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31.
多溴联苯醚(PBDEs)是广泛存在于环境中的一种新型持久性有机污染物.四溴联苯醚同分异构体中的BDE-47是多溴联苯醚中最重要的单体之一.试验采用人工土壤培养法,通过亚急性试验,研究了在不同暴露时间阶段下,不同BDE-47剂量对赤子爱胜蚓(Eisenia fetida)抗氧化酶(过氧化氢酶CAT)、代谢酶(谷胱甘肽转移酶GST)以及二者基因表达的影响.结果表明,在暴露14 d和28 d时,CAT活性被诱导上升并且差异显著;GST活性变化差异不显著;CAT基因表达水平在第14 d时呈现抑制效应,在后续的第28 d和第42 d基因表达水平上调;GST基因表达水平整体呈现诱导效应,并且差异显著,随着暴露时间的增加,低毒处理组(10、50 mg·kg-1)的基因表达水平逐渐下调至低于对照组的水平,高毒处理组(100、200 mg·kg-1)的基因表达量仍高于对照组水平;在BDE-47的暴露试验中,CAT与GST活性及其基因表达水平两项指标对低毒处理组较高毒处理组更为敏感.  相似文献   
32.
Zhuang Y  Jin L  Luthy RG 《Chemosphere》2012,89(4):426-432
Polybrominated diphenyl ethers (PBDEs) are recognized as a new class of widely-distributed and persistent contaminants for which effective treatment and remediation technologies are needed. In this study, two kinds of commercially available nanoscale Fe0 slurries (Nanofer N25 and N25S), a freeze-dried laboratory-synthesized Fe0 nanoparticle (nZVI), and their palladized forms were used to investigate the effect of particle properties and catalyst on PBDE debromination kinetics and pathways. Nanofers and their palladized forms were found to debrominate PBDEs effectively. The laboratory-synthesized Fe0 nanoparticles also debrominated PBDEs, but were slower due to deactivation by the freeze-drying and stabilization processes in the laboratory synthesis. An organic modifier, polyacrylic acid (PAA), bound on N25S slowed PBDE debromination by a factor of three to four compared to N25. The activity of palladized nZVI (nZVI/Pd) was optimized at 0.3 Pd/Fe wt% in our system. N25 could debrominate selected environmentally-abundant PBDEs, including BDE 209, 183, 153, 99, and 47, to end products di-BDEs, mono-BDEs and diphenyl ether (DE) in one week, while nZVI/Pd (0.3 Pd/Fe wt%) mainly resulted in DE as a final product. Step-wise major PBDE debromination pathways by unamended and palladized Fe0 are described and compared. Surface precursor complex formation is an important limiting factor for palladized Fe0 reduction as demonstrated by PBDE pathways where steric hindrance and rapid sequential debromination of adjacent bromines play an important role.  相似文献   
33.
The contamination of methyl ten-butyl ether (MTBE) in underground waters has become a widely concerned problem all over the world. In this study, a novel dosed culture system with oxygen supplied by H2O2 was introduced for MTBE aerobic biodegradation. After 7 d, almost all MTBE was degraded by a pure culture, a member of β-Proteobacteria named as PMI, in a closed system with oxygen supply, while only 40% MTBE was degraded in one without oxygen supply. Dissolved oxygen (DO) levels of the broth in closed systems respectively with and without H2O2 were about 5-6 and 4 mg/L. Higher DO may improve the activity of monooxygemase, which is the key enzyme of metabolic pathway from MTBE to tert-butyl alcohol and finally to CO2, and may result in the increase of the degrading activity of PM1 cell. The purge and trap GC-MS result of the broth in closed systems showed that tea-butyl alcohol, isopronol and acetone were the main intermediate products.  相似文献   
34.
The numerous formulated products which are introduced to the market consist of chemical ingredients that may cause various safety and health hazards to the consumers. Therefore, it is extremely important to practice a systematic methodology to formulate products with acceptable safety and health performances. This work presents an index-based methodology to assess the safety and health hazards of the ingredients during the early formulation stage of product design. Hence, new inherent safety and health sub-indexes are introduced to improve the current safety and health hazards that are needed in formulated product design. The inherent safety and health sub-indexes are assigned with scores based on the degree of potential hazards. A higher score indicates a higher safety risk or severe health effect, and vice versa. The proposed methodology will greatly assist the users to identify the adverse safety and health effects caused by the ingredients. Hence, it is pivotal to eliminate or reduce the safety and health impacts from product usage. A case study on common ingredients used in the formulation of paint is presented on this study to describe the proposed method.  相似文献   
35.
以Hg(NO3)2、Cu(NO3)2水溶液为模拟工业废水,以侧链具N、S配位基的网状聚合物冠醚为吸附剂,研究了聚合物冠醚对HP(2+)、Cu(2+)的吸附性能。讨论了溶液温度、pH值、金属离子浓度及时间对吸附性能的影响,该聚合物冠醚对Hg(2+)具有较高的吸附容量和较快的吸附速度。  相似文献   
36.
