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621.
人工湿地水处理技术研究进展存在问题与改进   总被引:15,自引:2,他引:15  
论述了人工湿地技术的除污机理和影响因素,并介绍了目前该技术所存在的问题,同时针对问题提出了相应的解决方法。  相似文献   
622.
Background, Aims and Scope It is well known that the composition of petroleum or some of its processing products changes in the environment mostly under the influence of microorganisms. A series of experiments was conducted in order to define the optimum conditions for an efficient biodegradation of petroleum pollutant, or bioremediation of different segments of the environment. The aim of these investigations was to show to what extent the hydrocarbons of a petroleum pollutant are degraded by microbial cultures which were isolated as dominant microorganisms from a surface water of a wastewater canal of an oil refinery and a nitrogen plant. Biodegradation experiments were conducted on one paraffinic, and one naphthenic type of petroleum during a three month period under aerobic conditions, varying the following parameters: Inorganic (Kp) or an organic medium (Bh) with or without exposition to light. Methods Microorganisms were analyzed in a surface water sample from a canal (Pančevo, Serbia), into which wastewater from an oil refinery and a nitrogen plant is released. The consortia of microorganisms were isolated from the water sample (most abundant species: Phormidium foveolarum - filamentous Cyanobacteria, blue-green algae and Achanthes minutissima, diatoms, algae). The simulation experiments of biodegradation were conducted with the biomass suspension and crude oils Sirakovo (Sir, paraffinic type) and Velebit (Ve, naphthenic type). After a three month period, organic substance was extracted by means of chloroform. In the extracts, the content of saturated hydrocarbons, aromatic hydrocarbons, alcohols and fatty acids was determined (the group composition). n-Alkanes and isoprenoid aliphatic alkanes, pristane and phytane, in the aliphatic fractions, were analyzed using gas chromatography (GC). Total isoprenoid aliphatic alkanes and polycyclic alkanes of sterane and triterpane types were analyzed by GC-MS. Results and discussion. Paraffinic type petroleums have a significant loss of saturated hydrocarbons. For naphthenic type petroleum, such a trend has not been observed. The most intensive degradation of n-alkanes and isoprenoid aliphatic alkanes (in paraffinic oil) and isoprenoids (in naphthenic oil) was observed using the inorganic medium Kp in the light; the microbial conversion is somewhat lower with Kp in the dark; with organic medium Bh in the light the degradation is of low intensity; with the same medium in the dark the degradation is hardly to be seen. Steranes and triterpanes were not affected by microbial degradation under the conditions used in our experiments. Obviously, the petroleum biodegradation was restricted to the acyclic aliphatics (n-alkanes and isoprenoids). Conclusion Phormidium foveolarum (filamentous Cyanobacteria - blue-green algae) and Achanthes minutissima (diatoms, algae), microbial cultures isolated as dominant algae from a surface water in a wastewater canal of an oil refinery and a nitrogen plant, have degradable effects dominantly involving petroleum hydocarbons. Petroleum microbiological degradation is more intensive when inorganic medium (in the light) is applied. Having in mind that the inorganic pollutants have been released into the canal as well, this medium reflects more the natural environmental conditions. Polycyclic alkanes of sterane and triterpane type, in spite of the fact that these compounds could be degraded, have remained unchanged regarding abundance and distribution. Since this is the case even for naphthenic type petroleum (which is depleted in n-alkanes), it can be concluded that the biodegradation of petroleum type pollutants, under natural conditions, will be restrained to the n-alkane and isoprenoid degradation. Recommendation and Outlook Performed experiments and simulations of petroleum microbiological degradation may serve for the prediction of the fate of petroleum type pollutants, as well as for definition of conditions for bioremediation of some environmental segments.  相似文献   
623.
论述了环境因素对机动车尾气污染物扩散的影响,分析了环境因素在污染物扩散过程中起到的作用。  相似文献   
624.
