦合的水质数学模型,同时用迭代法求出各反应率参数,经实测资料验证,成果精度达到基本要求,可在实际工作中应用。  相似文献   

5.
密云水库水体的地球化学特征   总被引:16,自引:3,他引:16       下载免费PDF全文
研究了密云水库在2001年一个完整水文年的水体地球化学特征。结果表明:该水库水质清澈,透明度平均为2.54m,pH平均值为8.81;水中溶解氧丰富,平均为6.98mg/L;有机物耗氧量平均为2.07mg/L;平均矿化度为246.97mg/L,水型属重碳酸盐类、钙组Ⅱ型水(CⅡ^Ca)。水体中的主要生物营养元素氮含量较高,总氮平均为0.96mg/L,磷含量较低,总磷平均为0.025mg/L。水库氮、磷浓度比为38.4:1,显示磷为该水体生物生产力的主要限制性营养元素。水体中重金属铬、镍的含量变化特征反映了原始老变质基岩成分的有关特点;而重金属铁、杨、铅、汞、砷的含量变化规律则显示密云水库水体已受到上游流域工业活动的影响。  相似文献   

6.
水体中三氮转化规律及影响因素研究   总被引:6,自引:0,他引:6  
以城市污染水体为对象,研究了水体中氨氮(NH3-N)、亚硝酸盐氮(NO3^--N)、硝酸盐氮(NO3^-N)的转化及去除规律。结果表明,温度对水体中三氮(氨氮、亚硝酸盐氮、硝酸盐氮)的去除具有重要的影响,在夏季实验中三氮的转化及去除速率明显高于冬季;而在温度相似的情况下,光照则成为影响三氮转化去除速率的决定因素,还发现,在黑暗条件下,水体中亚硝酸盐氮、硝酸盐氮出现明显的累积现象,而在光照情况下则没有。由此推断,在光照条件下藻类生物的同化作用在三氮转化和去除中起了主要作用,藻类生物同化导致的三氮转化和去除速率明显高于硝化-反硝化过程。  相似文献   

7.
计算小流域非点源氮素流失负荷,并以此开展丹江水源区水体污染源解析和控制研究。基于流域断面及小区监测试验,利用平均浓度法对鹦鹉沟流域氮素年均流失模数和不同土地利用类型的非点源污染负荷进行计算分析。结果表明:径流水质中主要是总氮质量浓度超标,且硝氮质量浓度均大于氨氮质量浓度;当坡耕地坡度大于25°时,氮素流失严重,水质极差;农村生产生活污染物排放对水质有很大影响,从断面1到把口站,硝氮质量浓度和总氮质量浓度增加较大;农地、草地和林地的总氮年均径流流失模数分别为0.36、0.22和0.09t/(a·km2);流域出口非点源污染物氨氮、硝氮和总氮的平均质量浓度分别为0.17,4.71和7.55mg/L,点源污染物氨氮、硝氮和总氮的平均质量浓度分别为0.20、2.12和4.08mg/L。总体来说,鹦鹉沟流域径流中总氮的流失模数为0.89t/(a·km2),总氮是影响水质的主要污染物,需加强对坡耕地氮素流失和农村生活垃圾的治理。  相似文献   

8.
城市重污染河道环境因子对底质氮释放影响   总被引:7,自引:0,他引:7       下载免费PDF全文
以苏州市古城区劣Ⅴ类水体为研究对象,利用模拟试验方法,研究和探讨了水体环境条件(DO、Eh、pH值、温度)变化和疏浚深度对河道底泥氮释放的影响.底泥供试样中NH4+-N与NO3--N含量一般为0.277 g/kg与0.0012g/kg,上覆水体NH4+-N与NO3--N含量一般为6.743 mg/L与1.500 mg/L.试验结果表明:厌氧环境(DO<0.5 mg/L)、强还原环境(Eh<-108 mV)、酸性环境(pH<6.0)及温度升高均有利于底泥中NH4+-N的释放,NO3--N的迁移转化规律则相反;供试样控制疏浚深度5 cm、10 cm、15 cm、20 cm,当疏浚深度15 cm时,泥-水界面向上覆水体中扩散的氮通量最小;疏浚深度、DO和Eh对底泥NH4+-N释放程度的影响大于pH和温度,通过曝气等方式保持水体中适当的溶解氧或使底泥保持较强的氧化电位环境可以有效抑制底泥中NH4+-N的释放.  相似文献   

