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1.
MnO2/CFP复合电极的制备及电吸附Pb2+特性的研究   总被引:2,自引:2,他引:0  
电极材料的形貌结构与电化学性能等将直接影响着电吸附效果.本研究将二氧化锰(Mn O2)通过电沉积的方法负载于碳纤维纸(CFP)材料上,制备获得了Mn O2/CFP复合电极.所制得的Mn O2/CFP复合电极电化学性质稳定、电容量高,复合电极的单位质量比电容量可高达360 F·g-1.用此电极对初始浓度为6 mg·L-1左右的Pb2+溶液进行电吸附,考察了电沉积时间、电压、p H值等因素对复合电极电吸附效果的影响.结果表明,沉积时间为500 s、电压值为1.0 V、p H值为5.0的条件下可获得最佳的电吸附效果,电吸附3 h后原溶液中残留Pb2+达到0.01 mg·L-1以下,去除效率高达99%以上.本研究为水中重金属离子的去除提供了新的技术选择.  相似文献   

2.
王瑶  吉庆华  李永峰  胡承志 《环境科学》2017,38(9):3747-3754
电吸附去除水中重金属离子具有吸附容量高和电极可再生的优点.本文采用高温水热法还原氧化石墨烯(GO)得到石墨烯水凝胶(GS)并经压片制得GS电极.本文对GS电极的电化学性能进行了测试,考察了GS电极电吸附Pb~(2+)的动力学和热力学特性,以及电极的脱附和循环使用情况.结果表明,GS电极的电化学性能优异,其单位质量比电容高达200.4 F·g~(-1)(1 A·g~(-1));提高电压有利于GS电极电吸附Pb~(2+),电压为-1.2 V时,GS电极对Pb~(2+)的去除率达96.4%;GS电极电吸附Pb~(2+)的饱和吸附量达461.20 mg·g~(-1),是不加电时饱和吸附量的2倍;施加反向电压可以实现Pb~(2+)的脱附和电极再生,电吸附-脱附15次后,电极对Pb~(2+)的去除率保持在95%以上.  相似文献   

3.
晋圣珧  向阳  张隽瑀  张凯  吉庆华 《环境科学》2019,40(9):4091-4097
电吸附高效去除水中重金属离子的关键在于开发性能优异的电极材料.采用2,6-二氨基蒽醌(DA)修饰还原氧化石墨烯(r GO),通过溶剂热法成功制备了DA@rGO复合电极,考察了复合电极的电化学性质及电吸附Pb~(2+)性能.循环伏安测试表明,复合电极电化学性质优异,比电容在电流密度为1 A·g-1时达到304. 4 F·g-1,DA修饰显著提高了复合电极的赝电容.电吸附Pb~(2+)测试表明,施加电压为-1. 2 V时电吸附效果最优,反应60 min后Pb~(2+)去除率达94. 8%.电吸附过程符合一级动力学方程,Langmuir模型拟合得到Pb~(2+)的饱和吸附量为356. 66 mg·g-1,明显高于r GO电极(319. 40 mg·g-1),DA修饰引起的电容增加是复合电极Pb~(2+)吸附量提高的重要原因.使用0. 5 mol·L-1硝酸处理可使电极吸附的Pb~(2+)在5 min内脱附完全,实现吸附剂再生.经过10次电极吸附-脱附循环后,DA@rGO复合电极对Pb~(2+)的吸附去除率保持在88%左右,电极循环性能稳定.  相似文献   

4.
二氧化硫和硫酸盐是硫的重要存在形式,是影响环境空气质量的重要大气污染物.硫酸盐气溶胶是影响全球气候变化的重要大气组分,大气中的硫酸盐气溶胶生命周期短,其浓度空间差异大、时间变化显著.在区域尺度乃至全球尺度研究其迁移转化和区域交叉影响,具有十分重要的科学意义.本研究以2010年SO_2全球排放清单为基础,应用国际通用大气化学模式(Mozart-4),模拟全球大气硫的迁移转化及其季节变化和空间分布特征,并分析全球不同区域间的交叉影响.结果表明:1SO_2柱浓度全球年均值为424.73μg S·m~(-2),中东及南亚最高,达3629.27μg S·m~(-2),南美最低,为181.06μg S·m~(-2).2硫酸盐柱浓度全球年均值为1572.86μg S·m~(-2),东亚年均硫酸盐柱浓度最高,达4556.58μg S·m~(-2),南美最低,为1014.33μg S·m~(-2).3冬季SO_2柱浓度高于其他春夏秋3季,夏季硫酸盐柱浓度高于冬季,主要是由于冬季低温使SO_2不易转化为硫酸盐.4硫酸盐表现出明显的全球迁移特征,全球各区域间交叉影响显著.东亚的净输出量最大,达4.01 Tg S·a~(-1).非洲、中亚及俄罗斯硫酸盐柱浓度的外源影响比例分别高达80.54%和73.00%.  相似文献   

