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991.
席玥  王婷  倪晋仁  韩鹏  仪马兰  郑彤  蒋咏  马若绮  崔锋 《环境科学》2018,39(9):4114-4121
溶解性有机物(dissolved organic matter,DOM)是天然水体的重要组成部分,由于化学极性及所含的官能团不同,其在水体中的化学行为也不同.本研究以黄河干流宁蒙段为研究对象,于2015年4月采集了下河沿至头道拐沿程7个断面的水样,采用XAD系列树脂将DOM分为疏水性酸(hydrophobic acid,HOA)、疏水性碱(hydrophobic base,HOB)、弱疏水性酸(weak hydrophobic acid,WHOA)和亲水性物质(hydrophilic matter,HYI)这4个组分,探讨了DOM组分含量、荧光峰值及其与Pb、Zn、Cu、Cr、As这5种金属离子之间的相关性.结果表明,黄河宁蒙段DOM总量由下河沿至头道拐沿程逐渐增加.各断面DOM腐殖化程度较低,以亲水性的蛋白质类小分子物质(HYI)为主,疏水性酸(HOA)次之,这与黄河沿岸排污导致内源作用增强有关.三维荧光光谱中类腐殖质和类蛋白质荧光峰型显著,且类腐殖质峰沿程逐渐增强,进一步证实了内源污水输入的影响.SPSS相关性分析结果表明,DOM与5种金属离子呈现出不同程度的相关性,其中与Cu离子显著相关;4种组分中HYI与Cu离子的相关性最强,说明二者在迁移转化过程中存在显著相互作用.进一步研究发现,芳香蛋白类物质荧光峰强度随Cu离子浓度的升高而降低,这可能是Cu与亲水性组分中的芳香类蛋白质发生络合产生荧光淬灭效应,从而导致荧光强度降低.  相似文献   
992.
油田中硫酸盐还原菌(SRP)的生长代谢能产生大量H_2S,会引起油藏酸化和微生物腐蚀等严重的生产和环境问题,而关于油田环境中SRP微生物多样性与生理活性的研究仍十分缺乏.为了深入了解我国渤海湾海域高温酸化油藏中SRP代谢特点并探究其潜在危害控制方法,本研究采用厌氧纯培养技术从渤海湾某高温油田采出水中分离筛选到1株耐高温、耐盐的SRP菌株BQ1,研究了其生理特性,并评价了不同杀菌剂和代谢抑制剂对其产H_2S活性的影响.结果表明,菌株BQ1的细胞呈短杆状,大小为(1.2~2.5)μm×(0.5~0.8)μm,有运动性.尽管BQ1与普通脱硫弧菌(Desulfovibrio vulgaris Hildenborough)的16S rRNA基因序列相似性达99%,但两者生理特性具有明显差异.BQ1可在温度为14~70℃(最适30℃)、p H 6.0~9.0(最适7.0)、盐度为0%~10%条件下生长代谢.BQ1可利用甲酸钠、乳酸钠、乙酸盐等多种碳源,能以硫酸盐、亚硫酸盐、硫代硫酸盐或单质硫为唯一电子受体产生H_2S.次氯酸钠(600 mg·L~(-1))、苄基三甲基氯化铵(300 mg·L~(-1))或NaNO_3(800 mg·L~(-1))对BQ1产H_2S活性无明显抑制效果.戊二醛(50 mg·L~(-1))、溴硝醇(30 mg·L~(-1))、二氧化氯(50 mg·L~(-1))或NaNO_2(70 mg·L~(-1))可抑制BQ1产H_2S活性达30 d以上,是控制渤海湾高温油田微生物酸化的潜在有效抑制剂.  相似文献   
993.
长期储存亚硝化絮状污泥活性的恢复   总被引:2,自引:2,他引:0  
为探究长期储存亚硝化絮状污泥的脱氮性能,采用CSTR反应器,接种4℃下储存了10个月的亚硝化絮状污泥,考察其活性恢复性能,并采用Mi Seq高通量测序技术分析了污泥中微生物菌群结构的变化情况.结果表明,控制DO为0.4~0.8mg·L~(-1)、pH值8左右、温度为(30±1)℃等条件,长期储存亚硝化絮状污泥的活性可以在15 d内迅速恢复,氨氮去除率和亚硝积累率均达到90%以上;此外,污泥颜色由接种初期的灰黑色迅速恢复至棕黄色,SVI值显著降低,MLVSS/MLSS升高,EPS含量明显增加.随着亚硝化性能的恢复,厌氧、发酵微生物被洗脱,Nitrosomonas等氨氧化细菌相对丰度显著增加,同时,Nitrospria等硝化菌的生长得到了有效抑制.经历长期储存的亚硝化絮状污泥可作为实现短程硝化快速启动的接种污泥,更有利于短程硝化工艺的实际应用.  相似文献   
994.
