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471.
刘庄泉  杨健 《环境科技》2006,19(2):38-39,42
随着经济的发展和人们环境意识的提高,对N,P的控制越来越受到重视.在此简要介绍了“多级高浓度自浓缩活性污泥法脱氮除磷”新工艺.新工艺可在基本不增加投资、对二沉池基本没有影响的情况下,使传统活性污泥法工艺在BOD,COD保持较高的去除率的同时,具备良好的脱氮、除磷功能,较适合采用传统活性污泥法工艺的污水厂的改造.  相似文献   
472.
通过对常州市城北、清潭两座城市污水处理厂的倒置A/A/O工艺,采用不同的控制参数运行和相应的试验表明:(1)倒置A/A/O工艺对城市污水中有机物、氮和磷都具有较好的处理效果,出水水质达到《城镇污水处理厂污染物排放标准))(GBl8918—2002)一级标准中的A级标准;(2)推荐的相应控制运行参数为:污泥回流比控制在75~150%,气/水比值控制在3.0~5.0;生化反应池MLSS保持在2.50~3.50g/L,水力停留时间为10h,SRT控制为7~10d左右,生化反应池好氧段DO保持在3mg/L;(3)在进水TP浓度较低(≤2.0mg/L)的条件下,可以省略厌氧段,采用缺氧/好氧(A/O)方式运行。  相似文献   
473.
本文着重介绍了适合城市空气中氮氧化物预报的五种模型 :统计模型中的MOBILE模式、时间序列分析法、投影回归技术和数值预报模型中的高斯模式及箱模式 .并在此基础上推荐了组合预报 .  相似文献   
474.
利用管式沉降炉对煤粉燃烧过程中的反应温度、初始氧浓度、反应时间、煤的挥发分及含氧量对燃料氮向NOx 转化的影响进行了试验研究 ,摸清了反应的规律 ,找出了影响转化的显著因素。  相似文献   
475.
Legume–cereal rotation may reduce the fertilizer requirement of the cereal crop and we hypothesize that the benefit depends on the maturity class of the soybean. Field trials were therefore conducted in 1995 in four Guinea savanna sites to monitor the effect of soybean (Glycine max (L.) Merrill) cultivation on the N balance of the soil. In trial 1, an early (TGx1485-1D) and a late (TGx1670-1F) soybean were grown to maturity along with a maize (Zea mays L.) reference plot. In trial 2, six varieties of soybean (early: TGx1485-1D, TGx1805-2E and TGx1681-3F; medium: TGx1809-12E and TGx923-2E; late: TGx1670-1F) were grown to maturity along with a reference maize plot. The total nitrogen (N) content, aboveground N2 fixed, and N remaining in the stover were higher in the medium and the late varieties than in early varieties. Also, the early varieties had higher nitrogen harvest indices (81–84%) than medium and late varieties (74–79%). From the N balance calculation, it was found that medium and late maturing soybean resulted in an addition of 4.2 kg N ha−1 to the soil, whereas the early maturing varieties resulted in depletion of the soil N reserve by 5.6 kg N ha−1 (P<0.05). On average, among the medium and late varieties, late maturing TGx923-2E resulted in an addition of 9.5 kg N ha−1 to the soil. When the stover was not returned to the field, early soybean resulted in more negative N balance than the medium and late soybean (P<0.05). Therefore, planting an early variety of soybean for one season resulted in net depletion of soil N, even when the soybean residues were returned to the soil and N2 fixed in the roots and N in the fallen leaf litter were included in the N balance calculations. Contrary to this, planting medium and late soybean for one season resulted in an addition of N to the soil. Therefore, medium and late soybean should be used as a preceding crop in legume–cereal rotation, if possible, to minimize or avoid depletion of soil N by early varieties of soybean.  相似文献   
476.
结合长江中下游地区气候、土壤特征、植被覆盖、降雨、地势及人类活动强度,采用美国通用土壤流失方程确定了各个参数值。在此基础上计算出靖江市全年的土壤侵蚀量,并推出了水稻种植期间的土壤侵蚀量及由此产生的吸附态氮污染负荷量,为农业面源污染防治提供依据。  相似文献   
477.
