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1.
非离子表面活性剂Tween20对菲生物降解的影响   总被引:10,自引:1,他引:9  
杨建刚  刘翔  余刚  龙涛  佘鹏  刘铮 《环境科学》2004,25(1):53-56
以菲(PHE)为典型多环芳烃(PAHs),利用PAHs优势降解菌,研究了非离子表面活性剂Tween20(TW20)对PAHs类疏水性有机物生物降解过程的影响结果表明,TW20对PHE具有较好的增溶效果;TW20具有很好的生物降解性;不同浓度的TW20存在情况下,降解菌对PHE都有很好的去除效果.TW20可以用于PAHs污染的生物修复.  相似文献   

2.
The use of surfactants to enhance plant-microbe associated dissipation in soils contaminated with polycyclic aromatic hydrocarbons(PAHs) is a promising bioremediation technology. This comparative study was conducted on the effects of plant-microbe treatment on the removal of phenanthrene and pyrene from contaminated soil, in the presence of low concentration single anionic, nonionic and anionic-nonionic mixed surfactants. Sodium dodecyl benzene sulfonate(SDBS) and Tween 80 were chosen as representative anionic and nonionic surfactants, respectively. We found that mixed surfactants with concentrations less than 150 mg/kg were more effective in promoting plant-microbe associated bioremediation than the same amount of single surfactants. Only about(m/m) of mixed surfactants was needed to remove the same amount of phenanthrene and pyrene from either the planted or unplanted soils, when compared to Tween 80. Mixed surfactants( 150 mg/kg) better enhanced the degradation efficiency of phenanthrene and pyrene via microbe or plant-microbe routes in the soils. In the concentration range of 60–150 mg/kg, both ryegrass roots and shoots could accumulate 2–3 times the phenanthrene and pyrene with mixed surfactants than with Tween 80. These results may be explained by the lower sorption loss and reduced interfacial tension of mixed surfactants relative to Tween 80, which enhanced the bioavailability of PAHs in soil and the microbial degradation efficiency. The higher remediation efficiency of low dosage SDBS-Tween 80 mixed surfactants thus advanced the technology of surfactant-enhanced plant-microbe associated bioremediation.  相似文献   

3.
非离子表面活性剂溶液中多环芳烃的溶解特性   总被引:15,自引:1,他引:14  
杨建刚  刘翔  余刚  龙涛  佘鹏  刘铮 《环境科学》2003,24(6):79-82
采用3种典型非离子表面活性剂(Tween80、Tween20和Triton X-100),对4种典型多环芳烃萘(naphtha-lene)、菲(phenanthrene)、芴(fluorene)和芘(pyrene)进行了溶解特性研究.结果表明,非离子表面活性剂对多环芳烃具有较好的增溶效果,在浓度大于临界胶束浓度(CMC)时,多环芳烃的溶解度与表面活性剂浓度成正比例线性相关通过质量溶解率(WSR)的比较,确定3种非离子表面活性剂对多环芳烃的增溶效果为Triton X-100>Tween80>Tween20,与其HLB值呈负相关.在非离子表面活性剂溶液中,多环芳烃的正辛醇-水分配系数(Kow)与其胶束-水分配系数(Km)呈现良好的线性相关关系.  相似文献   

4.
文章研究了几种非离子和阴离子表面活性剂在单一或混合条件下对多环芳烃(PAHs)萘和菲的增溶作用,并分析了无机盐对表面活性剂增溶PAHs的强化效果.结果表明,在相同浓度条件下,非离子表面活性剂对菲和萘的增溶效果均高于阴离子表面活性剂,其增溶能力大小顺序为:Tween 80 >TX-100> Tween 20> SDS>SDBS.将非离子与阴离子表面活性剂混合后,对萘和菲的增溶作用大于单一阴离子表面活性剂而小于单一非离子表面活性剂,且增溶效果随着非离子表面活性剂比例的增加而增大.低浓度(0.03 mol/L)的NaCl和Na2SO4可大幅度促进表面活性剂对萘和菲的增溶效果,但随着无机盐浓度的提高,对增溶效果的促进作用不明显.  相似文献   

