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991.
水解酸化-缺氧法处理采油废水的污染物迁移降解试验研究 总被引:4,自引:0,他引:4
水解酸化.缺氧法对采油废水有较好的处理效果,采用GC/MS技术对水解酸化-缺氧法处理采油废水过程中污染物的迁移降解进行的研究表明:水解酸化段和缺氧段对采油废水中碳原子为C6-C9、分子量为100—140的有机物均有较好的降解能力。其中,在水解酸化段中酮类、芳烃得到较好的降解,缺氧段中酚类和醚类化合物降解明显。水解酸化-缺氧工艺对于采油废水中的甲苯和二甲苯具有较好的降解能力。 相似文献
992.
针对生物质固体废物量大面广,具有污染和资源利用双重特性,厌氧发酵能源化可促进其污染控制,且过程中部分有机成分在微生物作用下转化成腐殖质(HS).通过分析厌氧发酵过程中HS转化规律、HS结构特征与氧化还原性能、腐殖质还原菌与产甲烷菌活性、产CH4效率之间的响应关系和作用机制研究进展,总结凝练出生物质厌氧发酵系统内HS对CH4的调控原理,为减少厌氧发酵系统内HS对产CH4途径的抑制作用,提高发酵效率的技术研究提供理论支撑. 相似文献
993.
采用时间序列的半参数广义相加模型,在控制了长期趋势、"星期几效应"和气象因素等混杂因素的基础上,分析沈阳市大气污染物及PM2.5中水溶性离子对呼吸系统疾病门诊就诊人数的影响,并按性别和年龄分层建模.结果表明:PM2.5及其各离子成分与呼吸系统疾病门诊人数之间存在关联,并有明显的滞后效应.受冬季供暖燃煤排放影响,PM2.5、NO3-和NH4+呈显著关联,在滞后累积2d后风险最大.最佳滞后时间下,PM2.5的浓度每增加10µg/m3,对应呼吸系统疾病日门诊就诊人数增加百分比(ER)为1.31%(95% CI:1.2%~1.43%);离子成分SO42-、NO3-、NH4+、Cl-、K+、Mg2+、Ca2+和Na+的浓度每增加1个4分位间距(IQR),对应的呼吸系统疾病日门诊就诊人数增加百分比(ER)分别为3.22%(95% CI:2.81%~3.62%)、4.67%(95% CI:4.13%~5.22%)、5.41%(95% CI:4.49%~6.33%)、7.38%(95% CI:3.91%~10.96%)、0.14%(95% CI:-6.34%~7.07%)、7.64%(95% CI:-11.87%~31.47%)、3.57%(95% CI:-2.83%~10.39%)和0.46%(95% CI:-16.64%~21.06%).PM2.5、Cl-、Mg2+、Ca2+和Na+对女性呼吸疾病门诊人数的影响比对男性的影响大.PM2.5、SO42-、Cl-、Ca2+和Na+对≥65岁的老人门诊人数的影响比对15~65岁劳动年龄人群的影响大.表明不同性别、不同年龄由于生理结构和环境因素的不同而引起的差异不同. 相似文献
994.
基于1951~2014年中国北方及周边地区357个气象站点平均最低气温、平均气温和平均最高气温年(月)数据,采用M~K检验等方法,分析了中国北方地区3类气温突变和变暖停滞特征的时空变异性.结果表明:研究区3类气温整体突变年(1978~1999年、1981~2002年、1981~2005年)、分布广泛的普遍突变年(1988年、1989年、1997年)及范围(3a)均依次变晚.整体上,突变年随纬度降低变晚,东北突变早于西北和华北地区.变暖停滞集中于1998和2007年及其前后,3类气温亦依次变晚(1994~2007年、1995~2009年、1998~2010年),由黄河流域中段向其他方向越来越晚.突变至变暖停滞周期整体随纬度降低缩短(3~30a),突变越早周期越长.西北地区突变与变暖停滞前后各时段均值温差最大(2.4℃),温差在1℃左右站点分布最广泛.各时段升(降)温速率整体依次在0.01℃/10a、0.05℃/10a、-0.03℃/10a左右站点分布最广泛,突变后升温最快(0.02~0.16℃/10a),且西北地区对升温贡献最大,变暖停滞后东北地区对降温贡献最大,2时段按平均最低气温、平均最高气温、平均气温顺序升(降)温速率递减.3类气温波动程度减弱,整体随纬度降低.高纬度、高海拔和山地地区突变和变暖停滞较周边地区偏早或偏晚,特征值较大.整个北方地区3类气温突变、变暖停滞、突变与变暖停滞时间及各时段特征值各自具有自身一致性的普遍规律. 相似文献
995.
