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701.
为了研究通道换乘地铁车站的客流疏运过程及风险点,文章针对某单通道换乘车站,通过对车站通道和客流分析,提出了优化的客流流线;并基于智能个体和矢量空间模拟技术,建立了地铁换乘车站的疏运模型,模拟了高峰时间段内的客流疏运过程。数值模拟结果显示了交叉客流、拥堵发生位置及原因,辨识了高风险位置,并提出了整改措施。文章提出的模拟方法和结论可为国内外类似车站制定客流组织方案及通道设计提供参考。 相似文献
702.
Numerical simulation for impacts of hydrodynamic conditions on algae growth in Chongqing Section of Jialing River, China 总被引:6,自引:0,他引:6
Hydrodynamic conditions are important factors for planktonic algae growth, through introducing two parameters which express the optimal velocity and the velocity range for planktonic algae growth, a new velocity factor was put forward for the formula of growth rate. Therefore, the two-dimensional unsteady ecological dynamic model for algae growth was established to analyze the effects of hydrodynamic conditions on algae growth in Chongqing Reach of Jialing River in China. The temporal and spatial distribution of Chlorophyll-a (Chl-a) concentration was simulated numerically for various water levels, under climate conditions in period of high frequency for algae blooms of Three Gorges Reservoir and nutrition status at present in the research reach. The corresponding locations and areas of likely algae blooms were analyzed and forecasted. The results showed that about 0.04 m s−1 was the optimal velocity for algae growth, and the occurrence of algae blooms in large scale is almost impossible because of relatively high water flow velocity for Jialing River. 相似文献
703.
Polycyclic aromatic hydrocarbons in effluents from wastewater treatment plants and receiving streams in Tianjin, China 总被引:1,自引:0,他引:1
Weixiao Qi Huijuan Liu Jiuhui Qu Chengzhi Hu Huachun Lan Michael Berg Huimin Ren Wei Xu 《Environmental monitoring and assessment》2011,177(1-4):467-480
Surface water, suspended particulate matter, pore water, and sediment samples were collected and analyzed for polycyclic aromatic hydrocarbons (PAHs) in Yongding New River, South Drainage Canal and North Drainage Canal, which receive most of wastewater from industrial city of Tianjin. PAH concentrations in effluent samples of wastewater treatment plants (WTP) discharging into the South Drainage Canal and North Drainage Canal were quantified for the first time. The results showed that the discharge of the WTPs recently only contributed to the PAH contamination in the canals near the outlets of the WTPs. PAH levels in sediments of the streams were greatly higher than those in soils by riverbank probably due to receiving large amounts of untreated wastewater. Unusually high benz[a] anthracene concentration strongly influenced the seasonal and spatial variation of total PAH concentrations in South Drainage Canal. Paired samples t test of ??Nap, Fl, Phe, Fluo and ??Nap, Phe, Fluo, Chry concentrations, which were dominant components in the air samples from non-heating and heating season, respectively, in the suspended particulate matters from the streams showed that PAH source from air deposition was more important for Yongding New River than that for South Drainage Canal and North Drainage Canal. Source apportionment based on PAH profiles indicated that coal combustion was the major PAH contamination source, and coke oven sources and wood combustion also contributed to the PAH contamination of the streams. This was further indicated by organic petrography analysis. 相似文献
704.
Deming Dong Zhiyong Guo Xiuyi Hua Ying Lan Jinting Zhou Xiaoou Ding Qianqian Qiao 《Environmental Chemistry Letters》2011,9(3):361-367
The sorption by solid materials is one of the most important processes that affect the fate of hydrophobic organic pollutants
in aquatic systems. Current studies focus on the sorption of hydrophobic pollutants by single natural solid material, whereas
few studies compared the sorption behaviors of different solids. Furthermore, natural aquatic environment is a complex system
where hydrophobic pollutants coexist with many other pollutants, but only limited studies reported the effects of coexisting
components on the sorption. Here we studied the sorption of dichlorodiphenyltrichloroethanes (DDTs) by three common solids
in natural water, i.e., biofilms, suspended particles and sediments. The effects of typical coexisting heavy metals on the
sorption were also examined. The results show that the sorption is described by a dual-mode sorption model. Compared with
sediments, more DDTs were sorbed by biofilms and suspended particles. Coexisting Pb, Cd and Cu increased the sorption of DDTs
on sediments while decreasing the sorption on biofilms slightly, with little effect on the sorption on suspended particles.
The different sorption behaviors of the solids were mainly determined by the composition of the solids: more organics were
observed in biofilms and suspended particles. 相似文献
705.