In this study,direct contact membrane distillation(DCMD)was used for treating fermentation wastewater with high organic concentrations.DCMD performance characteristics including permeate flux,permeate water quality as well as membrane fouling were investigated systematically.Experimental results showed that,after 12 hr DCMD,the feed wastewater was concentrated by about a factor of 3.7 on a volumetric basis,with the permeate flux decreasing from the initial 8.7 L/m~2/hr to the final 4.3 L/m~2/hr due to membrane fouling;the protein concentration in the feed wastewater was increased by about 3.5 times and achieved a value of 6178 mg/L,which is suitable for reutilization.Although COD and TOC in permeate water increased continuously due to the transfer of volatile components from wastewater,organic rejection of over 95%was achieved in wastewater.GC–MS results suggested that the fermentation wastewater contained 128kinds of organics,in which 14 organics dominated.After 12 hr DCMD,not only volatile organics including trimethyl pyrazine,2-acetyl pyrrole,phenethyl alcohol and phenylacetic acid,but also non-volatile dibutyl phthalate was detected in permeate water due to membrane wetting.FT-IR and SEM–EDS results indicated that the deposits formed on the membrane inner surface mainly consisted of Ca,Mg,and amine,carboxylic acid and aromatic groups.The fouled membrane could be recovered,as most of the deposits could be removed using a HCl/Na OH chemical cleaning method.  相似文献   
995.
In this study, we performed a highly time-resolved chemical characterization of nonrefractory submicron particles(NR-PM_1) in Beijing by using an Aerodyne high-resolution time-of-flight aerosol mass spectrometer(HR-ToF-AMS). The results showed the average NR-PM_1 mass concentration to be 56.4 ± 58.0 μg/m~3, with a peak at 307.4 μg/m~3. Due to the high frequency of biomass burning in autumn, submicron particles significantly increased in organic content, which accounted for 51% of NR-PM_1 on average. Secondary inorganic aerosols(sulfate + nitrate + ammonium) accounted for 46% of NR-PM_1, of which sulfate,nitrate, and ammonium contributed 15%, 20%, and 11%, respectively. To determine the intrinsic relationships between the organic and inorganic species, we used the positive matrix factorization(PMF) model to merge the high-resolution mass spectra of the organic species and NO+and NO_2~+ions. The PMF analysis separated the mixed organic and nitrate(NO+and NO_2~+) spectra into four organic factors, including hydrocarbon-like organic aerosol(HOA), oxygenated organic aerosol(OOA), cooking organic aerosol(COA), and biomass burning organic aerosol(BBOA), as well as one nitrate inorganic aerosol(NIA) factor. COA(33%) and OOA(30%) contributed the most to the total organic aerosol(OA) mass, followed by BBOA(20%) and HOA(17%). We successfully quantified the mass concentrations of the organic and inorganic nitrates by the NO+and NO2+ions signal in the organic and NIA factors. The organic nitrate mass varied from 0.01-6.8 μg/m~3, with an average of 1.0 ±1.1 μg/m~3, and organic nitrate components accounted for 10% of the total nitrate mass in this observation.  相似文献   
996.
The characteristics of dissolved organic matter (DOM) and bromide ion concentration have a significant influence on the formation of disinfection by-products (DBPs). In order to identify the main DBP precursors, DOM was divided into five fractions based on molecular weight (MW), trihalomethane formation potential and haloacetic acid formation potential were determined for fractions, and the change in contents of different fractions and total DBPs during treatment processes (pre-chlorination, coagulation, sand filtration, disinfection) were studied. Moreover, the relationship between bromide concentration and DBP generation characteristics in processes was also analyzed. The results showed that the main DBP precursors were the fraction with MW < 1 kDa and fraction with MW 3−10 kDa, and the DBP''s generation ability of lower molecular weight DOM (< 10 kDa) was higher than that of higher molecular weight DOM. During different processes, pre-chlorination and disinfection had limited effect on removing organics but could alter the MW distribution, and coagulation and filtration could effectively remove organics with higher MW. For DBPs, trihalomethanes (THMs) were mainly generated in pre-chlorination and disinfection, while haloacetic acids (HAAs) were mostly generated during pre-chlorination; coagulation and sand filtration had little effect on THMs but resulted in a slight removal of HAAs. In addition, the results of ANOVA tests suggested that molecular sizes and treatment processes have significant influence on DBP formation. With increasing bromide concentration, the brominated DBPs significantly increased, but the bromine incorporation factor in the processes was basically consistent at each concentration.  相似文献   
997.
空间规划是支撑旅游地发展规划的核心章节,目前主要依靠规划者经验判断,主观性较强,缺乏客观方面的信息数据支持。论文将GIS格网化与旅游资源评价模型相结合,提出了旅游资源单体采集、旅游资源格网化及其空间分析方法,并融合旅游资源群评价模型、旅游功能区识别模型、旅游线路和空间发展轴线识别模型予以支撑,形成了标准化的旅游资源采集、评价到空间识别的集成技术方法;并以青岛市为例,识别出了旅游资源集群及其发展潜力、旅游功能区和空间拓展轴线,确立了“一心、一带、三轴、五区”的空间发展格局。论文初步探讨了GIS格网化空间分析方法在区域旅游规划中的应用,能够补充传统定性评价方法客观性不足的缺陷,实现复杂旅游资源数据的单体评价、旅游资源集群评价、旅游功能区识别、旅游线路和空间发展轴线优选的系列化分析技术路线,可为延伸旅游规划深度、提高规划精度提供科学参考。  相似文献   
998.