5.
An integrative technology including the surfactant enhanced sorption and subsequentdesorption and biodegradation of phenanthrene in the soil-water system was introduced and tested. For slightly contaminated agricultural soils, cationic-nonionic mixed surfactant- enhanced sorption of organic contaminants onto soils could reduce their transfer to plants, therefore safe-guarding agricultural production. After planting, residual surfactants combined with added nonionic surfactant could also promote thedesorption and biodegradation of residual phenanthrene, thus providing a cost-effective pollution remediation technology.0ur results showed that the cationic-nonionic mixed surfactantsdodecylpyridinium bromide (DDPB) and Triton X-100 (TX100) significantly enhanced soil retention of phenanthrene. The maximum sorption coefficient Kd* of phenanthrene for contaminated soils treated by mixed surfactants was about24.5 times that of soils without surfactant (Kd ) and higher than the combined effects of DDPB and TX100 individually, which was about 16.7 and 1.5 times Kd , respectively.0n the other hand, TX100 could effectively remove phenanthrene from contaminated soils treated by mixed surfactants, improving the bioavailability of organic pollutants. Thedesorption rates of phenanthrene from these treated soils were greater than 85% with TX100 concentration above2000 mg/L and approached 100% with increasing TX100 concentration. The biodegradation rates of phenanthrene in the presence of surfactants reached over 95% in30days. The mixed surfactants promoted the biodegradation of phenanthrene to some extent in 10-22days, and had no obvious impact on phenanthrene biodegradation at the end of the experiment. Results obtained from this study provide some insight for the production of safe agricultural products and a remediation scheme for soils slightly contaminated with organic pollutants.  相似文献   

6.
表面活性剂Tween80及DOM对土壤中菲、芘解吸的影响   总被引:1,自引:0,他引:1  
王艮梅  孙成  谢学群 《环境科学》2007,28(4):832-837
采用室内序批试验研究了水溶性有机物(DOM)及表面活性剂Tween80对污染土壤中菲、芘解吸行为的影响.结果表明,DOM能够增加土壤中菲、芘的解吸率,且猪粪堆肥的DOM作用效果较好;随着体系中Tween80浓度的增加,土壤中菲、芘的解吸率也明显地增加,当Tween80浓度为150 mg·L-1时,菲、芘的解吸率分别是对照的1.7倍(菲)和6.2倍(芘);DOM与Tween80联合作用时受Tween80浓度的影响,低浓度时联合作用效果不明显,当Tween80为150 mg·L-1时,菲、芘的解吸率显著增加且大于两者单独作用的结果之和.试验结果还表明,同等条件下高相对分子质量DOM组分(>25000)对土壤中菲、芘的解吸作用大于低相对分子质量DOM组分(<1 000).  相似文献   

7.
Polyporus sp. S133, a fungus collected from contaminated soil, was used to degrade phenanthrene, a polycyclic aromatic hydrocarbon, in a mineral salt broth liquid culture. A maximal degradation rate (92%) was obtained when Polyporus sp. S133 was cultured for 30 days with agitation at 120 r/min, as compared to 44% degradation in non-agitated cultures. Furthermore, the degradation was a ected by the addition of surfactants. Tween 80 was the most suitable surfactant for the degradation of phenanthrene by Polyporus sp. S133. The degradation rate increased as the amount of Tween 80 added increased. The rate in agitated cultures was about 2 times that in non-agitated cultures. The mechanism of degradation was determined through the identification of metabolites; 9,10-phenanthrenequinone, 2,2’-diphenic acid, phthalic acid, and protocatechuic acid. Several enzymes (manganese peroxidase, lignin peroxidase, laccase, 1,2-dioxygenase and 2,3-dioxygenase) produced by Polyporus sp. S133 were detected during the incubation. The highest level of activity was shown by 1,2-dioxygenase (187.4 U/L) after 20 days of culture.  相似文献   