量子点在环境污染物检测中的应用研究进展   总被引:1,自引:0,他引:1  
量子点是半径小于或接近于激子玻尔半径的一类半导体纳米晶,具有激发光谱宽、发射光谱窄且对称、最大发射波长位置可调、不易光降解的特点。作为一种新型的荧光标记物,量子点因其独特而优良的光学性质已在生物和医学研究领域中得到了广泛的应用。文章对量子点在环境有机污染物、重金属离子、微生物分析检测中的应用进行了综述,介绍了量子点荧光淬灭法、荧光增敏法、量子点标记免疫分析法、量子点表面印迹法、荧光共振能量转换法等不同的作用机制在环境污染物检测中的应用,并对方法的检出限及所应用的环境样品进行了阐述,在重金属的检测中,对量子点和稳定剂不同时方法的检出限进行了对比研究。同时指出了需要进一步关注的问题,展望了其发展方向。  相似文献   
625.
武汉地区秋冬季清洁与重污染过程的水溶性离子特征研究   总被引:6,自引:0,他引:6  
利用武汉地区2014年秋、冬季在线离子色谱分析仪Marga监测所得的大气PM_(2.5)中水溶性离子数据和武汉市环境空气质量自动监测的细颗粒物数据,分析了武汉地区秋、冬季重污染和清洁过程的大气污染特征.结果表明,PM_(2.5)是武汉地区秋、冬季大气污染的首要污染物,无论是在清洁还是重污染过程中,NO_3~-、SO_4~(2-)和NH_4~+3种成分都是PM_(2.5)的主要无机成分.重污染过程中PM_(2.5)的平均浓度是清洁过程的4.5倍,而3种主要水溶性离子平均浓度增长至清洁过程的5~6倍,且有着显著的相关性,二次生成水溶性离子的污染已成为武汉秋、冬季大气污染的主要因素.Cl-在重污染过程中的浓度及与PM_(2.5)的相关系数显著增大,表明化石燃料燃烧等过程也对重污染的形成产生了较显著的作用,值得关注的是,K~+在重污染过程中的浓度及与PM_(2.5)的相关系数增大也验证了燃烧过程对重污染起到的贡献.硫氧化率和氮氧化率的分析结果表明,重污染过程中的二次转化要多于清洁过程,可能是非均相反应生成了二次污染的硫酸盐和硝酸盐.线性回归分析的方程系数研究表明,NH_4NO_3和(NH_4)_2SO_4可能是清洁和重污染过程中主要的盐类物质.NO_3~-/SO_4~(2-)的平均质量浓度比说明移动源对武汉地区秋、冬季二次污染的形成和发展已经起到越来越大的作用,特别是重污染过程中的影响更大.  相似文献   
626.
钱塘江感潮河段污染物迁移扩散数值分析   总被引:2,自引:2,他引:0  
感潮河流由于受到潮汐的作用,污染物会因潮汐的涨落作用沿河道往复运动,影响用水安全.以高锰酸盐指数作为主要水环境指标,分析了钱塘江感潮河段上游富阳水文站监测到的持续高锰酸盐污染物输入情况下对下游河段的影响,旨在得到不同水期情况下之江站污染物出现的时间,作为取水安全预警指标参考.同时,基于潮流连续性方程、动量方程和污染物扩散方程,模拟计算了9种流况下污染物的迁移扩散过程.结果显示,径流处于平水月份时,之江站最早受到上游污染物影响,其次是枯季,最后是洪季,说明径流作用有利于污染物向下游迁移扩散.在大潮作用下,之江站一般最晚受到上游污染物影响,中潮次之,最早受到影响的是在小潮情况下.说明在感潮河段,由于受到下游潮流的影响,对污染物往下迁移有一个阻滞作用,且潮流越强阻滞作用越明显.本文构建的潮流水质模型可作为污染物在感潮河段迁移扩散机理研究的模型基础,对于制定降低污染物迁移扩散对地表水环境质量影响措施具有现实意义.  相似文献   
627.
