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1.
本文将酸化模型分为指标评价模型、经验酸化模型和以湖泊-流域为基础的机理模型三大类。概述了几个典型的酸化模型的结构、对参数和过程的处理方法、存在的问题和应用范围并介绍了它们的一些具体应用。还以MAGIC模型为例说明了酸化模型的发展及其趋势。作为模型的一个有机组成部分,本文还阐述了酸化模型的不确定性分析。  相似文献   

2.
常州市酸雨概况分析   总被引:1,自引:0,他引:1  
采用数理统计和对比分析的方法,研究了常州市近14年来的酸雨情况。结果表明,常州市出现酸雨的频率达37.8%,明显高于全省平均水平,是全省酸雨较重的区域之一。同时,年、月、旬、日的pH平均值随时间的分布具有明显的周期性。造成的原因主要是降水酸化,应当引起社会各界的高度重视。  相似文献   

3.
根据印染废水的特点和印染废水处理工程实例,从适用性、与其他工艺的衔接、工程造价、运行费用及水解效果等方面对UASB水解酸化反应器和填料式水解酸化反应器进行比较研究。研究表明,UASB水解酸化反应器在适用性和工程造价两个方面具有一定的缺陷;但是UASB水解酸化反应器对印染废水中COD、SS和色度去除率能够分别达到50%、73%和75%,明显高于填料式水解酸化反应器;且UASB水解酸化反应器每降解1kgCOD所需电量为(0.23±0.05)kW·h,优于填料式水解酸化反应器。  相似文献   

4.
王学华  黄勇  王浩 《环境工程学报》2014,8(4):1521-1525
根据印染废水的特点和印染废水处理工程实例,从适用性、与其他工艺的衔接、工程造价、运行费用及水解效果等方面对UASB水解酸化反应器和填料式水解酸化反应器进行比较研究。研究表明,UASB水解酸化反应器在适用性和工程造价两个方面具有一定的缺陷;但是UASB水解酸化反应器对印染废水中COD、SS和色度去除率能够分别达到50%、73%和75%,明显高于填料式水解酸化反应器;且UASB水解酸化反应器每降解1 kg COD所需电量为(0.23±0.05)kW·h,优于填料式水解酸化反应器。  相似文献   

5.
以餐厨垃圾和稻草为原料,通过调节酸化相的pH、氧化还原电位(ORP)和进料负荷(OLR),对酸化相的产酸发酵类型和不同酸化类型的产甲烷性能进行了研究。结果表明:当酸化相的pH4.5和ORP-120 m V的条件下,发酵类型为乙醇型;当酸化相的pH5.5时,发酵类型为丁酸型发酵;在乙醇型发酵和丁酸型发酵相互转换的过程中,会出现混合型发酵。从酸化效果方面来看,丁酸型发酵的产酸性能最优,酸化度为36%。同时,丁酸型发酵酸化产物的产甲烷性能最好,累计甲烷产率为535 m L·g-1VS。通过PCR-DGGE的微生物菌群鉴定结果可知,在两相厌氧消化过程中,酸化相中的优势菌种主要以拟杆菌属(Bacteroidetes)和乳酸杆菌属(Lactobacillus)为主,甲烷相中的优势菌种以乳酸杆菌属(Lactobacillus)为主。  相似文献   

6.
餐厨垃圾和稻草两相厌氧发酵及其动力学   总被引:1,自引:0,他引:1  
采用响应面实验设计对影响酸化相产酸效果的4个因素即有机负荷、酸化时间、F/M(VS/VS)比、餐、草比进行实验研究.在最优的酸化条件下,选取最优的餐、草比与单餐厨和单稻草的产酸效果和产甲烷性能进行比较,并进行产物动力学曲线拟合.实验结果表明,进料负荷为42.95 g(VS)/L,酸化时间为7.92 d,F/M(VS/VS)为2.12∶1,餐、草混合比为3.88∶1时,产酸效果最优,VFA和乙醇总量为16 844 mg/L,比单因素最优水平组合VFA和乙醇总量提高30.4%.一级动力学模型可以很好地表征酸化阶段的VFA和乙醇的产量,餐、草比3.88∶1,餐厨垃圾和稻草的酸化一级产物生成的速率k分别为0.0887、0.0753和0.0625 1/d.修正Gompertz模型也较好地表征产甲烷阶段的负荷累计产甲烷量,拟合曲线的相关系数均大于0.98.  相似文献   

7.
利用自行研制的水解酸化+一体式膜生物反应器(SMBR)中试系统处理印染废水,通过均匀设计法设置了10组试验.计算各运行条件下的膜过滤阻力.建立了曝气量(G)、混合液污泥浓度(X)和膜通量(J)对膜面污泥沉积速率(K)的影响模型:K=3.645×107·X0.312·J0.13·G-3.46.通过该模型,可以对不同运行条件下的膜污染发展情况进行预测.验证结果表明,实际运行的测试数据与模型预测值符合性很好,可利用建立的模型预测不同运行条件下的膜污染状况.  相似文献   