8.
表面活性剂强化含水层修复技术(SEAR)已广泛应用于地下含水层有机污染修复.本研究选取环境修复过程中常使用的8种表面活性剂:聚氧乙烯月桂醚(Brij 30)、脂肪醇聚氧乙烯醚(AEO-9)、吐温80(Tween 80)、鼠李糖脂、曲拉通X-100(TritonX-100)、烷基糖苷(APG)、脂肪醇聚氧乙烯醚硫酸钠(AES)、十二烷基磺酸钠(SDS),利用静、动态试验优选出高效环保的表面活性剂,探索表面活性剂浓度、离子强度对汽油增溶效果的影响,同时确定最佳表面活性剂复配体系,并开展室内模拟试验及性能评价验证其修复效果.结果表明:(1)8种表面活性剂中鼠李糖脂对汽油的增溶能力表现最优;AEO-9、Tween 80和Brij 30更易吸附在中砂介质;Tween 80与TritonX-100对油污砂洗脱效果最好.综合优选结果确定TritonX-100为最优效的单一表面活性剂.(2)随着表面活性剂浓度和离子强度的增加,溶液中汽油浓度分别呈现先增加后下降和持续下降的趋势.(3)通过将优选表面活性剂TritonX-100与洗脱效果最好的Tween 80进行混合确定最优复配比为1∶1,该复配体系下汽...  相似文献   

9.
Tween60和SDS强化白腐真菌修复DDT污染土壤   总被引:2,自引:0,他引:2  
为了提高DDT污染土壤的修复效果,研究了非离子表面活性剂Tween60及阴离子表面活性剂SDS在单一和组合两种方式对人工污染黑土中白腐真菌Phlebia lindtneri GB1027降解去除DDT的强化作用.结果表明,Tween60和SDS均能不同程度地促进土壤中DDT的生物降解,尤其在两种表面活性剂浓度为1.0mg/g干土时,土壤中DDT的降解率分别达到最高的62.9%和53.9%.相同浓度下,Tween60比SDS更有利于提高DDT污染土壤的生物修复效果,去除率提高接近10%.将Tween60与SDS以不同质量比例组合处理后的DDT去除率大小为:Tween60-SDS(3:1)>Tween60-SDS(2:1)>Tween60-SDS(1:1),尤其在质量比为3:1和2:1时的DDT去除率甚至高于Tween60单独处理时的去除率,表明将两种类型的表面活性剂组合后对提高DDT的生物可利用性产生了协同效果.研究还发现,菌株接种量越高,土壤中DDT的降解去除率越高,当接菌量达到1.0mL/g干土时,DDT的30d去除率达到最高的70.9%.在土壤含水率为10%~50%范围内,白腐真菌对DDT的降解去除效果随着土壤含水率的升高而增加,当土壤含水率达到50%时,土壤中有约70%的DDT被降解去除.本研究结果进一步证实了利用表面活性剂强化白腐真菌修复有机污染土壤的可行性.  相似文献   

10.
混合表面活性剂对多环芳烃的增溶作用及机理   总被引:43,自引:5,他引:43  
比较了研究了单一和混合表面活性剂对萘、苊、蒽、菲、芘的增溶作用及其机理。混合表面活性剂/单一表面活性对多环芳烃协同增溶/增溶作用的大小与水溶液中表面活性剂的结构、浓度、组成及有机溶质本身的性质有关。在临界胶束浓度(CMC)以上,单一表面活性剂对多环芳烃的增溶作用顺序为TritonX100>Brij35>TritonX305,与其亲水亲油平衡值(HLB)呈负相关;混合表面活性剂对多环芳烃能产生显著的增溶作用,其协同增溶作用顺序为SDS-TritonX305>SDS-Brij35>SDS-TritonX100,协同增溶作用的大小与其中的非离子表面活性剂的HLB值及多环芳烃的辛醇-水分配系数呈正相关。混合表面活性剂溶液的CMC值降低、溶质在胶束相/水相间分配系数Kmc的增大是产生协同增溶作用的主要原因。  相似文献   