996.
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
997.
Huihui Han Hengfeng Miao Yajing Zhang Minfeng Lu Zhenxing Huang Wenquan Ruan Huihui Han Hengfeng Miao Yajing Zhang Minfeng Lu Zhenxing Huang Wenquan Ruan 《环境科学学报(英文版)》2018,30(3):335-346
Disinfection byproduct(DBP)precursors in wastewater during the reversed anaerobic–anoxic–oxic(A~2/O)process,as well as their molecular weight(MW)and polarity-based fractions,were characterized with UV scanning,fluorescence excitation emission matrix,Fourier transform infrared and nuclear magnetic resonance spectroscopy.Their DBP formation potentials(DBPFPs)after chlorination were further tested.Results indicated that the reversed A~2/O process could not only effectively remove the dissolved organic carbon(DOC)and dissolved total nitrogen in the wastewater,but also affect the MW distribution and hydrophilic–hydrophobic properties of dissolved organic matter(DOM).The accumulation of low MW and hydrophobic(HPO)DOM was possibly due to the formation of soluble microbial product-like(SMP-like)matters in the reversed A~2/O treatment,especially in the anoxic and aerobic processes.Moreover,DOM in the wastewater displayed a high carbonaceous disinfection byproduct formation potential(C-DBPFP)in the fractions of MW100 k Da and MW5 k Da,and revealed an increasing tendency of nitrogenous disinfection byproduct formation potential(N-DBPFP)with decrease of MW.For polarity-based fractions,the HPO fraction of wastewater showed significantly higher C-DBPFP and N-DBPFP than hydrophilic and transphilic fractions.Therefore,although the reversed A~2/O process could remove most DBP precursors by DOC reduction,it led to the enhancement of DBPFP with the formation and accumulation of low MW and HPO DOM.In addition,strong correlations between C-DBPFPs and SUVA,and between N-DBPFPs and DON/DOC,were observed in the wastewater,which might be helpful for DBPFP prediction in wastewater and reclaimed water chlorination. 相似文献
998.
In recent years there has been an increasing interest in the use of autohydrogenotrophic bacteria to treat nitrate from wastewater. However, our knowledge about the characteristics of extracellular polymeric substances (EPS) releasing by these activities is not yet very advanced. This study aimed to investigate the change in EPS compositions under various pH values and hydrogen flow rates, taking into consideration nitrogen removal. Results showed that pH 7.5 and a hydrogen flow rate of 90 mL/min were the optimal operating conditions, resulting in 100% nitrogen removal after 6 hr of operation. Soluble and bound polysaccharides decreased, while bound proteins increased with increasing pH. Polysaccharides increased with increasing hydrogen flow rate. No significant change of bound proteins was observed at various hydrogen flow rates. 相似文献
999.
Tao Wang Zhenxing Huang Wenquan Ruan Mingxing Zhao Youlian Shao Hengfeng Miao 《环境科学学报(英文版)》2018,30(2):227-234
In this study, a full-scale internal circulation(IC) reactor coupled with an external circulation system was developed to treat high-strength leachate from a municipal solid waste(MSW)incineration plant, in which anaerobic sludge granulation was intensively investigated. Results showed that the IC reactor achieved excellent treatment performance under high organic loading rates(OLR) of 21.06–25.16 kg chemical oxygen demand(COD)/(m3? day). The COD removal efficiency and biogas yield respectively reached 89.4%–93.4% and 0.42–0.50 m3/kg COD.The formation of extracellular polymeric substances(EPS) was closely associated with sludge granulation. Protein was the dominant component in sludge EPS, and its content was remarkably increased from 21.6 to 99.7 mg/g Volatile Suspended Solid(VSS) during the reactor operation. The sludge Zeta potential and hydrophobicity positively correlated with the protein/polysaccharide ratio in EPS, and they were respectively increased from-26.2 m V and 30.35% to-10.6 m V and 78.67%, which was beneficial to microbial aggregation. Three-dimensional fluorescence spectroscopy(3 D-EEM) and Fourier transform infrared spectroscopy(FT-IR)analysis further indicated the importance of protein-like EPS substances in the sludge granulation. Moreover, it was also found that the secondary structures of EPS proteins varied during the reactor operation. 相似文献
1000.
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