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71.
Tartivel R Tatin R Delhaye T Maupas A Gendron A Gautier S Lavastre O 《Chemosphere》2012,89(7):805-809
Some plants are known as indoor air purifiers. A large number of studies report kinetic purification results for an extensive panel of plants, i.e. the pollutant concentration (volatile organic compounds, as known as VOC, most of the time) is continuously monitored by gas chromatography. However, only a few papers describe the mechanisms involved in such processes. This study deals with the use of secondary ion mass spectrometry imaging as an efficient tool to locate atmospheric pollutant as bromotoluene within the Hedera helix plant (leaf, roots) and the substrate on which it was previously grown. Hedera helix plants have been placed in a pollution chamber with control of the exposure parameters. Plant and soil samples excised were transferred into a fixative solution of glutaraldehyde and paraformaldehyde for a few days, were dehydrated using ethanol and were embedded with resin. Cross sections were made from the pale brown solids obtained. Then, a device using a cathodic pulverization device capable of depositing a few nanometers of gold atoms over the sample was used to make the surface electronically conductive for the NanoSIMS. Hence, polluted and unpolluted samples of Hedera helix and substrates were obtained following a careful procedure that allowed for the discrimination between polluted and nonpolluted ones. Nanoscale spatial resolution was an invaluable tool (NanoSIMS) to achieve this, and proved that VOCs, such as bromotoluene, were actually trapped by plants such as Hedera helix. 相似文献
72.
Snowmobile use in Yellowstone National Park has been shown to impact air quality, with implications for the safety and welfare
of Park staff and other Park resource values. Localized impacts have been documented at several high-use sites in the Park,
but the broader spatial variability of snowmobile emissions and air quality was not understood. Measurements of 87 volatile
organic compounds (VOCs) were made for ambient air sampled across the Park and West Yellowstone, Montana, during 2 days of
the 2002–2003 winter use season, 1 year before the implementation of a new snowmobile policy. The data were compared with
similar data from pristine West Coast sites at similar latitudes. Backward trajectories of local air masses, alkyl nitrate-parent
alkane ratios, and atmospheric soundings were used to identify the VOC sources and assess their impact. Different oversnow
vehicle types used in the Park were sampled to determine their relative influence on air mass pollutant composition. VOCs
were of local origin and demonstrated strong spatiotemporal variability that is primarily influenced by levels of snowmobile
traffic on given road segments at different times of day. High levels of snowmobile traffic in and around West Yellowstone
produced consistently high levels of benzene, toluene, and carbon monoxide. 相似文献
73.
Mingming Lu Prabhat Lamichhane Fuyan Liang Eric Imerman Ming Chai 《Water, Air, & Soil Pollution: Focus》2008,8(3-4):359-367
The odorous air emissions from confined animal feeding operations (CAFOs), such as swine, poultry and dairy farms, are increasingly
raising community complaints. Odorous emissions can result in health damages, psychological discomforts and adverse aesthetic
effects in the community. However, these emissions are not well characterized up to now due to the lack of legislation, the
limitations in sampling and instrumentation techniques, and the complexity of the emissions themselves. This study is aimed
at the development of a high volume sampler and sorbent assembly to identify the odor causing compounds from a diary CAFO.
The sorbent was custom designed to target the potential compounds that may exist in a dairy farm and was validated in laboratory
with a synthetic odor from the swine manure. The actual samples at the diary farm were collected in spring and summer of 2005.
The sorbents were solvent extracted and individual odor compounds were identified using GC–MS (gas chromatography–mass spectroscopy).
The data obtained indicated that high volume sampling can shorten the sampling time from days to within 4 h. Both volatile
organic compounds (VOCs) and volatile fatty acids (VFAs) have been identified from the dairy farm, such as phenol, methylphenol,
4-ethyl phenol, indole, methyl indole, benzyl alcohol, hexanoic acid, valeric acid and iso-valeric acid, together with some nitrogen containing compounds that have not been reported before. 相似文献
74.
建立了使用活性炭管采集臭气中的挥发性有机物,经二硫化碳解吸,用GC-MS仪Scan扫描方式确定挥发性有机物的组分后优化GC-MS条件定性定量分析上海化学工业区污水处理厂臭气中主要挥发性有机物的方法。结果表明,从臭气中检测出11种VOCs,线性相关系数R2均大于0.99,相对标准偏差为3.0%~4.7%,除了苯乙烯、α-甲基苯乙烯和4-甲基苯乙烯的解吸效率依次分别为72%、74%和66%,其他挥发性有机物的解吸效率均为91%~100%。本方法操作简便,能够有效分离和准确测定臭气中挥发性有机物,具有较低的检出限和较好的精确度,适合臭气中挥发性有机物的检测分析,可为臭气控制提供可靠的数据。 相似文献
75.