以国产硅胶担体为固体吸附剂,采集空气中联苯-联苯醚。经热解吸、制冷、闪蒸后,用气相色谱法测定。实验结果,在常温下,国产硅胶对联苯-联苯醚的吸附率达100%;解吸回收率为97.5%:变异系数<5%;方法的检测限为0.4μg。  相似文献   
37.
BACKGROUND: Methyl tertiary butyl ether (MTBE) is the second most highly produced industrial chemical in the US and a frequent groundwater pollutant. At the same time, MTBE is quite persistent to biotic and abiotic decomposition. The goal of this study was to find plant species that could degrade MTBE and might be used in phytoremediation. METHODS: Excised roots and leaves (0.3 g) from more than 24 Danish plant species out of 15 families were kept in glass vessels with 25 ml spiked aqueous solution for 2 to 4 days. MTBE concentrations were 1 to 5 mg/L. Samples were taken directly from the solution with a needle and injected to a purge and trap unit. MTBE and the main metabolite, TBA, were measured by GC/FID. RESULTS AND DISCUSSION: Solutions with roots of poplar (Populus robusta) and a willow hybrid (Salix viminalis x schwerinii) produced TBA in trace amounts, probably stemming from bacteria. Significant MTBE reduction (> 10%) was not observed in any of the tests. Leaves from none of the species (trees, grasses and herbs) reduced the concentration of MTBE in the solution and no TBA, nor any other known metabolite of MTBE, was detected. CONCLUSION: It was not possible to find plants capable of efficiently degrading MTBE. This gives rise to the conclusion that plants probably cannot degrade MTBE at all, or only very slowly. RECOMMENDATIONS AND OUTLOOK: For phytoremediation projects, this has, as consequence, that the volatilization by plants (except with genetically engineered plants) is the only relevant removal process for MTBE. For risk assessment of MTBE, degradation by the plant empire is not a relevant sink process.  相似文献   
38.
以固相微萃取(SPME)结合气相色谱(GC)、气相色谱-质谱联用(GC/MS)技术作为分析检测手段,研究光源、有机溶剂、无机盐与腐殖酸对BDE-28光降解的影响,实验结果表明,光源是影响其降解的主要因素,其次,丙酮、铜离子和腐殖酸对其降解的影响较显著.光源对BDE-28光降解速率的影响为300 W汞灯500 W金卤灯100 W汞灯500 W氙灯;有机溶剂对BDE-28降解速率的影响为甲醇/水(1∶1)甲醇己烷甲苯乙腈丙酮;无机离子的影响各有差别:K+、Na+、SO2-4、NO-3、Cl-对BDE-28降解影响不明显,而Fe3+、NH+4促进BDE-28的降解,Fe2+、Cu2+、Br-抑制BDE-28的降解;腐殖酸抑制BDE-28的降解.  相似文献   
39.
随着碳纳米管的广泛应用,其将不可避免地进入环境中.由于其具有极好的吸附亲和力和吸附容量,碳纳米管可以充当环境中持久性有毒污染物的载体,从而改变共存污染物的生物有效性和生态毒性.为评价淡水沉积物中不同多壁碳纳米管(MWCNTs)对Cd和BDE-47生态毒性的影响,采用沉积物慢性生物测试研究了不同浓度MWCNTs存在下Cd和BDE-47对铜锈环棱螺肝胰脏抗氧化防御系统关键成分超氧化物歧化酶(SOD)与Ⅱ相解毒反应的关键酶谷胱甘肽-S-转移酶(GST)以及脂质过氧化损伤指标丙二醛(MDA)的影响.结果表明,沉积物中低浓度MWCNTs(0.5 mg·g~(-1))增强Cd对铜锈环棱螺的氧化胁迫,中、高浓度(5、50 mg·g~(-1))MWCNTs引起Cd对铜锈环棱螺的氧化损伤,MWCNTs的存在显著增强了沉积物中Cd对铜锈环棱螺的毒性,而且具有浓度-效应关系;低浓度MWCNTs不影响BDE-47对铜锈环棱螺的毒性,中、高浓度MWCNTs显著降低BDE-47的毒性,同样具有明显的浓度-效应关系.因此,在评价MWCNTs的潜在环境风险时,不仅考虑MWCNTs自身的毒性,还应当考虑MWCNTs的浓度、共存污染物的种类和MWCNTs与共存污染物之间的相互作用.  相似文献   
40.
提出了一个可应用于HCCI发动机工作过程研究的DME化学反应动力学简化模型,该模型由28种组分、38个基元反应组成,包括3个子模型,即低温反应和负温度系数区子模型、高温裂解和高温氧化子模型以及甲酸生成过程子模型.通过算例对比分析,该DME简化模型能正确揭示DME燃烧过程主要生成物组分的变化规律,能准确计算DME燃烧过程低温和高温阶段的放热特征时刻,其计算结果与详细机理计算结果吻合.相对于详细机理,简化模型节省了计算时间,为实现化学反应动力学与CFD多维模型耦合的燃烧计算提供了一个可行而有效的途径.  相似文献   
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