11.
Solubilizing experiments were carried out to evaluate the ability of biodiesel to remove polycyclic aromatic hydrocarbons (PAHs) from highly contaminated manufactured gas plant (MGP) and PAHs spiked soils with hydroxypropyl-β-cyclodextrin (HPCD) and tween 80 as comparisons. Biodiesel displayed the highest solubilities of phenanthrene (420.7 mg·L−1), pyrene (541.0 mg·L−1), and benzo(a)pyrene (436.3 mg·L−1). These corresponded to several fold increases relative to 10% HPCD and tween 80. Biodiesel showed a good efficiency for PAH removal from the spiked and MGP soils for both low molecular weight and high molecular weight PAHs at high concentrations. Biodiesel was the best agent for PAH removal from the spiked soils as compared with HPCD and tween 80; as over 77.9% of individual PAH were removed by biodiesel. Tween 80 also showed comparable capability with biodiesel for PAH solubilization at a concentration of 10% for the spiked soils. Biodiesel solubilized a wider range of PAHs as compared to HPCD and tween 80 for the MPG soils. At PAH concentrations of 229.6 and 996.9 mg·kg−1, biodiesel showed obvious advantage over the 10% HPCD and tween 80, because it removed higher than 80% of total PAH. In this study, a significant difference between PAH removals from the spiked and field MGP soils was observed; PAH removals from the MGP soil by HPCD and tween 80 were much lower than those from the spiked soil. These results demonstrate that the potential for utilizing biodiesel for remediation of highly PAH-contaminated soil has been established.  相似文献   

12.
采用六种不同离子类型、分子结构的表面活性剂研究表面活性剂的浓度、离子类型和分子结构对其毒性的影响.结果表明: 表面活性剂的毒性随浓度的增加而升高;表面活性剂的离子类型对其毒性影响的大小顺序一般为:阳离子表面活性剂>阴离子表面活性剂>非离子表面活性剂,但同时又受表面活性剂分子结构的影响;对于具有类似分子结构的表面活性剂而言,直链长的表面活性剂要比短的毒性小.  相似文献   

13.
专性菌系对石油烃污染土壤的修复性能   总被引:1,自引:0,他引:1  
从焦化废水厂的活性污泥中采用“邻苯二酚-石油烃”双底物驯化获得石油烃的专性降解菌系,在最佳环境条件下研究其对石油污染土壤的修复性能.高通量测序分析显示,驯化后的专性菌系以产黄杆菌属(Rhodanobacter sp.)为主,占比41%.最适降解温度为30~35℃,最佳pH值为7~8.聚山梨酯-80(吐温80)可作为碳源促进专性菌系的生长,提高石油烃的降解效率,并且添加吐温80比十二烷基硫酸钠(SDS)更利于石油烃的降解.研究表明,当吐温80的浓度为5CMC(即375mg/L)时,石油烃的降解效率最高.在最佳环境条件下,为期80d修复试验,构建的专性菌系石油烃降解效率稳定在77%,这证实了双底物驯化模式获得的专性菌系对石油污染土壤具有良好的修复性能.  相似文献   

14.
从焦化废水厂的活性污泥中筛选间二甲苯混合降解菌,并研究非离子型表面活性剂吐温80(C_(64)H_(124)O_(26))对混合菌降解间二甲苯的强化作用.研究结果表明:驯化后的间二甲苯混合降解菌以产黄杆菌属(Rhodanobacter sp.)为主,占比41.2%;仅存在吐温80作为单一碳源时,高浓度的吐温80对混合降解菌没有明显的抑制作用;吐温80与间二甲苯共存时,当吐温80浓度为2 CMC,反应72 h后间二甲苯的降解率达到最高,为76%;提前12 h(较混合降解菌)投加浓度为2 CMC的吐温80,最利于菌种的生长繁殖及间二甲苯的降解.  相似文献   