5.
二氧化钛悬浆体系中过硫酸盐对苯酚光催化降解的影响   总被引:1,自引:0,他引:1  
研究了二氧化钛悬浮溶液中过硫酸盐对苯酚的吸附和光催化降解动力学的影响.在过硫酸盐浓度较低的条件下,S2 O2 - 8的加入能有效提高苯酚的光催化降解速率和表观量子产率,UV TiO2 K2 S2 O8体系下的表观量子产率大于UV TiO2 与UV K2 S2 O8两体系下表观量子产率之和;但是,当过硫酸盐浓度较高时,随着S2 O2 - 8浓度的增加,竞争性吸附加剧,二氧化钛表面的苯酚吸附量急剧减少,导致苯酚的降解速率和表观量子产率不升反降,苯酚平衡吸附量与光催化降解速率呈高度一致性.在本实验条件下,当K2 S2 O8浓度为5 0 0mg·L- 1 时表观量子产率达到最大,协同因子达0 3 9.在不同强度的入射光条件下,也能得到相似的结果.此外,讨论了pH值对不同体系TOC去除率的影响,并对在K2 S2 O8存在时TiO2 的光催化机理进行了探讨  相似文献   

6.
镍铝层状氧化物薄膜电极的制备及其除盐性能   总被引:1,自引:1,他引:0  
王婷  朱春山  胡承志 《环境科学》2016,37(2):602-608
水滑石不仅是一种重要的水处理吸附剂,而且在超级电容器方面有广泛应用.本研究采用原位生长法,由泡沫镍作为基体并提供镍源,在泡沫镍表面合成了镍铝复合氧化物(Ni Al-MMO)薄膜即类水滑石煅烧产物.所制得的Ni Al-MMO薄膜电极的电化学性质稳定、电容量高,此薄膜电极的单位质量的比电容量可高达667 F·g-1.对此电极进行电容除盐性能研究,结果表明,增加电压和弱碱性p H环境有利于该电极除盐;初始浓度为0.003 mol·L-1的情况下,最佳工作条件为:电压1.0 V、p H值为8,在此时除盐效率可达58.17%.电极反接可使吸附饱和的电极材料迅速再生,脱附率可达87.96%.本研究为废水中盐离子的去除提供了新的技术选择.  相似文献   

7.
王璐  高湘  聂守田 《环保科技》2010,16(4):29-32
采用复合电极对模拟的含Ni2+废水和含Cu2+废水进行了电吸附试验,讨论了不同pH值、电压、初始浓度对吸附效果的影响和电脱附再生的可行性。试验结果表明:以复合电极为电极材料,采用电吸附的方法可以有效地去除废水中的Ni2+、Cu2+。经过多次电脱附再生后,吸附率和脱附率降低得并不明显,所以对重金属离子进行电脱附再生具有可行性。  相似文献   

8.
水体富营养化是世界各国面临的重大环境污染问题.水中的磷酸盐作为水体富营养化的关键因素,如何有效去除日益引起研究者的关注.本研究利用电吸附技术处理水中PO_4~(3-)、HPO_4~(2-)和H_2PO_4~- 3种常见磷酸盐离子,并分析电吸附和脱附的特性及机理.实验得到电吸附处理K_3PO_4时,离子去除率最大,但脱附率最差,这严重影响电吸附电极的再生性.K_3PO_4溶液中存在大量的OH~-,炭电极对KOH产生物理吸附,该吸附类型比电吸附的双电层吸附难脱附.添加少量HCl调节磷酸盐的pH,减少OH~-,将溶液中PO_4~(3-)转化为HPO_4~(2-)和H_2PO_4~-,可以提高电极的脱附率,增加电极的循环使用效率,同时可增加溶液中磷含量的去除率.炭电极电吸附K_3PO_4+HCl溶液时,电极的再生性良好,连续循环四次,离子去除率由28.7%降为26.6%.  相似文献   

