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41.
TiO2 nanotubes as solid-phase extraction adsorbent for the determination of
polycyclic aromatic hydrocarbons in environmental water samples 总被引:1,自引:0,他引:1
Bochra Bejaoui Kefi Latifa Latrous El Atrache Hafedh Kochkar Abdelhamid Ghorbel 《环境科学学报(英文版)》2011,23(5):860-867
An analytical method based on TiO2 nanotubes solid-phase extraction (SPE) combined with gas chromatography (GC) was
established for the analysis of seven polycyclic aromatic hydrocarbons (PAHs): acenaphtylene, acenaphthene, anthracene, fluorene,
phenanthrene, fluoranthene and pyrene. Factors a ecting the extraction e ciency including the eluent type and its volume, adsorbent
amount, sample volume, sample pH and sample flow rate were optimized. The characteristic data of analytical performance were
determined to investigate the sensitivity and precision of the method. Under the optimized extraction conditions, the method showed
good linearity in the range of 0.01–0.8 g/mL, repeatability of the extraction (RSD were between 6.7% and 13.5%, n = 5) and
satisfactory detection limits (0.017–0.059 ng/mL). The developed method was successfully applied to the analysis of surface water
(tap, river and dam) samples. The recoveries of PAHs spiked in environmental water samples ranged from 90% to 100%. All the results
indicated the potential application of titanate nanotubes as solid-phase extraction adsorbents to pre-treat water samples. 相似文献
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Xuejun Guo Kunpeng Wang Mengchang He Ziwei Liu Hailin Yang Sisi Li 《环境科学学报(英文版)》2014,26(7):1549-1556
A large amount of solid waste has been produced by the antimony smelting process in the"World Capital of Antimony", Xikuangshan area in China. This study comprehensively investigated the physical and chemical characteristics of the various solid wastes, as well as the leaching behavior of the solid wastes, which included water-quenched slag,arsenic-alkali residue, desulfurized slag and blast furnace dust. These four types of waste were enriched in a variety of heavy metals and metalloids and more specifically with As and Sb levels up to 8.6 × 104 and 3.16 × 105mg/kg, respectively, in arsenic-alkali residue. For desulfurized slag and water-quenched slag, the leaching concentration of Sb significantly exceeded the acceptable limits during the leaching tests using the toxicity characteristic leaching procedure and the synthetic precipitation leaching procedure. In addition, As leaching in arsenic-alkali residue was extraordinarily hazardous, being three orders of magnitude higher than the regulatory level of As. According to the results of the extraction tests, all the tested wastes were classified as hazardous waste. 相似文献
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针对2-萘酚生产废水p H值低、色泽深,亚硫酸盐和萘磺酸盐高、COD浓度高的特点,采用酸化脱硫-两级络合萃取-氧化絮凝工艺处理,介绍了专利工艺的流程设计,给出了主要工艺设计参数及投资运行成本。工程运行结果表明,该工艺设计合理、技术成熟、处理效果稳定,2-萘酚生产废水经处理后达到GB 8978—1996《污水综合排放标准》一级排放标准要求;回收的萘磺酸钠固体可返回2-萘酚生产系统套用;反萃取黑液经蒸发浓缩,合成的减水剂产品各项指标达到或超过GB 8076—2008《混凝土外加剂》高效减水剂指标要求。 相似文献
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研究应用电阻加热强化气相抽提技术对砂土、壤土和黏土中苯去除效果的影响及作用机制.与常规抽提结果相比,在热强化处理作用下气相抽提对砂土和壤土中苯的去除效率提高了13.1%和12.3%,处理时间分别降低75%和14%.热强化处理使得黏土含水率下降,土壤渗透率升高,黏土颗粒表面羧基和乙基的吸收峰消失,有机质含量减少,苯的去除效率与对照相比提高了34%.对于砂土和壤土,热强化主要是通过促进苯在土体中扩散来提高去除效率,从而实现在较短时间内污染物质的大量去除;而对于黏土则是通过降低土壤颗粒表面有机基团的含量,从而降低污染物和土壤颗粒的吸附能力,并通过降低含水率和升高渗透率从而提高土壤中气体的扩散性能,以达到增强气相抽提效果的目的. 相似文献
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采用固相萃取-高效液相色谱法对水中的丙烯酰胺定性、定量分析。结果显示:丙烯酰胺含量在20μg/L~400μg/L之间呈良好线性关系,回归方程Y=0.476 8X+0.845 4,相关系数R为0.997 72,检出限0.1μg/L,样品回收率在71.85%~92.28%之间,相对标准偏差为3.4%~10.9%。该方法减少了有机溶剂用量,缩短了有机溶剂暴露时间,降低污染,且能满足地表水环境质量标准(GB 3838-2002)限值要求,是水中丙烯酰胺含量准确稳定的检测方法。用该方法测定了呼和浩特市引黄入呼左岸、右岸、中浅和中深4个断面水样,均未检出丙烯酰胺。 相似文献
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Selective extraction and separation of Fe, Mn oxides and organic materials in river surficial sediments 总被引:2,自引:0,他引:2
In order to investigate the adsorption mechanism of trace metals to surficial sediments (SSs), a selective extraction procedure was improved in the present work. The selective extraction procedure has been proved to selectively remove and separate Fe, Mn oxides and organic materials (OMs) in the non-residual fraction from the SSs collected in Songhua River, China. After screening different kinds of conventional extractants of Fe and Mn oxides and OMs used for separation of heavy metals in the soils and sediments, NH2OH .HCl (0.1 mol/L) + HNO3 (0.1 mol/L), (NH4)2C2O4 (0.2 mol/L) + H2C2O4 (pH 3.0), and 30% of H2O2 were respectively applied to selectively extract Mn oxides, Fe/Mn oxides and OMs. After the extraction treatments, the target components were removed with extraction efficiencies between 86.09%--3.36% for the hydroxylamine hydrochloride treatment, 80.63%- 101.09% for the oxalate solution extraction, and 94.76%-102.83% for the hydrogen peroxide digestion, respectively. The results indicate that this selective extraction technology was effective for the extraction and separation ofFe, Mn oxides and OMs in the SSs, and important for further mechanism study of trace metal adsorption onto SSs. 相似文献