9.
韩彬  林法祥  丁宇  陈发荣  高伟  李倩  郑立 《岩矿测试》2019,38(4):429-437
随着我国沿海经济的快速发展,人类活动强度不断加剧,对海洋生态系统的干扰和破坏不断加剧。为了解海州湾近岸海域水质状况,本文于2016年4月、9月对海州湾近岸海域表层海水的温度、盐度、pH值、悬浮物(SS)、溶解氧(DO)、化学需氧量(CODMn)、亚硝酸盐(NO2--N)、硝酸盐(NO3--N)、铵氮(NH4+-N)、活性磷酸盐(PO34--P)、铜、铅、锌、镉、石油类等指标进行了两次采样调查,应用分光光度法和ICP-MS等技术分析各指标;应用单因子法、富营养化指数法和有机污染指数法对该海域海水的质量状况进行了评价分析,以期为研究区环境预警、环境管理和保护提供依据。结果表明:研究海域表层海水中CODMn在4月均值为1. 34mg/L,9月为1. 22mg/L;石油类4月均值为0. 031mg/L,9月为0. 034mg/L;活性磷酸盐4月均值为0. 013mg/L,9月为0. 012mg/L;溶解无机氮4月均值为0. 34mg/L,9月为0. 16mg/L; CODMn、石油类、活性磷酸盐、溶解无机氮的质量浓度大致呈现出由西南部向东北部海域降低的趋势,且无机氮总体浓度水平较高,为该海域主要的污染物。根据营养化评价模式和有机污染指数计算结果,本研究认为海州湾近岸海域表层水质总体营养水平较高,处于氮限制的潜在性富营养水平,有机污染程度属于Ⅱ级,水质已受到污染。  相似文献   

10.
达则错位于班怒构造带的次级盆地中,湖水最深为36 m,平均深度为20.8 m。湖表水体矿化度17.27~20.27 g/L,平均为19.46 g/L,水化学类型为(CO3+HCO3)·SO4-Na型,属弱度碳酸盐型咸水湖;在垂向上,由浅及深矿化度略有增加,水化学类型不变。湖表水体铀浓度264~324μg/L,平均铀浓度为286μg/L,8 m、18 m和28 m深度铀浓度平均值分别为288μg/L、290μg/L和300μg/L。湖底沉积物铀含量为2.31~4.08μg/g,平均铀含量为3.16μg/g,略高于我国东海大陆架海底沉积物的铀含量。达则错湖水的铀元素来自于周边岩体和地层,通过河水迁移到湖泊中。在河口混合带,铀酰离子部分吸附于悬浮物上,到湖区以碳酸铀酰的形式存在于水体中,沉淀于湖底的悬浮物铀含量没有明显增加。  相似文献   

11.
漓江桂林市区段三氮分布特征及影响因素分析   总被引:2,自引:0,他引:2  
文章为确定漓江桂林市区段三氮含量的变化趋势及其影响因素,分丰水期和枯水期在漓江干流及其支流上选择7个断面分别进行了取样,通过现场水化学指标和室内化验,对研究区三氮含量的时空分布特征和影响因素进行了探讨。分析结果表明:研究区漓江干流上C(NH3-N)和C(NO3--N)的最高值分别为0.248 3mg/L和2.251 7 mg/L,满足地表水环境质量Ⅱ类水标准,但漓江在经过研究区后三氮含量呈升高趋势;三氮含量的季节分布特征为NH3-N和NO3--N含量枯水期明显高于丰水期,而NO2--N含量枯水期略低于丰水期,丰枯季节水温的变化会影响总无机氮(TIN)中各种形态氮含量的比例,使得C(NH3-N)/ C(TIN)由丰水期的4.83%提高到枯水期的6.69%;流经农村生活区和农业地区的桃花江和小东江等支流是区内NH3-N的主要污染源,降雨后NH3-N的含量会明显升高。因此,加强区内漓江支流的综合治理、开展降雨条件下饮用水水源地取水口NH3-N含量的实时监测非常必要。   相似文献   