9.
自行研发并制作一种新型卷式活性炭纤维电极电吸附除盐装置,采用了单因素试验分析方法,研究了电压、溶液初始浓度、溶液体积、流量和电极板间距对电吸附除盐效果的影响。结果表明:2 V为最佳电压,当溶液初始浓度1 000 u S/cm,溶液体积100 m L,流量10 m L/min,电极板间距1 mm时,电导率去除率达到40%以上,这表明了卷式活性炭纤维电极在电吸附除盐方面良好的应用前景。  相似文献   

10.
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   

11.
Toxic effects of two agrochemicals on nifH gene in agricultural black soil were investigated using denaturing gradient gel electrophoresis (DGGE) and sequencing approaches in a microcosm experiment. Changes of soil nifH gene diversity and composition were examined following the application of acetochlor, methamidophos and their combination. Acetochlor reduced the nifH gene diversity (both in gene richness and diversity index values) and caused changes in the nifH gene composition. The effects of acetochlor on nifH gene were strengthened as the concentration of acetochlor increased. Cluster analysis of DGGE banding patterns showed that nifH gene composition which had been affected by low concentration of acetochlor (50 mg/kg) recovered firstly. Methamidophos reduced nifH gene richness that except at 4 weeks. The medium concentration of methamidophos (150 mg/kg) caused the most apparent changes in nifH gene diversity at the first week while the high concentration of methamidophos (250 mg/kg) produced prominent effects on nifH gene diversity in the following weeks. Cluster analysis showed that minimal changes of nifH gene composition were found at 1 week and maximal changes at 4 weeks. Toxic effects of acetochlor and methamidophos combination on nifH gene were also apparent. Different nifH genes (bands) responded differently to the impact of agrochemicals: four individual bands were eliminated by the application of the agrochemicals, five bands became predominant by the stimulation of the agrochemicals, and four bands showed strong resistance to the influence of the agrochemicals. Fifteen prominent bands were partially sequenced, yielding 15 different nifH sequences, which were used for phylogenetic reconstructions. All sequences were affiliated with the alpha- and beta-proteobacteria, showing higher similarity to eight different diazotrophic genera.  相似文献   

12.
The effects of arbuscular mycorrhizal (AM) fungus (Glomus mosseae) and phosphorus (P) addition (100 mg/kg soil) on arsenic (As) uptake by maize plants (Zea mays L.) from an As-contaminated soil were examined in a glasshouse experiment.Non-mycorrhizal and zero-P addition controls were included.Plant biomass and concentrations and uptake of As,P,and other nutrients,AM colonization,root lengths,and hyphal length densities were determined.The results indicated that addition of P significantly inhibited root colonization and development of extraradical mycelium.Root length and dry weight both increased markedly with mycorrhizal colonization under the zero-P treatments,but shoot and root biomass of AM plants was depressed by P application.AM fungal inoculation decreased shoot As concentrations when no P was added,and shoot and root As concentrations of AM plants increased 2.6 and 1.4 times with P addition,respectively.Shoot and root uptake of P,Mn,Cu,and Zn increased,but shoot Fe uptake decreased by 44.6%,with inoculation, when P was added.P addition reduced shoot P,Fe,Mn,Cu,and Zn uptake of AM plants,but increased root Fe and Mn uptake of the nonmycorrhizal ones.AM colonization therefore appeared to enhance plant tolerance to As in low P soil,and have some potential for the phytostabilization of As-contaminated soil,however,P application may introduce additional environmental risk by increasing soil As mobility.  相似文献   

13.
Several main metabolites of benzo[a]pyrene (BaP) formed by Penicillium chrysogenum, Benzo[a]pyrene-1,6-quinone (BP 1,6- quinone), trans-7,8-dihydroxy-7,8-dihydrobenzo[a]pyrene (BP 7,8-diol), 3-hydroxybenzo[a]pyrene (3-OHBP), were identified by high-performance liquid chromatography (HPLC). The three metabolites were liable to be accumulated and were hardly further metabolized because of their toxicity to microorganisms. However, their further degradation was essential for the complete degradation of BaP. To enhance their degradation, two methods, degradation by coupling Penicillium chrysogenum with KMnO4 and degradation only by Penicillium chrysogenum, were compared; Meanwhile, the parameters of degradation in the superior method were optimized. The results showed that (1) the method of coupling Penicillium chrysogenum with KMnO4 was better and was the first method to be used in the degradation of BaP and its metabolites; (2) the metabolite, BP 1,6-quinone was the most liable to be accumulated in pure cultures; (3) the effect of degradation was the best when the concentration of KMnO4 in the cultures was 0.01% (w/v), concentration of the three compounds was 5 mg/L and pH was 6.2. Based on the experimental results, a novel concept with regard to the bioremediation of BaP-contaminated environment was discussed, considering the influence on environmental toxicity of the accumulated metabolites.  相似文献   