With rapid economic development and urbanization in recent decades, China has experienced the worsening of ambient air quality. For better air quality management to protect human health, Chinese government revised national ambient air quality standards(NAAQS) for particulate matter(PM) in 2012(GB3095-2012). To assess the effectiveness of current NAAQS for PM on public health in Chinese population, we conducted a metaanalysis on published studies examining the mortality risk of short-term exposure to PM with aerodynamic diameters less than 10 and 2.5 μm(PM_(10) and PM_(2.5)) in China. The reported24-hour concentrations of PM_(10) and PM_(2.5) in studies ranged from 43.5 to 150.1 μg/m~3 and 37.5 to 176.7 μg/m~3. In the pooled excess, mortality risk estimates of short-term exposure to PM.In specific, per 10 μg/m~3 increase in PM_(10), we observed increases of 0.40%(95%CI: 0.33%,0.47%), 0.57%(95%CI: 0.44%, 0.70%) and 0.49%(95%CI: 0.40%, 0.58%) in total, respiratory and cardiovascular mortality, per 10 μg/m~3 increase in PM_(2.5), we observed increases of 0.51%(95%CI: 0.38%, 0.63%), 0.62%(95%CI: 0.52%, 0.73%) and 0.75%(95%CI: 0.54%, 0.95%) in total,respiratory and cardiovascular mortality. Finally, we derived 125 μg/m~3 for PM_(10) and 62.5 μg/m~3 for PM_(2.5) as 24-hour recommendation values based on the pooled estimates. Our results indicated that current Chinese NAAQS for PM could be sufficient in mitigating the excess mortality risk from short-term exposure to ambient PM. However, future research on longterm exposure cohort studies in Chinese population is also essential in revising annual averages for PM in Chinese NAAQS.  相似文献   
999.
Particulate matter(PM) in the Kunshan High-Tech zone is studied during a three-month campaign. PM and trace elements are measured by the online pollution monitoring, forecastwarning and source term retrieval system AS3. Hourly measured concentrations of PM_(10), PM_(2.5) and 16 trace elements in the PM_(2.5) section(Ca, Pb, Cu, Cl, V, Cr, Fe, Ti, Mn, Ni, Zn, Ga, As, Se, Sr, Ba)are focused. Source apportionment of trace elements by Positive Matrix Factorization modeling indicates that there are five major sources, including dust, industrial processing, traffic,combustion, and sea salt with contribution rate of 23.68%, 21.66%, 14.30%, 22.03%, and 6.89%,respectively. Prediction of plume dispersion from concrete plant and traffic emissions shows that PM_(10) pollution of concrete plant is three orders of magnitude more than that of the traffic. The influence range can extend to more than 3 km in 1 hr. Because the footprint of the industrial plumes is constantly moving according to the local meteorological conditions, the fixed monitoring sites scattered in a few hundred meters haven't captured the heaviest pollution plume at the local scale of a few km~2. As a more intensive monitoring network is not operationally possible, the use of online modeling gives accurate and quantitative information of plume location, which increases the spatial pollution monitoring capacity and improves the understanding of measurement data. These results indicate that the development of the AS3 system, which combines monitoring equipment and air pollution modeling systems, is beneficial to the real-time pollution monitoring in the industrial zone.  相似文献   
1000.
This work was undertaken to investigate the behaviors and kinetics of toluene adsorption and desorption on activated carbons with varying pore structure. Five kinds of activated carbon from different raw materials were selected. Adsorption isotherms and breakthrough curves for toluene were measured. Langmuir and Freundlich equations were fitted to the equilibrium data, and the Freundlich equation was more suitable for simulating toluene adsorption. The process consisted of monolayer, multilayer and partial active site adsorption types. The effect of the pore structure of the activated carbons on toluene adsorption capacity was investigated. The quasi-first-order model was more suitable for describing the process than the quasi-second-order model. The adsorption data was also modeled by the internal particle diffusion model and it was found that the adsorption process could be divided into three stages. In the external surface adsorption process, the rate depended on the specific surface area. During the particle diffusion stage, pore structure and volume were the main factors affecting adsorption rate. In the final equilibrium stage, the rate was determined by the ratio of meso-and macro-pores to total pore volume. The rate over the whole adsorption process was dominated by the toluene concentration. The desorption behavior of toluene on activated carbons was investigated,and the process was divided into heat and mass transfer parts corresponding to emission and diffusion mechanisms, respectively. Physical adsorption played the main role during the adsorption process.  相似文献   
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