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231.
应用隧道测试方法在天津市五经路隧道于工作日和非工作日对机动车挥发性有机物(VOCs)污染特征及排放因子(EFs)进行研究,采用3.2 L真空采样罐采集隧道内气体样品,应用气相色谱-质谱联用仪(GC-MS)对罐内VOCs组分进行分析,得到99种组分的定量结果.对VOCs浓度水平与变化特征、EFs进行了分析,计算隧道内VOCs的臭氧生成潜势(OFPs)和二次有机气溶胶生成潜势(SOAFPs),并与已发表的研究数据进行了对比.结果表明,隧道入口VOCs平均浓度为(190.85±51.15)μg·m~(-3),中点平均浓度为(257.44±62.02)μg·m~(-3).隧道总排放因子为(45.12±10.97) mg·(km·辆)-1,烷烃、烯烃、炔烃、芳香烃、卤代烃和含氧VOCs(OVOCs)的EFs分别为(22.79±7.15)、(5.04±1.20)、(0.78±0.34)、(9.86±2.81)、(0.26±0.17)和(6.25±2.27) mg·(km·辆)-1,与2009年测试结果相比下降明显.其中,异戊烷、甲苯、乙烯、甲基叔丁基醚(MTBE)和乙烷是机动车排放VOCs中排放因子较高的组分;甲基叔丁基醚/苯(MTBE/B)、甲基叔丁基醚/甲苯(MTBE/T)比值分别为1.07和0.77,说明蒸发排放对机动车排放VOCs的贡献不可忽视.隧道内VOCs的OFPs和SOAFPs分别为(145.50±37.85) mg·(km·辆)-1和(43.87±12.75) mg·(km·辆)-1,较2009年天津测试结果分别降低94.23%和90.88%,OFPs和SOAFPs的锐减与排放标准加严和油品升级密切相关. 相似文献
232.
233.
Christa N. Brunnschweiler Erwin H. Bulte 《Journal of Environmental Economics and Management》2008,55(3):248-264
We critically evaluate the empirical basis for the so-called resource curse and find that, despite the topic's popularity in economics and political science research, this apparent paradox may be a red herring. The most commonly used measure of “resource abundance” can be more usefully interpreted as a proxy for “resource dependence”—endogenous to underlying structural factors. In multiple estimations that combine resource abundance and dependence, institutional, and constitutional variables, we find that (i) resource abundance, constitutions, and institutions determine resource dependence, (ii) resource dependence does not affect growth, and (iii) resource abundance positively affects growth and institutional quality. 相似文献
234.
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
235.
Pilot survey of a broad range of priority pollutants in sediment and fish from the Ebro river basin (NE Spain) 总被引:2,自引:0,他引:2
Lacorte S Raldúa D Martínez E Navarro A Diez S Bayona JM Barceló D 《Environmental pollution (Barking, Essex : 1987)》2006,140(3):471-482
Priority organic pollutants were investigated in sediments and fish collected along the Ebro river basin (NE Spain) to evaluate their occurrence, transport and bioavailability. Sediments were collected in 18 sites and two species of fish were captured in nine sites according to the availability in each area. The sampling sites covered industrial, urban and agricultural areas. Four methods were used to detect 20 organochlorine compounds (OCs), 8 polycyclic aromatic hydrocarbons, 3 organotin compounds, 2 alkylphenols and 40 polybrominated diphenyl ethers (PBDEs) from purified extracts. The contamination pattern was site specific and no downstream increase in concentration of pollutants was observed but rather a generalized low level diffuse pollution. Target compounds were detected in sediments at 0.01 to 2331 microg/kg dry weight, and only OCs and PBDEs were accumulated in benthopelagic fish. Toxicological assessment was performed according to predicted environmental levels and revealed sites where adverse effects could occur. 相似文献
236.
我国植物VOCs排放速率的研究 总被引:17,自引:2,他引:17
1992~2000年,使用流动式、封闭式采样法,气相色谱-火焰离子化检测器,测定了我国4 种气候类型(温带-寒温带,温带,温带-亚热带,热带-亚热带),7 个地区(黑龙江,北京,福建,广东,四川,湖南,云南),共 58 种当地优势树种、庄稼和草地异戊二烯和单萜烯的排放速率.使用G93 算法,换算出相应异戊二烯和单萜烯的标准排放因子,并划分了这些排放因子的等级.同种树种在不同的气候带和季节的排放有明显的差异,通常,VOCs 排放速率南方高于北方,夏季高于冬季;阔叶树主要排放异戊二烯,针叶树主要排放单萜烯,但是我国南方相当数量的阔叶林的排放特征不符合上述规律. 相似文献
237.