14.
Sorption of chlorotoluron in ammonium sulfate, urea and atrazine multi-solutes system was investigated by batch experiments. The results showed application of nitrogen fertilizers to the soil could affect the behavior of chlorotoluron. At the same concentration of N, sorption of chlorotoluron decreased as the concentration of atrazine increased on the day 0 and 6 in soil, respectively. The sorption of chlorotoluron increased from 0 to 6 d when soils were preincubated with deionized water, ammonium sulfate and urea solution for 6 d. That indicated incubation time was one of the most important factors for the sorption of chlorotoluron in nitrogen fertilizers treatments. The individual sorption isotherms of chlorotoluron in rubbery polymer and silica were strictly linear in single solute system, but there were competition sorption between pesticides or between pesticides and nitrogen fertilizers. That indicated the sorption taken place by concurrent solid-phase dissolution mechanism and sorption on the interface of water-organic matter or water-mineral matter.  相似文献   

15.
In this study an effort has been made to use plant polyphenol oxidases; potato (Solanum tuberosum) and brinjal (Solanum melongena), for the treatment of various important dyes used in textile and other industries. The ammonium sulphate fractionated enzyme preparations were used to treat a number of dyes under various experimental conditions. Majority of the treated dyes were maximally decolorized at pH 3.0. Some of the dyes were quickly decolorized whereas others were marginally decolorized. The initial first hour was sufficient for the maximum decolorization of dyes. The rate of decolorization was quite slow on long treatment of dyes. Enhancement in the dye decolorization was noticed on increasing the concentration of enzymes. The complex mixtures of dyes were treated with both preparations of polyphenol oxidases in the buffers of varying pH values. Potato polyphenol oxidase was significantly more effective in decolorizing the dyes to higher extent as compared to the enzyme obtained from brinjal polyphenol oxidase. Decolorization of dyes and their mixtures, followed by the formation of an insoluble precipitate, which could be easily removed simply by centrifugation.  相似文献   

16.
RemovalofheavymetalsfromsewagesludgebylowcostingchemicalmethodandrecyclinginagricultureWuQitang,NyirandegePascasie,MoCehuiF...  相似文献   

17.
Single and joint effects of pesticides and mercury on soil urease   总被引:6,自引:3,他引:3  
The influence of two pesticides including chlorimuron-ethyl and furadan and mercury (Hg) on urease activity in 4 soils (meadow burozem and phaeozem) was investigated. The soils were exposed to various concentrations of the two pesticides and Hg individually and simultaneously. Results showed that there was a close relationship between urease activity and organic matter content in soil. Chlorimuron-ethyl and furadan could both activate urease in the 4 soils. The maximum increment of urease activity by chlorimuronethyl was up to 14%-18%. There was almost an equal increase (up to 13%-21%) in the urease activity by furadan. On the contrary, Hg markedly inhibited soil urease activity. A logarithmic equation was used to describe the relationship (P〈0.05) between the concentration of Hg and the activity of soil urease in the 4 tested soils. Semi-effect dose (ED50) values by the stress of Hg based on the inhibition of soil urease in the 4 soils were 88, 5.5, 24 and 20 mg/kg, respectively, according to the calculation of the corresponding equations. The interactive effect of chlorimuron-ethyl or furadan with metal Hg on soil urease was mainly synergic at the highest tested concentrations.  相似文献   