8.
对美国Andersen酸雨采样器与国产酸雨采样器在pH、电导率、雨量三方面的采样性能作了比较试验,结果表明监测数据基本一致,其中pH值的可比性最好,相关系数达到0.99;Andersen酸雨采样器采集的样品其电导率普遍低于国产酸雨采样器,说明该仪器在防颗粒物干扰方面性能较好。  相似文献   

9.
制药废水UASB-HAR-ICEAS组合处理系统效能建模及优化研究   总被引:1,自引:0,他引:1  
以某制药废水的升流式厌氧污泥床(UASB)-水解酸化池(HAR)-间歇式循环延时曝气活性污泥法(ICEAS)新型组合处理系统为背景,分析该系统效能,并建立遗传算法优化神经网络(GA-BPNN)模型对系统出水水质进行仿真预测,并利用建立的GA-BPNN模型对系统的运行条件进行优化研究。研究表明,在稳态运行的120 d,系统对废水COD和NH3-N去除率分别为98.6%和86.6%;GA-BPNN模型对出水COD和NH3-N的预测结果和实际监测值之间的平均绝对百分误差为5.55%和6.99%,能很好地应用于组合系统的出水水质预测管理中;GA-BPNN模型还可求解出系统的最优化运行条件,为工程实际操作提供了坚实的理论基础。  相似文献   

10.
利用计算流体力学模拟技术,采用三维、稳态、k-ε紊流模型,结合多重参考系模型、弥散相模型及组分输运和化学反应模型,对江苏某污水处理厂水解酸化池进行了模拟。结果表明:水解酸化池内流速分布很不均匀;池内存在大片回流区域以及流速几乎为零的区域,区域总体积占池容的50%以上;平均水力停留时间约为1 480 s,远达不到设计值。结合模拟结果,提出了改进方案。改进后的模拟结果表明:水解酸化池内水流流速分布均匀性大大提高;大片的回流区域消失,速度几乎为零的区域面积也大大减小;水解酸化池的空间得到充分利用,水下推进器的作用也更加明显;平均水力停留时间约为15 340 s,和设计值十分接近。但是仍存在一些不足:水流流速分布的均匀性仍存在一定缺陷;只考虑了单相流,没有考虑池中污泥的作用。  相似文献   

11.
中日合作研究项目:酸沉降对陆地生态系统的影响及其控制对策的研究,于1990至1995年期间在中国重庆地区进行。本文是该项目最终研究结果主要方面的报导,包括大气污染和酸雨的状况,酸沉降对池塘、森林和土壤生态系统的影响以及大气污染和酸雨控制对策。该项研究为今后酸沉降生态监测的研究,打下了有力的基础。  相似文献   

12.
Acid rain and acidification research are indeed a multidisciplinary field. This field evolved from the first attempts to mitigate acid freshwater in the 1920s, then linking acid rain to the acidification in late 1950s, to the broad project-concepts on cause and effect from the late 1960s. Three papers from 1974, 1976 and 1988 demonstrate a broad approach and comprise scientific areas from analytical chemistry, biochemistry, limnology, ecology, physiology and genetics. Few, if any, environmental problems have led to a public awareness, political decisions and binding limitations as the story of acid rain. Acid precipitation and acidification problems still exist, but at a lower pressure, and liming has been reduced accordingly. However, the biological responses in the process of recovery are slow and delayed. The need for basic science, multidisciplinary studies, long time series of high-quality data, is a legacy from the acid rain era, and must form the platform for all future environmental projects.  相似文献   

13.
Acid rain and acidification in China: the importance of base cation deposition   总被引:42,自引:0,他引:42  
Acid deposition has been recognized as a serious environmental problem in China. Most acid deposition studies have focused on sulfur deposition and the pH of precipitation. However, as high concentration of alkaline dust is an important feature of the atmosphere in large parts of China, base cation deposition must be taken into account when discussing possible effects on soils and vegetation from acid deposition. We estimate the deposition of sulfur as well as calcium, i.e. the dominating anion and cation, on a regional scale in China using data both from measurements and modeling. The ratio of sulfur/calcium in deposition is then used as an indicator for identifying areas where deposition acidity exceeds alkalinity, and where soils may be at risk to acidification. The dynamic soil acidification model MAGIC is applied with data from two sites receiving high deposition loads in southwest China. The model predictions indicate that considerable soil acidification has been going on for the last decades due to acid deposition inputs. Effects on the spatial distribution of acidic deposition in China, using different future deposition scenarios, are illustrated. As the size of the anthropogenic fraction of the base cation deposition is unknown, different possible future trends in calcium deposition were used. Soil response, according to the model, using different combinations of sulfur and calcium deposition scenarios is shown. Applying the most strict measures to reduce sulfur emission will almost eliminate the acid deposition problem; however, such a scenario is not economically feasible in the short term. A strict, but possibly realistic, future scenario for sulfur may be enough to keep the situation at the present level, assuming only moderate reductions in calcium deposition. With large decreases in base cation deposition, increased soil acidification can be expected even with considerable sulfur emission reductions.  相似文献   

