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71.
If organic matter is burnt, the combustion of wood produces the highest amounts of polycyclic aromatic hydrocarbons (PAHs) compared with other fossil energy sources such as oil, coal, or gas. Emissions from wood combustion are increasingly of special interest due to the rising use of wood as a renewable energy source in residential heating in Europe. To the authors' knowledge, reproducible wood-specific PAH patterns in soot were identified for the first time by use of a sampling interval of only 5 min in this study. The short sampling interval was enabled by the very sensitive analytical method of gas chromatography–atmospheric pressure laser ionization–mass spectrometry (GC-APLI-MS) applied. The analysis of 40 PAH of soot from wood logs of spruce, pine, larch (softwood) and beech, birch, oak (hardwood), and wood pellets, as well as wood briquettes, showed 13.46–250.62 mg/kg for ∑40 PAH and 10.75–177.94 mg/kg for the U.S. Environmental Protection Agency PAH standard (without acenaphthylene and anthracene). Highest concentrations occurred in the samples from birch with bark, beech, and wood briquettes. Indeno[1,2,3-cd]pyrene, naphthalene, and alkylated naphthalenes were also detected. Significant concentrations of the very toxic dibenzopyrenes (up to 11.30 mg/kg) are reported. Softwood soot contained highest amounts of 2–4-ring PAH, followed by hardwood which is in accordance with the presence of highest amounts of abietic acid in softwood, a known precursor of retene and phenanthrene. PAH in soot from five spruce samples from different locations show a mean ∑40 PAH concentration of 13.46 mg/kg (n = 5, minimum 8.03, maximum 23.32 mg/kg, SD = 5.65) and exhibited a typical pattern that differed from all other wood soot samples. The distributions of alkylated naphthalenes of the spruce samples show a bell-shape distribution in contrast to the alkylated phenanthrenes/anthracenes of all samples (except the wood pellets), showing a slope distribution. The data indicate that wood-specific PAH patterns exist and under the applied conditions, spruce logs produced the least toxic soot.  相似文献   
72.
Two industrial sites were investigated based on years of available hydrogeologic information and monitoring data for soil and groundwater. Collected data were forensically evaluated using age-dating and fingerprinting methods. The previous business uses of the project sites were as a gas station, laundry/dry-cleaning service, and car wash with petroleum underground storage tanks (USTs). As a result, these sites were exposed to a number of toxic contaminants at relatively high concentrations. Source control was necessary for successful remediation and the ultimate removal of the remaining compounds from these industrial sites. Although contaminated soil around the source was excavated during the remedial action and the high concentrations of contaminants were reduced, typical groundwater contaminants such as petroleum hydrocarbons as gasoline (TPH-G), benzene, toluene, ethylbenzene, xylenes (BTEX), and oxygenates including methyl tert-butyl ether (MTBE), diisopropyl ether (DIPE), ethyl tert-butyl ether (ETBE), tert-amyl methyl ether (TAME), and tert-butyl alcohol (TBA) were persistently found at the studied sites around the source points. The plume and concentration of contaminants had changed their shapes and strength for all monitoring periods. Thus, additional source control seems to be a requirement for the complete removal of source contamination, which must be ascertained with groundwater and soil monitoring on a regular time base. For the study sites, monitored natural attenuation was relatively feasible for the long-term plan; however, it did not offer a perfect remediation solution for an ultimate goal because of residual toxic compounds that might have affected the surrounding residential areas at higher concentrations than their health limits. Therefore, as a remediation strategy, the combination of clean-up technology and natural attenuation with monitoring activities are more highly recommended than either clean-up or natural attenuation used separately.  相似文献   
73.
The aim of this study was to determine the level of 26 polycyclic aromatic hydrocarbons (PAHs) at parking garages and to provide the necessary annual information based on occupational inhalation exposure and non-occupational inhalation exposure, which carry risks for the environment. For this purpose, 22 samples were collected continuously from both gas and particulates phase PAHs from two parking garages at Konya City Center, Turkey. The exposure-based risk of these samples was evaluated using concentrations of the carcinogenic PAH compounds. None of the 26 PAHs measured had values exceeding the recommended exposure limits (RELs) standard values for inhalation rate recommended by the World Health Organization (WHO). Exposure levels of gas and particulate PAHs for the occupational group and the public (children and adults who spend time in shopping centers) were found to be 0.07–28.24 μgm?3 and 0.05–5.753 μgm?3, respectively, representing levels two to four times higher than those at the control site. Maximum daily inhalation of B[a]Py was estimated at 1.33 ngd?1 for exposure of the public and as 274 ngd?1 for the occupational group. It is believed that traffic makes a substantial contribution to the PAH profile, which had relatively high concentrations of naphthalene (Napth) and coronene (Coro). Highly carcinogenic dibenzo(a,l)pyrene (B[al]Pyre) was found in the ambient air at two parking garages. Napth and phenanthrene (Phen) were the main compounds found in nearly all the tested samples. In this study, benzo[e]pyrene (B[e]Py) was used as a reference for PAHs because its concentration is stable and does not change seasonally. Considering the importance of these compounds in relation to human health, the aim of this work was to characterize and quantify the more toxic PAHs in parking garages. Conducting PAH sampling and their chemical analysis is very costly and labor intensive. This study produced data that can be a powerful tool for environmental forensics.  相似文献   
74.