18.
A study was conducted to compare the diversity of 2-, 3-, and 4-chlorobenzoate degraders in two pristine soils and one contaminated sewage sludge. These samples contained strikingly different populations of mono-chlorobenzoate degraders. Although fewer cultures were isolated in the uncontaminated soils than contaminated one, the ability of microbial populations to mineralize chlorobenzoate was widespread. The 3- and 4-chlorobenzoate degraders were more diverse than the 2-chlorobenzoate degraders. One of the strains isolated from the sewage sludge was obtained. Based on its phenotype, chemotaxonomic properties and 16S rRNA gene, the organism S-7 was classified as Rhodococcus erythropolis. The strain can grow at temperature from 4 to 37℃. It can utilize several (halo)aromatic compounds. Moreover, strain S-7 can grow and use 3-chlorobenzoate as sole carbon source in a temperatures range of 10-30℃ with stoichiometric release of chloride ions. The psychrotolerant ability was significant for bioremediation in low temperature regions. Catechol and chlorocatechol 1,2-dioxygenase activities were present in cell free extracts of the strain, but no (chloro)catechol 2,3- dioxygenase activities was detected. Spectral conversion assays with extracts from R. erythropolis S-7 showed accumulation of a compound with a similar UV spectrum as chloro-cis,cis-muconate from 3-chlorobenzoate. On the basis of these results, we proposed that S-7 degraded 3-chlorobenzoate through the modified ortho-cleave pathway.  相似文献   

19.
A field study was conducted in the Taihu Lake region, China in 2004 to reveal the organochlorine pesticide concentrations in soils after the ban of these substances in the year 1983. Thirteen organochlorine pesticides (OCPs) were analyzed in soils from paddy field, tree land and fallow land. Total organochlorine pesticide residues were higher in agricultural soils than in uncultivated fallow land soils. Among all the pesticides, ΣDDX (DDD, DDE and DDT) had the highest concentration for all the soil samples, ranging from 3.10 ng/g to 166.55 ng/g with a mean value of 57.04 ng/g and followed by ΣHCH, ranging from 0.73 ng/g to 60.97 ng/g with a mean value of 24.06 ng/g. Dieldrin, endrin, HCB and α-endosulfan were also found in soils with less than 15 ng/g. Ratios of p,p'-(DDD DDE)/DDT in soils under three land usages were: paddy field > tree land > fallow land, indicating that land usage inlfuenced the degradation of DDT in soils. Ratios of p,p'-(DDD DDE)/DDT >1, showing aged residues of DDTs in soils of the Taihu Lake region. The results were discussed with data from a former study that showed very low actual concentrations of HCH and DDT in soils in the Taihu Lake region, but according to the chemical half-lives and their concentrations in soils in 1980s, the concentration of DDT in soils seemed to be underestimated. In any case our data show that the ban on the use of HCH and DDT resulted in a tremendous reduction of these pesticide residues in soils, but there are still high amounts of pesticide residues in soils, which need more remediation processes.  相似文献   

20.
The contribution of aliphatic-rich plant biopolymer to sorption of hydrophobic organic compounds is significantly important because of their preservation and accumulation in the soil environment,but sorption mechanism is still not fully understood.In this study, sorption of 1-naphthol by plant cuticular fractions was examined to better understand the contributions of respective fraction.Toward this end,cuticular materials were isolated from the fruits of tomato by chemical method.The tomato cuticle sheet consisted of waxes (6.5 wt%),cuticular monomer (69.5 wt%),and polysaccharide (24.0 wt%).Isotherms of l-naphthol to the cuticular fractions were nonlinear (N value (0.82-0.90)) at the whole tested concentration ranges.The KodKow ratios for bulk cuticle (TC1),dewaxed cuticle (TC2),cutin (TC4),and desugared cuticle (TC5) were larger than unity,suggested that tomato bulk cuticle and cutin are much powerful solption medium.Sorption capability of cutin (TC4) was 2.4 times higher than the nonsaponifiable fraction (TC3).The 1-naphthol interactions with tomato cuticular materials were governed by both hydrophobic-type interactions and polar (H-bonding) interactions. Removal of the wax and polysaccharide materials from the bulk tomato cuticle caused a significant increase in the sorption ability of the cuticular material.There was a linear negative trend between K_(oc) values and the amount of polysaccharides or fraction's polarities ((N O)/C);while a linear positive relationship between K_(oc) values and the content of cutin monomer (linear R~2=0.993) was observed for present in the cuticular fractions.Predominant sorbent of the hydrophobic organic compounds (HOCs) in the plant cuticular fraction was the cutin monomer,contributing to 91.7% of the total sorption of tomato bulk cuticle.  相似文献   

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