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421.
Organic matters (OMs) and their oxidization products often influence the fate and transport of heavy metals in the subsurface aqueous systems through interaction with the mineral surfaces. This study investigates the ethanol (EtOH)-mediated As(III) adsorption onto Zn-loaded pinecone (PC) biochar through batch experiments conducted under Box–Behnken design. The effect of EtOH on As(III) adsorption mechanism was quantitatively elucidated by fitting the experimental data using artificial neural network and quadratic modeling approaches. The quadratic model could describe the limiting nature of EtOH and pH on As(III) adsorption, whereas neural network revealed the stronger influence of EtOH (64.5%) followed by pH (20.75%) and As(III) concentration (14.75%) on the adsorption phenomena. Besides, the interaction among process variables indicated that EtOH enhances As(III) adsorption over a pH range of 2 to 7, possibly due to facilitation of ligand–metal(Zn) binding complexation mechanism. Eventually, hybrid response surface model–genetic algorithm (RSM–GA) approach predicted a better optimal solution than RSM, i.e., the adsorptive removal of As(III) (10.47 μg/g) is facilitated at 30.22 mg C/L of EtOH with initial As(III) concentration of 196.77 μg/L at pH 5.8. The implication of this investigation might help in understanding the application of biochar for removal of various As(III) species in the presence of OM.  相似文献   
422.
The chemical oxygen demand (COD) and NH3-N removal, membrane fouling, sludge characteristics and microbial community structure in a membrane bioreactor (MBR) coupled with worm reactors (SSBWR) were evaluated for 210 days. The obtained results were compared to those from a conventional MBR (C-MBR) operated in parallel. The results indicated that the combined MBR (S-MBR) achieved higher COD and NH3-N removal efficiency, slower increase in membrane fouling, better sludge settleability and higher activities of the related enzymes in the activated sludge. Denaturing gradient gel electrophoresis was used to analyze the microbial community structures in the C-MBR and the S-MBR. The microbial community structure in the S-MBR was more diverse than that in the C-MBR. Additionally, the slow-growing microbes such as Saprospiraceae, Actinomyces, Frankia, Clostridium, Comamonas, Pseudomonas, Dechloromonas and Flavobacterium were enriched in the S-MBR, further accounting for the sludge reduction, membrane fouling alleviation and wastewater treatment.  相似文献   
423.
Sulfamethoxypyridazine(SMP) is one of the commonly used sulfonamide antibiotics(SAs).SAs are mainly studied to undergo triplet-sensitized photodegradation in water under natural sunlight with other coexisting aquatic environmental organic pollutants.In this work,SMP was selected as a representative of SAs.We studied the mechanisms of triplet-sensitized photodegradation of SMP and the influence of selected dissolved inorganic matter,i.e.,anions(Br~-,Cl~-,and NO~-_3) and cations ions(Ca~(2+),Mg~(2+),and Zn~(2+)) on SMP photodegradation mechanism by quantum chemical methods.In addition,the degradation mechanisms of SMP by hydroxyl radical(OH·) were also investigated.The creation of SO_2 extrusion product was accessed with two different energy pathways(pathway-1 and pathway-2) by following two steps(step-I and step-II) in the tripletsensitized photodegradation of SMP.Due to low activation energy,the pathway-1 was considered as the main pathway to obtain SO_2 extrusion product.Step-II of pathway-1 was measured to be the rate-limiting step(RLS) of SMP photodegradation mechanism and the effect of the selected anions and cations was estimated for this step.All selected anions and cations promoted photodegradation of SMP by dropping the activation energy of pathway-1.The estimated low activation energies of different degradation pathways of SMP with OH·radical indicate that OH·radical is a very powerful oxidizing agent for SMP degradation via attack through benzene derivative and pyridazine derivative ring.  相似文献   
424.