Nadeem W. Shah Steven F. Thornton Simon H. Bottrell Michael J. Spence 《Journal of contaminant hydrology》2009,103(3-4):119-133
The potential for aerobic biodegradation of MTBE in a fractured chalk aquifer is assessed in microcosm experiments over 450 days, under in situ conditions for a groundwater temperature of 10 °C, MTBE concentration between 0.1 and 1.0 mg/L and dissolved O2 concentration between 2 and 10 mg/L. Following a lag period of up to 120 days, MTBE was biodegraded in uncontaminated aquifer microcosms at concentrations up to 1.2 mg/L, demonstrating that the aquifer has an intrinsic potential to biodegrade MTBE aerobically. The MTBE biodegradation rate increased three-fold from a mean of 6.6 ± 1.6 μg/L/day in uncontaminated aquifer microcosms for subsequent additions of MTBE, suggesting an increasing biodegradation capability, due to microbial cell growth and increased biomass after repeated exposure to MTBE. In contaminated aquifer microcosms which also contained TAME, MTBE biodegradation occurred after a shorter lag of 15 or 33 days and MTBE biodegradation rates were higher (max. 27.5 μg/L/day), probably resulting from an acclimated microbial population due to previous exposure to MTBE in situ. The initial MTBE concentration did not affect the lag period but the biodegradation rate increased with the initial MTBE concentration, indicating that there was no inhibition of MTBE biodegradation related to MTBE concentration up to 1.2 mg/L. No minimum substrate concentration for MTBE biodegradation was observed, indicating that in the presence of dissolved O2 (and absence of inhibitory factors) MTBE biodegradation would occur in the aquifer at MTBE concentrations (ca. 0.1 mg/L) found at the front of the ether oxygenate plume. MTBE biodegradation occurred with concomitant O2 consumption but no other electron acceptor utilisation, indicating biodegradation by aerobic processes only. However, O2 consumption was less than the stoichiometric requirement for complete MTBE mineralization, suggesting that only partial biodegradation of MTBE to intermediate organic metabolites occurred. The availability of dissolved O2 did not affect MTBE biodegradation significantly, with similar MTBE biodegradation behaviour and rates down to ca. 0.7 mg/L dissolved O2 concentration. The results indicate that aerobic MTBE biodegradation could be significant in the plume fringe, during mixing of the contaminant plume and uncontaminated groundwater and that, relative to the plume migration, aerobic biodegradation is important for MTBE attenuation. Moreover, should the groundwater dissolved O2 concentration fall to zero such that MTBE biodegradation was inhibited, an engineered approach to enhance in situ bioremediation could supply O2 at relatively low levels (e.g. 2–3 mg/L) to effectively stimulate MTBE biodegradation, which has significant practical advantages. The study shows that aerobic MTBE biodegradation can occur at environmentally significant rates in this aquifer, and that long-term microcosm experiments (100s days) may be necessary to correctly interpret contaminant biodegradation potential in aquifers to support site management decisions. 相似文献
238.
气候变化与自然灾害 总被引:8,自引:0,他引:8
气候变化与自然灾害是当今科学研究的两大热点,两者之间在一定程度上具有相关性,但目前要确切地定量计算气候变化对自然灾害的强度和出现频率的影响还很困难。本文在分析气候变化与自然灾害关系的基础上,研究了气候变化对我国自然灾害的影响。研究结果显示:1.在千年尺度上,长江流域的大旱和气候变冷成正相关,而长江流域的大涝以及黄河流域的大旱和大涝与气候冷暖过渡期成正相关;2.在百年尽度上,近1042年来,共出现281次全国性大旱和大涝,平均每百年出现27次,在地域分布上以南涝北旱为主;3.就百年至千年尺度的气候变化对自然灾害的影响而言,气候冷冷组合期(1301~1900)易发生全国性大涝,而冷暖组合期(950~1300年,1901~1991年)易发生全国性大旱。总的来说,冷冷组合期的大旱大涝发生频率明显大于暖期,但不同地区有差异;4.在其它影响方面,台风、地震与海啸灾害在冷暖组合期(20世纪)均有比冷冷组合期(14和19世纪)多的趋势。因此,气候变暖将使防灾任务更加艰巨。 相似文献
239.
240.
为研究兰州市夏季大气挥发性有机物(VOCs)污染特征和来源,采用实时在线监测仪器TH-300B (GC-MS/FID)等多种设备联用,于2021年7月开展为期1个月的综合观测.结果表明,监测期间总挥发性有机物ρ(TVOCs)为99.77μg·m-3,烷烃占比最大,其次是芳香烃和含氧挥发性有机物(OVOCs),烯炔烃和卤代烃占比较小,各组分浓度呈现早晚高,中午低的日变化特征.VOCs臭氧生成潜势(OFP)前10种物质贡献率占57.3%,二次有机气溶胶(SOA)生成潜势前10种物质贡献率占93.10%,以芳香烃和高碳烷烃为主,其中,甲苯和间/对-二甲苯对OFP和SOA贡献最大.采用正交矩阵因子分解法(PMF)进行污染来源解析,其中工业溶剂源(22.25%)、油漆涂料源(21.70%)和机动车尾气源(16.25%)是研究区环境空气中VOCs的主要来源;基于污染源排放清单法,2017年兰州市VOCs排放量为94761.6 t,主要来自溶剂使用源和移动源,贡献率分别为56.70%和18.03%.因此解决兰州大气复合污染问题,实现O3和PM2.5协同控制,应以工业溶剂排放和机动车管控为主,重点减少VOCs中甲苯和间/对-二甲苯等芳香烃化合物排放. 相似文献