12.
The amount of nitrogen present as ammonia, nitrate, nitrite, dissolved organic nitrogen, and particulate nitrogen was determined for nearshore Georgia shelf waters and for tidal water inundating a 0.5 hectare dikedSpartina alterniflora salt marsh in the adjacent estuary. Concentrations of ammonia, nitrate, and nitrite were comparatively low in offshore water (<2.2 μg-at N/1), and in high tide water in the marsh (<9.9 μg-at N/1). High concentrations of ammonia, up to 73.4 μg-at N/1, were measured in low tide water draining from marsh. The largest pools of nitrogen in offshore water and in high tide water in the marsh creek were dissolved organic nitrogen (DON) (2.5 to 20.4 μg-at N/1) and particulate nitrogen (PN) (0.1 to 30.0 μg-at N/1). Concentrations in marsh creek water at low tide were higher, ranging from 4.4 to 38.0 μg-at N/1 for DON and from 13.0 to 239.0 μg-at N/1 for PN. Comparisons of the average concentrations of dissolved and particulate forms of nitrogen in the marsh tidal creek during flood and during ebb tide suggested no net movement of the inorganic nitrogen nutrients, a net influx of PN to the marsh, and a net outflux of DON from the marsh.  相似文献   

13.
The Omerli reservoir is located on the northeastern side of the Istanbul City. It is one of the most important sources of drinking water with a surface area of 23.1 km2 and a volume of 220 × 106 m3 in the Marmara Region. Water quality characteristics of the lake investigated from May 2002 to April 2003 enabled us to identify the effect of waste loads on water quality of Omerli Lake. The following parameters were measured in the lake water: temperature (16.1°C), conductivity (250 μS/cm), secchi disk depth (1.9 m), dissolved oxygen (DO) (9.36 mg/L), nutrients [ortho-phosphate (78.9 μg/L), nitrate + nitrite (707.5 μg/L) and ammonia-nitrogen (264 μg/L)], chlorophyll a (9.43 μg/L), total organic carbon (3.33 mg/L), total suspended solids (4.54 mg/L), total poly aromatic hydrocarbon (t-PAH) (0.69 μg/L) and copper (24.5 μg/L). T-PAH (16.5 mg/g-dry-w), Cu (96.5 μg/g-dry-w), organic carbon (org-C) (2.0%) and N (0.44%) were determined in the surface sediment. The values of chlorophyll a and DO in the upper layer were relatively high and low secchi disk depths indicates eutrophic state. There are five channels discharging water, including waste water, into the lake. All channels were sampled during six occasions in order to cover variations between seasons. The following parameters were measured: total organic carbon, total phosphorus, total kjeldahl nitrogen, ammonia and total suspended solids with the flow rates. The Göçbeyli stream has the highest flow into the lake (1.5 × 108 m3/year) but most of the nutrients were discharged from the Pa?aköy channel. It is accounting for 81% of ammonia and 80% of total phosphorus into the lake. Three scenarios were run using AQUATOX model: (1) all existing inflows are discharging into the lake (present situation); (2) none is discharging; (3) all are discharging except the Pa?aköy channel. The first scenario produced concentrations consistent with measurements in the lake. In all stations, a phytoplankton peak value was predicted during November and December 2002, and January 2003. In the second scenario, as expected, a significant decrease in the concentrations was predicted. In the third scenario, a small improvement in the water quality was obtained. To significantly improve the state of the lake, instead of entering Pa?aköy channel, wastewater should bypass the lake.  相似文献   

14.
The qualities of the treated final effluents of a wastewater treatment plant located in a rural community of the Eastern Cape Province of South Africa were assessed over the duration of 12 months. Parameters measured include pH, temperature, electrical conductivity, salinity, turbidity, total dissolved solid, dissolved oxygen, chemical oxygen demand, nitrate, nitrite and orthophosphate levels and these were simultaneously monitored in the treated final effluents and the receiving watersheds using standard methods. Unacceptably, high levels of the assayed parameters were observed in many cases for chemical oxygen demand (7.5–248.5 mg/L), nitrate (1.82–13.14 mg/L), nitrite (0.09–1.3 mg/L), orthophosphate (0.07–4.81 mg/L), dissolved oxygen (4.15–11.22 mg/L) and turbidity (3.68–159.06 NTU) during the study period and are severally outside the compliance levels of the South African Guidelines and World Health Organization tolerance limits for effluents intended for discharge through public sewers into receiving watersheds. The study has revealed that there was an adverse impact on the physico-chemical characteristics of the receiving watershed as a result of the discharge of inadequately treated effluents from the wastewater treatment facility. This poses a health risk to several rural communities which rely on the receiving water bodies primarily as their sources of domestic water. There is need for the intervention of appropriate regulatory agencies to ensure production of high quality treated final effluents by wastewater treatment facilities in rural communities of South Africa.  相似文献   

