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281.
建立了同时测定工作场所空气中多苯类、多环芳烃类、不饱和脂肪族酯类化合物的检测方法,该方法操作简便,重复性好,在目标化合物质量浓度2~100 mg/L范围内线性良好,回收率90%,RSD5%,检出限为0.4~0.6 mg/L。结果表明,方法适用于工作场所空气中多苯类、多环芳烃类、不饱和脂肪族酯类化合物的检测要求。 相似文献
282.
Paul Olusegun Bankole Kirk Taylor Semple Byong-Hun Jeon Sanjay Prabhu Govindwar 《Frontiers of Environmental Science & Engineering》2020,14(6):113
283.
Screening level risk assessment models are used by many countries to assess the treatability of organic chemicals during the sewage treatment process, especially those that are new to commerce. The performance of one such model, the sewage treatment plant model, is evaluated in the current study by comparing model predictions with actual measurement data collected at various stages of a typical full-scale activated sludge type sewage treatment plant. A suite of ten polycyclic aromatic hydrocarbons (PAHs) with widely varying physico–chemical properties were monitored for the comparison. Model predicted removal efficiencies were in very good agreement with those measured for all ten PAHs. Observed chemical concentrations and their trends at various stages of the sewage treatment process were also well simulated by the model. Results also suggest that a reasonable first approximation estimate of a range for the biodegradation half-life needed for the model may be obtained by dividing reported aqueous biodegradation half-life by scaling factors of 50 and 150. 相似文献
284.
城市化及汽车的发展导致城市大气中多环芳烃(PAHs)含量较高,强致癌作用污染物苯并(a)芘(BaP)含量也相应增高。植物是大气环境天然的过滤器,能滞留、吸附和累积空气中多种污染物。选择广州市8种常见行道树,4种乔木:红花羊蹄甲(Bauhiniablakeana)、腊肠树(Cassiafistula)、高山榕(Ficus... 相似文献
285.
分析了广州市3条河涌底泥中有机质、石油烃、Cd、Cr、Cu、Ni、Pb、Zn等主要污染物的垂直分布特征。结果表明:曾边涌、南村涌、会江涌底泥中有机质平均值分别为43.15mg/kg、10.80 mg/kg、34.81 mg/kg,石油烃含量平均值分别为:1644 mg/kg,2427 mg/kg,6763 mg/kg。有机质和石油烃垂直变化特征相似,曾边涌呈现表层底泥含量低而底层高的特征,南村涌呈现随深度增加而降低的趋势,会江涌呈现先降低后上升的趋势,3条河涌底泥中不同重金属垂直变化规律不一样;河涌底泥中污染物所呈现的垂直分布规律并不总是上层污染物浓度高而下层低的正常沉积特征。因此,在考虑通过清淤改善河流水质时,应考虑河流污染的历史,并调查沉积物中污染物垂直分布的实际情况。 相似文献
286.
典型土壤中多环芳烃纵向迁移过程模拟研究 总被引:1,自引:0,他引:1
选择北京潮土、清源潮棕壤、江西红壤和黑龙江黑土4种典型土壤,采用土柱淋滤模拟实验方法,以菲和芘为代表,对比考察多环芳烃在不同土壤中的纵向迁移过程,综合分析土壤基本理化性质对多环芳烃纵向迁移过程的影响。结果表明:土壤细颗粒(0~20μm)含量和土壤有机质是制约多环芳烃在土壤中纵向迁移的主要因素,容重和阳离子交换量对该环境过程影响不大。淋滤结束后土柱中多环芳烃残留量监测结果显示:北京潮土中,菲和芘的平均浓度最低,分别为8.81,9.94 mg/kg;黑龙江黑土中,两者的残留浓度最高,分别达14.62、17.02 mg/kg。最后,SPSS相关性分析结果表明,土柱中菲、芘的残留量与土壤细颗粒(0~20μm)含量的相关系数分别为0.99和0.93,与土壤有机质的相关系数分别为0.74和0.88。 相似文献
287.
M.A. Osman M. Belal A.M. Nomrossy A.M. Yousse 《Journal of environmental science and health. Part. B》2013,48(3):295-306
Abstract The carbon adsorption method was used for separating organic matter from large samples of drainage, river and tap water. The carbon chloroform extract (CCE) was separated into different solubility fractions and the neutral fraction was separated into aliphatic, aromatic and oxy‐compounds using column chromatography. The aromatic fraction was subjected to TLC, IR and UV analysis. The pesticide endrin was present in both river and tap water at concentrations of 0.7 and 1.5 ppb, respectively. 相似文献
288.
Leif Nelson James Barker Tom Li Neil Thomson Mario Ioannidis John Chatzis 《Journal of contaminant hydrology》2009,109(1-4):82-90
A pilot scale field trial was conducted to evaluate the recovery of volatile, light non-aqueous phase liquids (LNAPLs) using a novel remediation method termed supersaturated water injection (SWI). SWI uses a patented technology to efficiently dissolve high concentrations of CO2 into water at elevated pressures. This water is injected into the subsurface resulting in the nucleation of CO2 bubbles at and away from the injection point. The nucleating bubbles coalesce, rise and volatilize residual LNAPL ganglia. In this study, an LNAPL composed of 103 kg of volatile pentane and hexane, and 30 kg of non-volatile Soltrol was emplaced below the water table at residual saturation. The SWI technology removed 78% of the pentane and 50% of the less volatile hexane. Contaminant mass was still being removed when the system was shut down for practical reasons. The mass removed is comparable to that expected for air sparging but a much smaller volume of gas was injected using the SWI system. 相似文献
289.
底泥中多环芳烃的处理技术进展 总被引:3,自引:0,他引:3
底泥中多环芳烃(PAHs)的处理方法主要有物化处理和生物处理。物化处理方法有湿式空气氧化、溶剂浸提、热解吸等;生物处理有好氧处理和厌氧处理。物化处理速度快、效果明显,但能耗高、投资大;生物处理方法虽然能耗低,但速度慢、降解率较低。实际运用中宜发展物化和生物的组合工艺。 相似文献
290.