There is a need to examine long-term changes in nitrogen leaching from arable soils. The purpose of this study was to analyse variations in specific leaching rates (kg ha−1 per year) and gross load (Mg per year) of N from arable land to watercourses in Sweden from a historical perspective. The start of the study was set to 1865 because information on crop distribution, yield and livestock has been compiled yearly since then. The SOIL/SOILN model was used to calculate nitrogen leaching. Calculations were done for cereals, grass and bare fallow for three different soil types in nine agricultural regions covering a range of climatic conditions. Results indicate that both specific leaching rates and gross load of nitrogen in the middle of 19th century were approximately the same as they are today for the whole of south and central Sweden. Three main explanations for this were (1) large areas of bare fallow typical for the farming practice at the time; (2) enhanced mineralisation from newly cultivated land; and (3) low yield . From 1865, i.e. the start of the calculations, N leaching rates decreased and were at their lowest around 1930. During the same period, gross load was also at its lowest despite the fact that the acreage of arable land was at its most extensive. After 1930, average leaching increased by 60% and gross load by 30%, both reaching a peak in the mid-1970s to be followed by a declining trend. The greatest increase in leaching was in regions where the increase in animal density was largest and these regions were also those where the natural conditions for leaching such as mild winters and coarse-textured soils were found. Extensive draining projects occurred during the period of investigation, in particular an intensive exploitation of lakes and wetlands. This caused a substantial drop in nitrogen retention and the probable increase in net load to the sea might thus have been more affected by this decrease in retention than the actual increase in gross load.  相似文献   
478.
水中氨氮、亚硝酸盐氮及硝酸盐氮相互关系探讨   总被引:5,自引:0,他引:5  
李萍 《上海环境科学》2006,25(6):245-246
在水中,氮既是生命元素,又是环境污染的主要因子,其转化是多变的,其中硝化作用和反硝化作用是关键反应,它将较稳定的 NH4^+转化成 NO3^-,后者容易渗滤,被植物吸收或进一步脱氮。用河水进行了实验室试验,研究了氨氮、亚硝酸盐氮及硝酸盐氮三者的相互关系。观察了亚硝化作用和硝化作用的历程,描述了其变化规律,并对其在水中的迁移、转化过程及机理结合文献进行了研究讨论。根据实验结果,对今后的研究方向和污水的排放标准提出了建议。  相似文献   
479.
As one typical cationic disinfectant, quaternary ammonium compounds (QACs) were approved for surface disinfection in the coronavirus disease 2019 pandemic and then unintentionally or intentionally released into the surrounding environment. Concerningly, it is still unclear how the soil microbial community succession happens and the nitrogen (N) cycling processes alter when exposed to QACs. In this study, one common QAC (benzalkonium chloride (BAC) was selected as the target contaminant, and its effects on the temporal changes in soil microbial community structure and nitrogen transformation processes were determined by qPCR and 16S rRNA sequencing-based methods. The results showed that the aerobic microbial degradation of BAC in the two different soils followed first-order kinetics with a half-life (4.92 vs. 17.33 days) highly dependent on the properties of the soil. BAC activated the abundance of N fixation gene (nifH) and nitrification genes (AOA and AOB) in the soil and inhibited that of denitrification gene (narG). BAC exposure resulted in the decrease of the alpha diversity of soil microbial community and the enrichment of Crenarchaeota and Proteobacteria. This study demonstrates that BAC degradation is accompanied by changes in soil microbial community structure and N transformation capacity.  相似文献   
480.
A two-step procedure for analysing nitrogen leaching from arable land in large river basins is suggested: (1) application of a process-based dynamic model for a set of representative conditions in a large river basin to simulate water and nitrogen fluxes and (2) development of a fuzzy-rule based metamodel using the simulated nitrogen fluxes in Step 1 as a training set. After that the metamodel can be used for rapid assessment of water quality inside the considered ranges of parameters, describing natural conditions and management practices. This paper describes Step 1 of the procedure. Step 2 is described in an accompanying paper (Haberlandt et al., Ecological Modelling 150 (3) (2002) 277–294). The advantage of this approach is that it combines the ‘process-based foundation’ with the resulting simplicity of the metamodel. Simulation experiments for analysing nitrogen (N) leaching from arable land were performed using the Soil and Water Integrated Model (SWIM) for a set of representative conditions in the Saale basin (23 687 km2) in Central Europe. The Saale River is one of the main tributaries of the Elbe. In advance, hydrological validation of the model was done for the whole Saale basin and validation of nitrogen dynamics was fulfilled in two mesoscale sub-basins of the Elbe. For the simulation experiments the drainage basin area was sub-divided into five climate zones and nine representative soil classes were chosen. The basic rotation and fertilisation schemes were established using regional information obtained from literature. In addition, the effects of changing the basic rotation to more/less intensive ones and changing fertilisation rates by 50% increase/decrease were studied. The ranges of simulated nitrogen fluxes for the basic rotation and fertilisation schemes are comparable to available regional estimates and differences between sub-regions and soils are plausible. The relative importance of natural and anthropogenic factors affecting nitrogen leaching for the Saale River basin was as follows: (1) soil, (2) climate, (3) fertilisation rate and (4) crop rotation. The simulation experiments provide a basis for a fuzzy-rule based metamodel approach, which aims at rapid water quality assessment of large regions.  相似文献   
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