15.
为了研究湿地香蒲种群对不同水深环境的生态响应规律和特征,分别于2018-06-30,2018-07-30,2018-08-29,2018-09-28进行野外采样,通过调查和室内化学分析,探讨了7个不同淹水深度下香蒲种群生长指标、水质因子和底泥因子的变化情况。结果表明:在不同淹水深度下,香蒲的生长指标差异显著,当淹水深度为50 cm时,香蒲的生长状态最优;4个采样日石佛寺水库水样大体呈弱碱性,底泥类型为中性偏酸性;随着淹水深度的增加,水样中的溶解氧(DO)、硝态氮(NO3-)和亚硝态氮(NO2-)质量浓度逐渐减小,总氮(TN)和氨氮(NH4+)质量浓度增大,底泥中氨氮(NH4+)和有机碳(SOC)质量分数总体增大,总氮(TN)、硝态氮(NO3-)和亚硝态氮(NO2-)质量分数逐渐减小,电导率总体逐渐降低,总磷(TP)和速效磷(AP)的质量分数基本呈波动状态。底泥和水体中氮元素的含有量对香蒲的生长影响较大。  相似文献   

16.
The degree and the contribution of each point source to the pollution were determined in the Izmit Bay during the period 1999–2000. During 8 campaigns, samples from 11 points in the channels and water samples from 5 points in the coastal sea were collected for chemical analysis. The important pollutant parameters taken into account are inflow of total organic carbon (TOC), total suspended solids (TSS), total phosphorus (TP), total nitrogen (TN), nitrate, ortho-phosphate, ammonia and total polycyclic aromatic hydrocarbons (t-PAHs) in the discharge channels, and TOC, TSS, nitrate, ortho-phosphate, chlorophyll-a, temperature, dissolved oxygen (DO), and salinity in the coastal stations of the Bay. It should be pointed out that the industrial wastewaters entering the bay are partially treated but domestic wastes are discharged directly into the surface waters without any treatment. Of the pollution parameters measured in the channels, the highest concentrations, except TP, were observed in the Dil River and in the Eastern Channel. Concentrations of TOC, TSS, TN, TP, ammonia, nitrate and o-phosphate were found at concentrations of 231, 290, 152, 3.8, 16, 79, and 3.07 mg/L, respectively. Annual inflows of TOC were 21,301, 580, and 775 t/year and for TSS were 26,742, 585, and 1505 t/year in the western, central and eastern parts, respectively. The results show that the water quality of the bay has been deteriorated and 80% of the pollution was caused by Dil River for all parameters measured.  相似文献   

17.
在青海海北高寒矮嵩草草甸设置封育禁牧(CK)、轻牧(LG)、中牧(MG)和重牧(HG)放牧梯度试验样地, 进行了土壤速效氮变化特征及影响因素的分析. 结果表明: 植物生长期的5-9月, 土壤NH4+-N、NO3--N和速效氮(NH4+-N和NO3--N之和)含量季节变化明显, 基本表现为植物生长初期高, 末期低. CK、LG、MG和HG条件下, 5-9月0~40 cm土壤NH4+-N平均含量分别为17.62 mg·kg-1、17.84 mg·kg-1、18.63 mg·kg-1和16.67 mg·kg-1, NO3--N平均含量为8.91 mg·kg-1、8.23 mg·kg-1、7.99 mg·kg-1和7.94 mg·kg-1, 速效氮平均含量为26.53 mg·kg-1、26.07 mg·kg-1、26.62 mg·kg-1和24.61 mg·kg-1, 基本表现出随放牧强度增大而降低. 土壤速效氮月际变化与地上绿体生物量具有一定的负相关关系, 表明地上生物量越大, 消耗土壤速效氮越趋明显; 与枯落物有一定的正相关关系, 与地下生物量关系不甚明显, 与湿沉降呈现负的相关性. 土壤NH4+-N含量与土壤有机碳有负相关关系, 而NO3--N含量与有机碳相关性差, 表明土壤有机碳越高, 土壤NH4+-N消耗越明显.  相似文献   