北京市典型区域夏季降水及其对大气污染物的影响   总被引:2,自引:0,他引:2  
韩力慧  张海亮  向欣  张鹏  程水源  魏巍 《环境科学》2017,38(6):2211-2217
通过采集北京市典型区域2015年夏季大气降水样品,分析研究了大气降水的理化特性,典型降水过程化学组分的变化特征、成因以及对大气污染物的影响.结果表明,北京市典型区域夏季降水pH值范围为5.15~7.34,雨量加权平均值为6.21,酸雨率极低.降水中污染元素Cd、Ca和Mn呈现中度富集,Cu、Zn、Pb和S呈现严重富集;Ca和S是降水中主要污染元素,分别占总污染元素浓度的45.43%和43.93%,Zn、Mn、Cu、Pb和Cd是降水中主要重金属污染元素,占总污染元素浓度的1.32%.降水速率不同的降水对大气污染物的影响作用也有所不同.降水速率较大的降水对PM_(2.5)的清除作用较小,对SO_2、NO_2和O_3的清除作用较大,且影响机制表现为4个重要过程:大气污染物的清除、累积、累积和清除、清除.降水速率较小的降水主要以云内雨除为主,对PM_(2.5)、SO_2、NO_2和O_3的云下清除作用较小,且影响机制表现为:污染物的清除、清除和累积、累积、以及清除为特征的4个重要过程.降水速率较大的降水对大气污染物的清除作用大于降水速率较小的降水.  相似文献   
628.
以柳叶马鞭草、菖蒲、鸢尾和美人蕉及南方红壤构建5个生物滞留池模拟装置,研究植物和IWS(内部存水区)及其交互作用对径流中TSS、COD、NH_3-N、NO_3~--N、TN和TP去除的影响,定期测定植物的叶绿素含量、株高和游离脯氨酸含量等生理指标,以探讨植物的生长适宜性。结果表明:植物对COD、NO_3~--N和TN的去除影响较大,其去除率分别为68.84%~77.28%、13.09%~59.61%和42.41%~71.75%,柳叶马鞭草和美人蕉的NO_3~--N及TN去除能力显著高于菖蒲和鸢尾(P柳叶马鞭草>鸢尾>菖蒲,美人蕉和柳叶马鞭草的去污效果和长势较好,适宜在南方生物滞留池中种植。  相似文献   
629.
通过对锦州市"十一五"减排成果及问题的分析,围绕"十二五"减排目标,从电力行业脱硫设施稳定运行、推进低氮燃烧技术、加快钢铁企业烧结机脱硫,取缔供暖行业燃煤小锅炉,加快用车淘汰力度及规范油品供应等方面对锦州市"十二五"期间减排潜力进行了调查和分析。  相似文献   
630.
A variety of methods based on air quality models, including tracer methods, the brute-force method (BFM), decoupled direct method (DDM), high-order decoupled direct method (HDDM), response surface models (RSMs) and so on forth, have been widely used to study the transport of air pollutants. These methods have good applicability for the transport of air pollutants with simple formation mechanisms. However, differences in research conclusions on secondary pollutants with obvious nonlinear characteristics have been reported. For example, the tracer method is suitable for the study of simplified scenarios, while HDDM and RSMs are more suitable for the study for nonlinear pollutants. Multiple observation techniques, including conventional air pollutant observation, lidar observation, air sounding balloons, vehicle-mounted and ship-borne technology, aerial surveys, and remote sensing observations, have been utilized to investigate air pollutant transport characteristics with time resolution as high as 1 sec. In addition, based on a multi-regional input-output model combined with emission inventories, the transfer of air pollutant emissions can be evaluated and applied to study the air pollutant transport characteristics. Observational technologies have advantages in temporal resolution and accuracy, while modeling technologies are more flexible in spatial resolution and research plan setting. In order to accurately quantify the transport characteristics of pollutants, it is necessary to develop a research method for interactive verification of observation and simulation. Quantitative evaluation of the transport of air pollutants from different angles can provide a scientific basis for regional joint prevention and control.  相似文献   
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