北京市郊区夏季臭氧重污染特征及生成效率   总被引:1,自引:0,他引:1       下载免费PDF全文
为研究北京郊区夏季O3(臭氧)重污染过程特征及O3生成的光化学敏感性,基于2016年夏季在北京郊区开展的针对O3及其相关污染物的强化观测试验(7月23日—8月31日,共计40 d),分析了观测期间O3浓度[以φ(O3)计]变化特征、O3重污染过程主控因素与O3敏感性化学特征.结果表明:观测期间φ(O3)超标时有发生,最大小时φ(O3)为151.1×10-9,其中有15 d的φ(O3)最大8 h滑动平均值(O3-max-8h)超过了GB 3095—2012《环境空气质量标准》二级标准限值,占观测天数的37.5%;不同O3重污染过程成因有所不同,城市烟羽传输的污染物对郊区O3重污染过程影响显著(观测期间臭氧重污染过程:过程1,7月27—29日;过程3,8月9—11日;过程4,8月16日;过程5,8月21—24日),区域光化学污染对郊区O3重污染过程也有贡献(观测期间O3重污染过程2:8月4—6日);结合后向气流轨迹进一步辅助说明了不同重污染过程中O3的来源不同.研究还发现,观测区域存在反“周末效应”现象,说明观测区域周末受人为影响较为明显;基于观测数据计算的OPE(O3生成效率)分析了O3光化学敏感性表明,在有OPE值的22 d内NOx控制区和VOCs控制区出现的概率(41%)相等,即观测区域O3对NOx和VOCs均敏感;此外还发现,在O3重污染过程中光化学敏感性会随其反应进程发生改变,由NOx控制区逐渐转变为VOCs控制区.   相似文献   
425.
为估算重庆市夏秋季VOCs(挥发性有机物)对O3和SOA(二次有机气溶胶)的生成潜势,利用在线GC-MS/FID在2015年8月22日-9月23日对重庆市区点和郊区点VOCs开展了为期一个月的实时观测,获得市区点和郊区点$ \varphi $(TVOCs)(总挥发性有机物)分别为41.35×10-9和22.72×10-9,其中市区点以烷烃(35.2%)和烯炔烃(25.2%)为主,郊区点以含氧挥发性有机物(oxygenated volatile organic compounds,OVOCs)(30.6%)和烷烃(26.0%)为主.结合最大增量反应活性量化市区点和郊区点VOCs的OFPs(臭氧生成潜势)分别为149.11×10-9和71.09×10-9,市区点OFPs最大的是乙烯、丙烯、甲苯、C8和C9的芳香烃等,郊区点OFPs最大的VOCs是丙烯醛、异戊二烯和甲基乙烯基酮.结合气溶胶生成系数量化郊区点和市区点VOCs对SOA的生成贡献分别为0.36和1.26 μg/m3,相比国内其余城市VOCs的SOAP(二次有机气溶胶生成潜势)较小,主要以甲基环己烷、正壬烷、正葵烷和十一烷等高碳烷烃,以及甲苯、苯、二甲苯和乙苯等芳香烃的SOAP为主.研究显示,控制烯炔烃和芳香烃的浓度有助于控制重庆市O3的生成,控制高碳烷烃和芳香烃则有助于控制重庆市SOA的生成.   相似文献   
426.
The comprehensive control efficiency for the formation potentials(FPs) of a range of regulated and unregulated halogenated disinfection by-products(DBPs)(including carbonaceous DBPs(C-DBPs), nitrogenous DBPs(N-DBPs), and iodinated DBPs(I-DBPs)) with the multiple drinking water treatment processes, including pre-ozonation, conventional treatment(coagulation–sedimentation, pre-sand filtration), ozone-biological activated carbon(O_3-BAC) advanced treatment, and post-sand filtration, was investigated. The potential toxic risks of DBPs by combing their FPs and toxicity values were also evaluated.The results showed that the multiple drinking water treatment processes had superior performance in removing organic/inorganic precursors and reducing the formation of a range of halogenated DBPs. Therein, ozonation significantly removed bromide and iodide,and thus reduced the formation of brominated and iodinated DBPs. The removal of organic carbon and nitrogen precursors by the conventional treatment processes was substantially improved by O_3-BAC advanced treatment, and thus prevented the formation of chlorinated C-DBPs and N-DBPs. However, BAC filtration leads to the increased formation of brominated C-DBPs and N-DBPs due to the increase of bromide/DOC and bromide/DON.After the whole multiple treatment processes, the rank order for integrated toxic risk values caused by these halogenated DBPs was haloacetonitriles(HANs)》haloacetamides(HAMs) haloacetic acids(HAAs) trihalomethanes(THMs) halonitromethanes(HNMs) 》I-DBPs(I-HAMs and I-THMs). I-DBPs failed to cause high integrated toxic risk because of their very low FPs. The significant higher integrated toxic risk value caused by HANs than other halogenated DBPs cannot be ignored.  相似文献   
427.
