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1.
Although most research has focussed on inorganic nutrient forms of nitrate (NO-3) and phosphorus (PO34) in runoff and receiving waters, nitrogen loss from agricultural land can also occur in organic and ammonium-nitrogen form; phosphorus losses, although often dominated by particulate transport, may occur in soluble organic and inorganic form. Furthermore, fluxes between different species may take place during transport from the land to the stream and as a result of in-stream, in-river or in-lake transformations. Knowledge of the spatial and temporal variation in all nitrogen species and phosphorus fractions in a drainage basin is therefore essential if the wider environmental significance of elevated nutrient concentrations in natural waters are to be assessed. This paper reviews recent work on N and P losses from agricultural land and presents some results from two intensive agricultural catchments: Slapton, Devon and the river Windrush catchment in the Cotswolds.  相似文献   
2.
Nitrogen fertilization resulted in a linear increase in the growth ofAbies grandis seedlings, but linear decrease in foliage concentrations of phenolic compounds. These data are consistent with the inverse relationship between growth and production of carbonbased secondary chemicals predicted by the carbon/nutrient balance (CNB) hypothesis. However, in contrast to predictions of the CNB hypothesis, nitrogen fertilization had no effect on foliage terpene concentrations. The results suggest that not all carbon-based chemicals respond in the same manner to environmental variation, and that the carbon/nutrient balance hypothesis does not adequately explain all patterns of environmentally-induced variation in secondary metabolism.  相似文献   
3.
评述了近年来城市污水生物脱氮除磷理论和功能微生物的研究进展,重点介绍了生物处理的新方法:短程硝化反硝化处理法、厌氧氨氧化处理法、同步硝化反硝化处理法、同步反硝化除磷脱氮法,并总结了各处理工艺的应用状况。对生物脱氮除磷微生物学和新的理论技术发展趋势做出了展望。  相似文献   
4.
低C/N污水的生化处理过程中,由于碳源不足,不能满足硝化和反硝化的要求,造成出水NH3-N超标。采用SBR工艺对某基地污水处理站厌氧处理后的低C/N污水进行改造,处理后出水COD去除率达到97%以上,NH3-N去除率达到93%以上。  相似文献   
5.
Cu^2+和Zn^2+是污水处理工艺中经常遇到的金属离子。在驯化好的活性污泥系统中,研究了金属离子Cu^2+和Zn^2+在0~100mg/L浓度下对活性污泥生物脱氮系统的影响。试验发现Cu^2+>5mg/L、Zn^2+>30mg/L时,对硝化过程具有明显的抑制作用,在同样浓度的试验条件下cu“对硝化过程的抑制作用比Zn^2+大。Cu^2+≤0.5mg/L时对反硝化过程具有一定的促进作用,有助于提高TN的去除效果;Cu^2+>0.5mg/L时,对反硝化产生抑制作用,随着浓度的增加,TN去除率逐渐下降。Zn^2+不影响反硝化过程,仅在大于30mg/L时,对硝化过程产生抑制作用。重金属Cu^2+对生物脱氮系统的影响明显强于Zn^2+。  相似文献   
6.
选择了6种水体中常见的阳离子(Na^+、Mg^2+、Ca^2+、Al^3+、Cu^2+、Ni^2+),分别考查了其对TiO2薄膜光催化还原Cr(Ⅵ)的影响;从光吸收、无机离子本身的性质对光生电子的捕获及传递等讨论了上述离子影响TiO2薄膜光催化还原Cr(Ⅵ)的反应速率的原因。结果表明:由于其不能捕获光生电子,Na^+、Mg^2+、Ca^2+本身对TiO2薄膜光催化还原Cr(Ⅵ)的反应速率影响不大;Al^3+吸引电子能力较强,成为光生电子和Cr(Ⅵ)之间的桥梁,促进了Cr(Ⅵ)的还原;浓度为1 mmmol/L时,Cu^2+显著地促进了Cr(Ⅵ)的光催化还原,其主要原因是Cu^2+捕获光生电子的能力很强,起到了催化剂的作用,而浓度大于10 mmol/L时,Cu^2+形成单质Cu以及对紫外光的吸收都使促进作用降低;Ni^2+未充满的d轨道具有获得并传递光生电子的能力,也促进了Cr(Ⅵ)的还原;在浓度同为1mmol/L时,对Cr(Ⅵ)光催化还原的促进作用依次为:Cu^2+〉Al^3+〉Ni^2+〉Na^+、Ca^2+、Mg^2+。  相似文献   
7.