15.
表面活性剂增效洗脱修复技术被广泛应用于土壤修复. 本文选取11种非离子型和3种离子型表面活性剂对多环芳烃(PAHs,菲、芘、苯并[a]芘)污染土壤进行洗脱研究,筛选出洗脱效果较好的表面活性剂,并深入探索表面活性剂浓度、洗脱时间、固液比等因素以及表面活性剂的复配对土壤PAHs增效洗脱的影响,旨在比选出一种高效洗脱土壤PAHs的表面活性剂并对其洗脱方法进行优化. 结果表明:①表面活性剂浓度为10 g/L、固液比为1∶20条件下,聚氧乙烯醚-10(NSF10)的去除率最高,达到78%;其次为曲拉通X-100(TX-100)和吐温80(TW-80),去除率分别为76.7%和73.4%. ②随着表面活性剂添加浓度的增加,土壤PAHs的去除率增大,当表面活性剂浓度超过5 g/L时,PAHs去除率的增幅减缓,可见,5 g/L是相对有效且经济的表面活性剂添加浓度. ③当洗脱时间为16 h时,NSF10对PAHs的洗脱达到平衡,继续延长洗脱时间,洗脱效果并未增强. ④增加NSF10用量有利于洗脱,固液比1∶40是最优固液比,此时PAHs的去除率已达到固液比为1∶100时的85.2%. ⑤非离子表面活性剂NSF10、TX-100、TW-80与阴离子表面活性剂SDS分别以体积比9∶1进行复配时均取得了优于单一活性剂的洗脱效果,NSF10与SDS体积比为7∶3时,增溶洗脱效果最为明显,比单一表面活性剂提高了18.2%. 研究显示,NSF10是一种高效的PAHs洗脱剂,添加浓度为5 g/L、洗脱时间为16 h、固液比为1∶40是其最优参数选择,其与SDS以体积比7∶3进行复配可进一步提升增溶洗脱效果.   相似文献   

16.
To attain a better understanding of the effects of surfactants on the metabolic kinetics of hydrophobic organic compounds, the biodegradation of phenanthrene by Citrobacter sp. SA01 was investigated in a batch experiment containing Tween 80, sodium dodecyl benzene sulfonate and liquid mineral salt medium. The Monod model was modified to effectively describe the partition, phenanthrene biodegradation and biopolymer production. The results showed that Tween 80 and sodium dodecyl benzene sulfonate (each at 50 rag/L) enhanced phenanthrene metabolism and poly-β-hydroxybutyrate production as indicated by the increasing amounts of intermediates Coy 17.2% to 47.9%), and percentages of poly-β- hydroxybutyrate (by 107.3% and 33.1%) within the cell dry weight when compared to their absence. The modified Monod model was capable of predicting microbial growth, phenanthrene depletion and biopolymer production. Furthermore, the Monod kinetic coefficients were largely determined by the surfactant-enhanced partition, suggesting that partitioning is a critical process in surfactant-enhanced bioremediation of hydro- phobic organic compounds.  相似文献   

17.
吐温80对硝基苯的增溶作用和无机电解质作用机理研究   总被引:3,自引:1,他引:2  
李隋  赵勇胜  徐巍  戴宁 《环境科学》2008,29(4):920-924
研究了在10℃条件下,非离子表面活性剂吐温80对硝基苯的增溶作用.结果表明,吐温80在临界胶束浓度(CMC)以上能够显著提高硝基苯的溶解度,对硝基苯的增溶曲线呈线性关系,MSR值为5.093,lgKm为3.499.硝基苯的增溶作用为吐温80胶束中聚氧乙烯链形成的聚醚微环境作用的结果.并考察了4种无机电解质NaCl、KCl、CaCl2、MgCl2对硝基苯增溶作用的影响,结果表明,4种高浓度(≥500 mg·L-1)无机电解质的加入,均使吐温80溶液中硝基苯的浓度有所增加,增溶曲线仍呈线性关系.在吐温80与无机电解质质量比为2∶1、5∶1和10∶1时,增溶曲线的MSR值与lgKm值均有提高,硝基苯在吐温80胶束中的分配增强.原因为随着无机电解质与吐温80胶束发生盐析作用.吐温80胶束体积变大,为硝基苯提供了更大的增溶空间.非离子表面活性剂-无机电解质复配体系可以作为表面活性剂强化修复中的一种冲洗液,提高非离子表面活性剂的使用效率,降低成本.  相似文献   