14.
The model MAGIC (Model of Acidification of Groundwater In Catchments) has been applied to the Beacon Hill site, near Loughborough in Central England. This site is heavily impacted by wet and dry deposition of oxides of sulphur and nitrogen. The high acid inputs have caused soil acidification and acid stream waters. Long term simulations suggest that there has been a major decline in alkalinity and pH over the past 50 years. Despite recent reductions in deposition levels, soils and streams are predicted to continue to acidify in the future. For this heavily impacted site, deposition must be reduced by 80-90% to reverse the acidification trend and allow recovery of soil and stream waters.  相似文献   

15.
对智能控制的适用范围及污水生物处理工艺的特征进行了简单分析。对智能控制的3大主要分支模糊逻辑控制、神经网络控制及专家控制系统在污水生物处理中应用的最新动态进行了评论和分析。结果表明,在污水生物处理中引入智能控制是一种提高处理效率、降低运行成本的有效方法,国内在污水生物处理智能控制的应用研究与国外有较大的差距,国内的研究及应用还处在发展阶段,应当加强。最后对污水生物处理智能控制的发展方向作了简要分析。  相似文献   

16.
Acidification of freshwater environments (terrestrial, surface water, and freshwater sediment) can significantly affect the geochemistry of Al, Cd, Pb and Hg; for example, metal mobility within soils (Al, Cd), the relative distribution of dissolved metal species (Al, Cd, Pb, Hg), and the sedimentation rate of metals in standing water bodies (Cd, Pb) can be altered by acidification. In this critical review of the literature over the last decade concerned with the interaction of acidification with these four metals, we have attempted both to provide an assessment of the current state of knowledge in this field and to emphasize those areas where significant progress has been made since the possible implications of environmental acidification on metal geochemistry became widely appreciated in the late 1970s. We have also indicated those areas which we feel are most in need of further research.  相似文献   

17.
研究了模拟酸雨淋溶过程中对南方主要土壤重金属Cu的缓冲及释放现象。结果表明,土壤的Cu释放量随淋溶模拟酸雨pH值的下降而增大,酸雨的pH值是影响土壤重金属离子释放和迁移的主要因素,当pH〈3.0时,Cu的释放量明显增加,并且增长迅速。此外,淋溶量也是影响土壤中Cu释放的重要因素。  相似文献   

18.
The effects of aluminum and other metals on amphibians   总被引:4,自引:0,他引:4  
This review discusses the effects of aluminum and other metals associated with acidification on amphibians. The majority of research has centered around aluminum although some information is available regarding copper, cadmium, iron, zinc and lead. The major habitat types in which amphibians live and breed are listed and the mechanisms by which these habitats may become acidified and contaminated with metals are discussed. Three lines of investigation into acid and metal toxicity are reviewed in detail: (1) field surveys of water chemistry, (2) laboratory toxicity tests, (3) field studies which include in situ toxicity tests, and surveys of amphibian distribution and survival relative to water chemistry. As a result of recent information from each of these three lines of research, it appears that aluminum toxicity is an extremely complex phenomenon which is influenced by the hardness, pH, DOC of the water, and the developmental stage and species of amphibian.  相似文献   

19.
缪剑霞 《污染防治技术》2007,20(4):57-58,94
综述并分析了南京市“十五”期间环境空气质量状况,指出空气中首要污染物仍为可吸入颗粒物.南京市虽然主要工业污染物排放总量继续得到有效控制,部分污染物明显缩减,空气质量有所改善,但酸雨污染依然严重,控制和治理二氧化硫污染已刻不容缓,要采取合理科学规划,加大工业污染治理力度,同时要增强市民自我环境保护意识.  相似文献   

20.
Nord AG  Tronner K  Mattsson E  Borg GCh  Ullén I 《Ambio》2005,34(3):256-262
The last century's environmental pollution has created health problems, acidification of ground and lakes, and serious damage to our cultural heritage. Outdoor monuments suffer from this pollution, but so do buried archaeological remains. However, research on the deterioration of archaeological artifacts underground has so far been limited, and it is important to draw attention to this neglected field. This article presents results obtained at the Swedish National Heritage Board on the degradation of archaeological objects of bronze and iron and of bones from prehistoric graves, materials of which seem to be most affected by pollutants. The investigation methods, which were employed, are described. Other relevant studies are briefly reviewed. It is obvious that the deterioration rate of archaeological artifacts, especially of inorganic materials, has accelerated in recent years, and that this increased deterioration to a large part can be attributed to anthropogenic pollution. Regions that might be endangered are exemplified.  相似文献   

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