南京大气中多环芳烃的相分布   总被引:3,自引:0,他引:3  
采用玻璃纤维滤膜(GF)和聚氨基甲酸乙酯泡膜(PUF)同时采集南京大气中颗粒态和气态上的多环芳烃(PAHs),用气质联用仪分析了16种优先控制的PAHs,研究了PAHs在南京大气中的相分布,研究结果表明,颗粒态和气态样品中16种PAHs的平均浓度值分别为20.49ng/m3和182.45ng/m3,2~3环的PAHs主要分布在气态中,而>4环的PAHs主要分布在颗粒态中。  相似文献   
75.
表面活性剂在多环芳烃污染土壤修复中的应用   总被引:6,自引:2,他引:4  
王宏光  郑连伟 《化工环保》2006,26(6):471-474
介绍了单一表面活性剂(非离子表面活性剂、生物表面活性剂)、阴-非离子混合表面活性剂对多环芳烃的增溶作用、增溶机理及无机离子对表面活性剂增溶能力的影响,综述了化学表面活性剂和生物表面活性剂在污染土壤生物修复中的应用。由于生物表面活性剂具有许多独特的优点,今后应加强生物表面活性剂的开发与应用研究。  相似文献   
76.
将木粉、谷壳、甘蔗渣、垃圾衍生燃料(RDF)四种废弃物在两种过量空气系数下进行燃烧,采集其烟气中的可吸入颗粒物(PM10)样品并分析,获得了颗粒物中多环芳烃的质量分数和排放特性,并对不同环数的芳烃进行了比较,最后分析了不同样品中的多环芳烃的毒性参数.  相似文献   
77.
模拟实验研究了苯并(a)芘在黄河水体不同粒径颗粒物上的吸附作用,重点探讨了颗粒物粒径对苯并(a)芘的表面吸附和分配作用的影响.结果表明:(1)苯并(a)芘在黄河水体颗粒物上的吸附符合表面吸附-分配作用复合模式(2)苯并(a)芘在粒径d≥0.025 mm颗粒物上的吸附以表面吸附为主,表面吸附对吸附的贡献在68.7%至82.4%之间;当苯并(a)芘液相平衡浓度为0~8.87μg·L-1时,其在粒径0 007 mm≤d<0.025 mm颗粒物上的吸附以表吸附作用为主,当液相平衡浓度大于8.87μg·L-1时,吸附以分配作用为主;苯并(a)芘在粒径d<0.007 mm颗粒物上的吸附以分配作用为主;(3)苯并(a)芘在不同粒径颗粒物上的表面吸附对总吸附的贡献大小顺序为:(d≥0.025 mm)>(0.007 mm≤d<0 025 mm)>(d<0.007 mm);(4)苯并(a)芘在不同粒径颗粒物中的分配系数与有机质含量呈线性相关,其标化分配系数Koc约为1.26×105L·kg-1.  相似文献   
78.
蒽降解菌与铜绿假单胞菌融合子的特性研究   总被引:4,自引:1,他引:3  
将蒽降解菌An815和绿色荧光蛋白标记铜绿假单胞菌(Pseudomonas aeruginosa/EGFP)P原生质体融合,得到了既能高效降解蒽,又能产生生物表面活性剂的融合子F。研究了它的形态特征、生理生化特性、产表面活性剂的能力、对蒽的降解性能及生长繁殖情况。结果表明,融合子菌落和菌体形态,产脓青素,荧光色素的特性类似于铜绿假单胞菌亲本,但其大多生理生化特性酷似An815亲本而不同于铜绿假单胞菌亲本;融合子有较好产表面活性剂的能力,72 h内将表面张力由70.2 mN/m降至36.5mN/m;在蒽的反应体系中,32h内融合子和亲本An815对蒽的降解转化率分别为86.7%,59.4%,融合子对蒽的降解速率比An815提高了27.3%;在蒽的反应体系中融合子和亲本生长曲线相似。  相似文献   
79.
蒽生物降解及其动力学分析   总被引:1,自引:0,他引:1  
从长期被石油污染的土壤中分离了一株优势菌,经鉴定为铜绿假单胞菌,研究了该菌株对蒽的降解性能,结果发现该菌株对蒽有良好的降解效果。经过147h的降解,蒽的浓度从100mg/L降至27.5mg/L,降解了72.5mg/L,降解率达72.5%,显示了极强的降蒽能力。同时,进行了动力学分析,结果表明蒽的残留浓度Y(mg/L)与时间t(h)符合方程Y=90.4322e(-0.0098)x。  相似文献   
80.
利用固相萃取-气相色谱/串联质谱法(SPE-GC-MS/MS),对太湖流域上游城镇常州武南地区的地表水体和典型排放源中的4种芳香胺类污染物(AAs)进行连续2年监测,综合分析了2018~2019年间AAs的污染及浓度特征.结果表明,武南地区河网中目标AAs的总浓度范围为相似文献   
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