The purpose of this study is to investigate the effects of nano-sized or submicro Fe_2O_3/Fe_3O_4 on the bioreduction of hexavalent chromium(Cr(VI)) and to evaluate the effects of nano-sized Fe_2O_3/Fe_3O_4 on the microbial communities from the anaerobic flooding soil.The results indicated that the net decreases upon Cr(VI) concentration from biotic soil samples amended with nano-sized Fe_2O_3(317.1 ± 2.1 mg/L) and Fe_3O_4(324.0 ± 22.2 mg/L) within21 days,which were approximately 2-fold of Cr(VI) concentration released from blank control assays(117.1 ± 5.6 mg/L).Furthermore,the results of denaturing gradient gel electrophoresis(DGGE) and high-throughput sequencing indicated a greater variety of microbes within the microbial community in amendments with nano-sized Fe_2O_3/Fe_3O_4 than the control assays.Especially,Proteobacteria occupied a predominant status on the phylum level within the indigenous microbial communities from chromium-contaminated soils.Besides,some partial decrease of soluble Cr(VI) in abiotic nano-sized Fe_2O_3/Fe_3O_4 amendments was responsible for the adsorption of nano-sized Fe_2O_3/Fe_3O_4 to soluble Cr(VI).Hence,the presence of nano-sized Fe_2O_3/Fe_3O_4 could largely facilitate the mobilization and biotransformation of Cr(VI) from flooding soils by adsorption and bio-mediated processes.  相似文献   
428.
<正>向源模型法和反向受体模型法是进行城市PM_(2.5)源解析的2种方法,两者各有所长。该研究应用三维空气质量模型Weather Research and Forecasting Model with Chemistry(WRF-Chem)模型和受体模型Positive Matrix Factorization(PMF),以2014年10月为研究时段,分别对邯郸市的细微颗粒物(PM_(2.5))进行源解析。PMF模型的解析结果表明,邯郸市PM_(2.5)来源为二次源30.2%,燃煤源25.4%、金属冶炼源15.1%、机动车源14.4%、扬尘源9.8%,生物质燃烧源5.2%。应用WRF-Chem模型,Brute-Force方法解析出的结果为,在本地源贡献中,工业源贡献了49.0%,民用源11.9%、农业源9.6%、交通源3.8%和电厂源-1.5%(负值由于PM_(2.5)前体物之间的非线性反应所致)。应用源模型对二次成分(SO_4~(2-)、NO_3~-和NH_4~+)进行再解析,结果显示,燃煤源源贡献率最大,达到25.7%,其次分别为农业源(24.0%)、工业源(6.5%)、生物质源(1.8%)和机动车(0.03%)。结合2种方法得出,邯郸市的PM_(2.5)中,本地燃煤源贡献了37.1%,其次分别为金属冶炼源(18.4%)、机动车源(15.1%)、扬尘源(13.3%)、生物质燃烧源(6.2%)。  相似文献   
429.
重金属共存严重抑制了微生物降解染料的效率,本研究拟采用EDTA螯合Cr提高Burkholderia cepacia C09G降解复合污染中孔雀绿的效率.实验结果表明,0.1 mmol·L~(-1)孔雀绿单独存在条件下,24 h的生物降解率达到96.2%;然而,在0.5 mmol·L~(-1)Cr(VI)共存条件下,60 h的降解率仅为6.7%.当加入0.5 mmol·L~(-1)EDTA螯合剂后,60 h时孔雀绿的降解率提高到18.8%.当EDTA浓度为0.5 mmol·L~(-1)时,最佳螯合Cr(VI)的浓度为0.7 mmol·L~(-1),此时,60 h后孔雀绿的降解率达到35.3%,对Cr(VI)的吸附率为24.6%.此外,通过EDS、SEM、XPS分析证明,EDTA可以减小Cr(VI)的毒性,Burkholderia cepacia C09G可将吸附的Cr(VI)还原为Cr(III).  相似文献   
430.
分子生物学技术在水处理中的应用研究进展   总被引:2,自引:2,他引:0       下载免费PDF全文
刘怡君 《环境工程》2017,35(4):55-59
利用现代分子生物学技术对微生物进行分析和研究,以解决传统微生物分析成本高、速度慢、准确度较低和灵敏度较差等缺点。介绍分子生物学技术在水处理中的应用现状,并对未来发展方向提出建议。目前分子生物学技术在供水工程中主要用于水中细菌、病毒、原生动物、蠕虫等病原微生物的快速检测以及管网微生物种群的分析,在污水处理中主要用于脱氮除磷过程菌群数量和空间分布的剖析、污泥膨胀成因分析以及监测微生物种群多样性来优化处理工艺。分子生物学技术的深入研究将进一步促进水行业的发展。  相似文献   
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