76.
Yu Y Wen S Lü H Feng Y Wang X Sheng G Fu J 《Environmental monitoring and assessment》2008,137(1-3):275-285
The diurnal variation of atmospheric carbonyls and VOCs in a forest in south China were studied in summer 2004. Twenty kinds
of carbonyls and eight kinds of VOCs were identified and quantified. Formaldehyde and acetaldehyde were the two most abundant
carbonyls, while the most abundant VOCs were isoprene, followed by o-xylene. Most C3-C10 carbonyls had higher concentrations from 09:00 to 15:00, and their levels were lower during night-time and often reached
the lowest in early morning. Formaldehyde and acetaldehyde, however, showed two high levels in their diurnal patterns partly
due to their different sources and sinks. The VOCs had different diurnal patterns compared to most carbonyls. The highest
concentrations were observed from 03:00 to 06:00 for 1-butene, from 06:00 to 12:00 for isoprene, and from 12:00 to 15:00 for
α-pinene. The highest levels for aromatic hydrocarbons occurred during midnight and the lowest in late afternoon. According
to the study, emissions from vegetation and photo-oxidation of gas-phase hydrocarbons were the main sources for some carbonyls
and VOCs in this region. Other compounds, such as formaldehyde, acetaldehyde and BTEX, showed anthropogenic sources. 相似文献
77.
便携式GC/MS热脱附法直接测定环境空气中挥发性有机物 总被引:3,自引:1,他引:2
采用便携式气相色谱/质谱联用热脱附法直接测定环境空气中的挥发性有机物,优化了试验条件。方法在5×10-9~100×10-9范围内线性良好,39种化合物的检出限为1.1μg/m3~19μg/m3,标准气体平行测定的RSD≤11.0%,回收率在80%~120%之间。 相似文献
78.
利用物料衡算和源排放测试对江苏省典型汽车涂装企业VOCs排放特征进行研究,并提出最佳治理技术。结果表明,大客车单位涂装面积VOCs排放量达到300 g/m2以上,小轿车为40~60 g/m2。苯系物是VOCs排放的重要组分,最高占比为33.2%~64.6%。乙酸丁酯、异丙醇、丁醇等醇酯类物质近年来广泛用于代替苯系物溶剂,其排放占比为29.6%~61.2%。汽车涂装行业最佳治理技术包括采用3C1B、水性免中涂等先进涂装工艺,用粉末涂料、水性涂料和高固体成分涂料等代替溶剂型涂料,从源头控制排放。采用干式漆雾分离技术、转轮浓缩吸附-蓄热式焚烧技术等先进尾气治理技术,VOCs去除率可达99%以上。 相似文献
79.
室内空气有机污染的研究现状 总被引:13,自引:1,他引:12
主要讨论了室内空气中有机物污染的研究现状。重点介绍了室内空气中多环芳烃 (PAHs)、挥发性有机物(VOCs)、醛类化合物等的污染状况及来源。简要叙述了室内空气污染的影响因素及对人体的健康风险评价。 相似文献
80.
Sjöström AE Collins CD Smith SR Shaw G 《Environmental pollution (Barking, Essex : 1987)》2008,156(3):1284-1289
Nonylphenol polyethoxylates (NPEOs) are surfactants found ubiquitously in the environment due to widespread industrial and domestic use. Biodegradation of NPEOs produces nonylphenol (NP), an endocrine disruptor. Sewage sludge application introduces NPEOs and NP into soils, potentially leading to accumulation in soils and crops. We examined degradation of NP and nonylphenol-12-ethoxylate (NP12EO) in four soils. NP12EO degraded rapidly (initial half time 0.3-5 days). Concentrations became undetectable within 70-90 days, with a small increase in NP concentrations after 30 days. NP initially degraded quickly (mean half time 11.5 days), but in three soils a recalcitrant fraction of 26-35% remained: the non-degrading fraction may consist of branched isomers, resistant to biodegradation. Uptake of NP by bean plants was also examined. Mean bioconcentration factors for shoots and seeds were 0.71 and 0.58, respectively. Removal of NP from the soil by plant uptake was negligible (0.01-0.02% of initial NP). Root concentrations were substantially higher than shoot and seed concentrations. 相似文献