18.
选择长江中下游49个湖泊进行不同季节的水体溶解无机氮(DIN)、总氮(TN)、总磷(TP),溶解性无机磷(DIP)以及叶绿素a(Chla)等环境参数分析,开展不同营养水平湖泊水体环境变化特征及生物响应机制研究。结果表明:DIN、TN/TP随TP的变化规律反映了不同营养水平和季节下地球化学作用的影响;氨氮(NH4-N)、TP、DIP、Chla尤其是NH4-N的季节性变化规律与营养水平关系密切;TP<0.05 mg/L时,NH4-N随总磷升高的趋势夏季大于其他季节,TN/TP与硝态氮(NO3-N)、TN相关性好,营养源组成和氨化作用是主要影响因素;0.05 mg/L4-N随总磷升高的趋势基本相同,TN/TP与亚硝态氮(NO2-N)、NO3-N、TN相关好,水生植物利用、氨化和反硝化作用是主要影响因素。TP>0.1 mg/L,冬季NH4-N随总磷升高的趋势明显大于其他季节,TN/TP在冬季和春季与TN、NO3-N相关性好,夏季和秋季与TP相关性好,其主要原因在于夏季和秋季水生植物对DIN的利用量、反硝化作用和湖泊内源释放的显著增强。  相似文献   

19.
Hydrochemical and water-quality (except biological) data obtained through a two-year sampling and analysis program indicate that the highest concentrations of groundwater pollution occur in the central and eastern parts of Eski?ehir city. Groundwater quality degradation outside the urban area results from agricultural activities. The most serious pollution of groundwater in the Eski?ehir plain is from nitrogen compounds (ammonia, nitrite, and nitrate). The concentrations of ammonia, nitrite, and nitrate of the 51 surveyed water wells range from 0.01–1.65 mg/L, 0.01–1.80 mg/L, and 1.1–257.0 mg/L, respectively. Orthophosphate concentrations in groundwater range from 0.01–1.25 mg/L. Considerable seasonal fluctuation in the groundwater quality was observed. In general, the groundwater quality in wet seasons was better than the quality in dry seasons.  相似文献   

20.
Analyses for dissolved oxygen, nitrate and total CO2 in the interstitial water have been combined with solid phase sediment analyses of carbon and nitrogen to calculate the rates of reaction and stoichiometry of decomposing organic matter in central Equatorial Pacific pelagic sediments. The diagenesis is dominated by aerobic respiration and nitrification.Organic carbon and total nitrogen decrease exponentially with depth in both red clay and carbonate ooze sediments. In addition, there is a correlation between surface organic carbon and total nitrogen with distance from the equator. Fixed NH4 is relatively constant with depth and constitutes 12 to 64% of the total nitrogen. The remainder is considered to be organic nitrogen.The CN ratio of the decomposing organic matter was obtained using three approaches. Using the correlations of organic carbon with total nitrogen or organic nitrogen the molar ratios varied from 3.4 to 18.1. The average of all stations was 12.6 using total nitrogen and 13.7 using organic nitrogen. The Redfield ratio is 6.6. Approaches using interstitial water chemistry gave lower ratios. The average value using correlations between dissolved oxygen and nitrate was 8.1. The same approach using total CO2 and nitrate gave an average of 9.1. Due to difficulties in unambiguously interpreting the solid phase data we favor the ratios obtained from the pore water analyses.The rate of organic matter decomposition can be obtained from model calculations using the dissolved oxygen and solid organic carbon data. Most gradients occur in the upper 10 to 20 cm of the sediments. Assuming that bioturbation is more important than sedimentation we have calculated first order rate constants. The average values using organic carbon and dissolved oxygen was 3.9 kyr? and 4.2 kyr? respectively using a biological mixing coefficient of 100 cm2 kyr?1. These rate constants decrease in direct proportions to the mixing coefficient.  相似文献   

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