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131.
疏散中的典型心理行为特征分析 总被引:2,自引:0,他引:2
疏散过程中的心理行为问题在世界范围内越来越受关注.本文以大量的灾后报告对我国火灾事故中遇难者的死亡原因进行分析,总结出在突发性应激事件中造成巨大伤亡的主要心理因素是惊慌和恐惧,并对由于惊慌、恐惧表现出的典型行为特征(如出口选择、过激行为、不同场所的火灾对等)进行调查.结果显示:不同年龄的人群对不同场所火灾的应对方式有显著差异;在火灾等突发事件中遇灾者自己脱离危险环境后发现亲人被困在然险中而返回火场的比例很高;在疏散中青年人有过激行为倾向. 相似文献
132.
北京餐饮源排放细粒子理化特征及其对有机颗粒物的贡献 总被引:10,自引:6,他引:4
调研了北京餐饮业发展现状,通过在线监测、采样分析等手段研究北京4家不同烹调方式的餐馆所排放颗粒物的质量浓度、粒径分布、形貌特征、化学组分,并初步估算餐饮源排放细粒子对北京细粒子中颗粒有机物的贡献.结果表明,餐馆的原料、烹饪过程、油烟去除装置以及客流量都会影响餐馆所排放颗粒物的物理、化学性质.样本餐馆营业期间排放颗粒物PM2 .5质量浓度是当日环境大气PM2 .5质量浓度的8~35倍,PM1 .0在PM2 .5的质量浓度中约占50%~85%.餐饮源排放颗粒物多以固态和液态颗粒物形貌存在,化学组分质量百分数由多到少依次是有机物、无机离子和元素碳,分别占到PM2 .5质量浓度的70%左右、5%~11%和小于2%.初步估计结果表明,北京餐饮源排放细粒子对有机颗粒物的贡献和交通源的排放相当,成为北京细粒子有机颗粒物的主要来源之一.认识餐饮源排放颗粒物的理化性质,可以为改善北京空气质量和保证居民身体健康提供数据支持. 相似文献
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Chemical forms of Zn, Ni, Cu, and Pb in municipal sewage sludge were investigated by adding humus soil to sludge and by
performing sequential extraction procedures. In the final sludge mixtures, Zn and Ni were mainly found in Fe/Mn oxide-bound (F3) and
organic matter/sulfide-bound (F4) forms. For Zn, exchangeable (F1), carbonate-bound (F2), and F3 forms were transformed to F4 and
residual forms (F5). For Ni, F1 and F2 forms were transformed to F1, F2, and F3 forms. Both Cu and Pb were strongly associated with
the stable forms F4 and F5. For Cu, F2 and F3 forms were major contributors, while for Pb, F3 and F4 forms were major contributors to
F5. Humus soil dosage and pH conditions in the sludge were strongly correlated with the forms of heavy metals. Five forms were used
to evaluate metal mobilities in the initial and final sludge mixtures. The mobilities of the four heavy metals studied decreased after 28
days. The metal mobilities in the final sludge mixtures were ranked in the following order: Ni > Zn > Cu = Pb. Leaching tests showed
that the mobilities of Zn and Ni in lower pH conditions (pH 4) were higher than those in higher pH conditions (pH 8). 相似文献
137.
Potential particulate pollution derived from UV-induced degradation of
odorous dimethyl sulfide 总被引:1,自引:0,他引:1
UV-induced degradation of odorous dimethyl sulfide (DMS) was carried out in a static White cell chamber with UV irradiation. The
combination of in situ Fourier transform infrared (FT-IR) spectrometer, gas chromatograph-mass spectrometer (GC-MS), wide-range
particle spectrometer (WPS) technique, filter sampling and ion chromatographic (IC) analysis was used to monitor the gaseous and
potential particulate products. During 240 min of UV irradiation, the degradation e ciency of DMS attained 20.9%, and partially
oxidized sulfur-containing gaseous products, such as sulfur dioxide (SO2), carbonyl sulfide (OCS), dimethyl sulfoxide (DMSO),
dimethyl sulfone (DMSO2) and dimethyl disulfide (DMDS) were identified by in situ FT-IR and GC-MS analysis, respectively.
Accompanying with the oxidation of DMS, suspended particles were directly detected to be formed by WPS techniques. These
particles were measured mainly in the size range of accumulation mode, and increased their count median diameter throughout
the whole removal process. IC analysis of the filter samples revealed that methanesulfonic acid (MSA), sulfuric acid (H2SO4) and
other unidentified chemicals accounted for the major non-refractory compositions of these particles. Based on products analysis and
possible intermediates formed, the degradation pathways of DMS were proposed as the combination of the O(1D)- and the OH- initiated
oxidation mechanisms. A plausible formation mechanism of the suspended particles was also analyzed. It is concluded that UV-induced
degradation of odorous DMS is potentially a source of particulate pollutants in the atmosphere. 相似文献
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