18.
表面活性剂对白腐真菌降解多环芳烃的影响   总被引:13,自引:0,他引:13  
陈静  王学军  胡俊栋  陶澍 《环境科学》2006,27(1):154-159
研究了4种表面活性剂吐温80(Tween80)、曲拉通100(Trition X-100)、十二烷基苯磺酸钠(LAS)、十二烷基硫酸钠(SDS)对白腐真菌降解水溶液和土水系统中多环芳烃(PAHs)的影响.结果表明,表面活性剂的类型、浓度、PAHs的赋存状态以及体系pH值、温度等均影响着PAHs的降解.在水溶液中(无土),加入4种表面活性剂均降低溶液中PAHs的降解.在土水系统中,Trition X-100和SDS抑制PAHs降解,而Tween80和LAS对PAHs的影响则受到浓度的影响.低浓度Tween80和LAS对土壤中PAHs的降解没有促进作用,甚至有微弱的抑制作用,但适当浓度的Tween80和LAS促进PAHs降解,并且对土壤中PAHs降解的促进作用随着浓度的增大而逐渐增大,但过高浓度的Tween80和LAS没有表现出对PAHs降解更大的促进作用.  相似文献   

19.
The increasing manufacture of surfactants and their wide application in industry,agriculture and household detergents have resulted in large amounts of surfactant residuals being discharged into water and distributed into sediment. Surfactants have the potential to enhance arsenic mobility, leading to risks to the environment and even human beings. In this study, batch and column experiments were conducted to investigate arsenic mobilization from contaminated sediment by the commercial anionic surfactants sodium dodecylbenzenesulfonate(SDBS), sodium dodecyl sulfate(SDS), sodium laureth sulfate(AES)and nonionic surfactants phenyl-polyethylene glycol(Triton X-100) and polyethylene glycol sorbitan monooleate(Tween-80). The ability of surfactants to mobilize arsenic followed the order AES SDBS SDS ≈ Triton X-100 Tween 80. Arsenic mobilization by AES and Triton X-100 increased greatly with the increase of surfactant concentration and p H, while arsenic release by SDBS, SDS and Tween-80 slightly increased. The divalent ion Ca~(2+) caused greater reduction of arsenic mobilization than Na~+. Sequential extraction experiments showed that the main fraction of arsenic mobilized was the specifically adsorbed fraction. Solid phase extraction showed that arsenate(As(V)) was the main species mobilized by surfactants,accounting for 65.05%–77.68% of the total mobilized arsenic. The mobilization of arsenic was positively correlated with the mobilization of iron species. The main fraction of mobilized arsenic was the dissolved fraction, accounting for 70% of total mobilized arsenic.  相似文献   

20.
溴化十四烷基吡啶对黑麦草吸收土壤中菲的影响   总被引:1,自引:0,他引:1  
研究了澳化十四烷基吡啶(Myrlstylpyridinium bromide,MPB)对黑麦草吸收土壤中菲的影响.结果表明.由于MPB能显著增强吸附固定土壤中的菲,限制其从土壤固相向土壤水相迁移,从而可降低土壤水相中菲浓度,导致黑麦草吸收积累菲的程度降低.在两种不同菲污染水平的土壤中,MPB添加浓度为0~600 mg·kg-1时,黑麦草根系和茎叶中菲含量均随MPB添加量的增加而降低.当MPB添加浓度为600 mg·kg-1时.黑麦草根系菲含量分别为0.12 mg·kg-1和0.35 mg·kg-1,分别比对照低了77.0%和53.3%;茎叶中菲含量为0.12 mg·kg-1和0.26 mg·kg-1,分别比对照低了64.7%和50.9%.  相似文献   

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