采用反相乳液聚合法以凹凸棒土为原料,合成了新型NH4+-N吸附剂淀粉-g-丙烯酸/凹凸棒土,并进行了氨氮吸附对比实验。结果表明:凹凸棒土氨氮单位吸附量为4.243 mg/g;淀粉-g-丙烯酸/凹凸棒土氨氮单位吸附量为5.301 mg/g,吸附能力比未改性的凹凸棒土提高了25%。淀粉-g-丙烯酸/凹凸棒土的氨氮吸附过程比凹凸棒土更符合Freundlich等温吸附模型。随着pH、温度的升高,凹凸棒土和淀粉-g-丙烯酸/凹凸棒土对NH4+-N吸附量逐渐增大。  相似文献   
8.
以郑州天德湖为研究水域,利用实测的水质总氮数据和光谱反射率数据,获取反演总氮浓度的最佳波段组合,以此建立支持向量机回归(SVR)模型,并利用粒子群优化算法(PSO)优化SVR模型,建立PSO-SVR模型,再利用珠海一号高光谱(OHS)数据验证该模型的精度和适用性。结果表明:PSO-SVR模型的决定系数(R2)为0.923 6,均方根误差(RMSE)为0.103 3mg/L,平均相对误差(MRE)为3.656%;SVR模型的R2、RMSE和MRE分别为0.808 0、0.203 2mg/L和6.583%,PSO-SVR反演结果优于SVR模型。利用粒子群算法优化SVR模型,有助于提高天德湖总氮浓度反演精度,即利用实测光谱数据与卫星影像数据结合来反演总氮浓度可行。  相似文献   
9.
A sequencing batch reactor (SBR) was inoculated with mixed nitrifying bacteria from an anoxic tank at the conventional activated sludge wastewater treatment plant in Nongkhaem, Bangkok, Thailand. This enriched nitrifying culture was maintained under anaerobic conditions using ammonium (NH(4)(+)) as an electron donor and nitrite (NO(2)(-)) as an electron acceptor. Autotrophic ammonium oxidizing bacteria survived under these conditions. The enrichment period for anammox culture was over 100 days. Both ammonium and nitrite conversion rates were proportional to the biomass of ammonium oxidizing bacteria; rates were 0.08 g N/gV SS/d and 0.05 g N/g VSS/d for ammonium and nitrite, respectively, in a culture maintained for 3 months at 42 mg N/L ammonium. The nitrogen transformation rate at a ratio of NH(4)(+)-N to NO(2)(-)-N of 1:1.38 was faster, and effluent nitrogen levels were lower, than at ratios of 1:0.671, 1:2.18, and 1:3.05. Fluorescent in situ hybridization (FISH) was used to identify specific autotrophic ammonium oxidizing bacteria (Nitrosomonas spp., Candidatus Brocadia anammoxidans, and Candidatus Kuenenia stuttgartiensis). The ammonium oxidizing culture maintained at 42 mg N/L ammonium was enriched for Nitrosomonas spp. (30%) over Candidati B. anammoxidans and K. stuttgartiensis (2.1%) while the culture maintained at 210 mg N/L ammonium was dominated by Candidati B. anammoxidans and K. stuttgartiensis (85.6%). The specific nitrogen removal rate of anammox bacteria (0.6 g N/g anammox VSS/d) was significantly higher than that of ammonium oxidizing bacteria (0.4 g N/g Nitrosomonas VSS/d). Anammox bacteria removed up to 979 mg N/L/d of total nitrogen (ammonium:nitrite concentrations, 397:582 mg N/L). These results suggest significant promise of this approach for application to wastewater with high nitrogen but low carbon content, such as that found in Bangkok.  相似文献   
10.
    
ABSTRACT: This paper presents a modeling approach based on a geographic information system (GIS) to estimate the variability of on‐ground nitrogen loading and the corresponding nitrate leaching to ground water. The methodology integrates all point and nonpoint sources of nitrogen, the national land cover database, soil nitrogen transformations, and the uncertainty of key soil and land use‐related parameters to predict the nitrate mass leaching to ground water. The analysis considered 21 different land use classes with information derived from nitrogen sources such as fertilizer and dairy manure applications, dairy lagoons, septic systems, and dry and wet depositions. Simulations were performed at a temporal resolution of one month to capture seasonal trends. The model was applied to a large aquifer of 376 square miles in Washington State that serves more than 100,000 residents with drinking water. The results showed that dairy manure is the main source of nitrogen in the area followed by fertilizers. It was also seen that nitrate leaching is controlled by the recharge rate, and there can be a substantial buildup of soil nitrogen over long periods of time. Uncertainty analysis showed that denitrification rate is the most influential parameter on nitrate leaching. The results showed that combining management alternatives is a successful strategy, especially with the use of nitrification inhibitors. Also, change in the land use pattern has a noticeable impact on nitrate leaching.  相似文献   
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