Ming-Lang Tseng Lawrence W. Lan Ray Wang Anthony Chiu Hui-Ping Cheng 《Environmental monitoring and assessment》2011,175(1-4):367-385
Green performance measure is vital for enterprises in making continuous improvements to maintain sustainable competitive advantages. Evaluation of green performance, however, is a challenging task due to the dependence complexity of the aspects, criteria, and the linguistic vagueness of some qualitative information and quantitative data together. To deal with this issue, this study proposes a novel approach to evaluate the dependence aspects and criteria of firm??s green performance. The rationale of the proposed approach, namely green network balanced scorecard, is using balanced scorecard to combine fuzzy set theory with analytical network process (ANP) and importance-performance analysis (IPA) methods, wherein fuzzy set theory accounts for the linguistic vagueness of qualitative criteria and ANP converts the relations among the dependence aspects and criteria into an intelligible structural modeling used IPA. For the empirical case study, four dependence aspects and 34 green performance criteria for PCB firms in Taiwan were evaluated. The managerial implications are discussed. 相似文献
706.
707.
708.
Lei Zhao Shanjun Song Penghui Li Jing Liu Jing Zhang Lei Wang Yaqin Ji Jinpeng Liu Liqiong Guo Jinbao Han 《环境科学学报(英文版)》2021,33(11):77-87
Ten nitrated polycyclic aromatic hydrocarbons (nPAHs) and 4 oxygenated polycyclic aromatic hydrocarbons (oPAHs) in fine particulate matter (PM2.5) samples from Mount Tai were analyzed during summer (June to August), 2015. During the observation campaign, the mean concentration of total nPAHs and oPAHs was 31.62 pg/m3 and 0.15 ng/m3, respectively. Two of the monitored compounds, namely 9-nitro-anthracene (9N-ANT) (6.86 pg/m3) and 9-fluorenone (9FO) (0.05 ng/m3) were the predominant compounds of nPAHs and oPAHs, respectively. The potential source and long-range transportation of nPAHs and oPAHs were investigated by the positive matrix factorization (PMF) method and the potential source contribution function (PSCF) methods. The results revealed that biomass/coal burning, gasoline vehicle emission, diesel vehicle emission and secondary formation were the dominant sources of nPAHs and oPAHs, which were mainly from Henan province and Beijing-Tianjin-Hebei region and Bohai sea. The incremental life cancer risk (ILCR) values were calculated to evaluate the exposure risk of nPAHs and oPAHs for three group people (infant, children and adult), and the values of ILCR were 7.02 × 10?10, 3.49 × 10?9 and 1.41 × 10?8 for infant, children and adults, respectively. All these values were lower than the standard of EPA (Environmental Protection Agency) (<10?6), indicating acceptable health risk of nPAHs and oPAHs. 相似文献
709.
选取某小型化工园区为研究对象,在不同日期进行样品采集并使用气相色谱-质谱联用仪(GC-MS)定性定量分析,评估该区域VOCs污染水平及特征,同时研究P MF模型解析小尺度区域VOCs污染来源的可行性.结果表明,该研究区域VOCs浓度明显高于城市环境空气及其他化工园区,存在较重污染;该区域VOCs的主要成分为丙烯、苯、甲苯、萘、间-乙基甲苯、丙酮、丙烷、1,2,4-三甲苯、异丁烷等物质,各排放源污染特征显著,差异性明显;使用PMF模型对观测期间VOCs源解析,共获得4个因子,各因子与该区域不同排放源工艺及污染特征能够高度对应,并依此计算了各点位VOCs污染来源,结果与污染物扩散规律相符,PMF模型应用于小尺度污染物溯源分析具有可行性,能够很好地解析VOCs污染来源. 相似文献
710.
Shuangchun Lu Qingling Liu Rui Han Miao Guo Jiaqi Shi Chunfeng Song Na Ji Xuebin Lu Degang Ma 《环境科学学报(英文版)》2021,33(7):184-203
Volatile organic compounds (VOCs) with high toxicity and carcinogenicity are emitted from kinds of industries, which endanger human health and the environment. Adsorption is a promising method for the treatment of VOCs due to its low cost and high efficiency. In recent years, activated carbons, zeolites, and mesoporous materials are widely used to remove VOCs because of their high specific surface area and abundant porosity. However, the hydrophilic nature and low desorption rate of those materials limit their commercial application. Furthermore, the adsorption capacities of VOCs still need to be improved. Porous organic polymers (POPs) with extremely high porosity, structural diversity, and hydrophobic have been considered as one of the most promising candidates for VOCs adsorption. This review generalized the superiority of POPs for VOCs adsorption compared to other porous materials and summarized the studies of VOCs adsorption on different types of POPs. Moreover, the mechanism of competitive adsorption between water and VOCs on the POPs was discussed. Finally, a concise outlook for utilizing POPs for VOCs adsorption was discussed, noting areas in which further work is needed to develop the next-generation POPs for practical applications. 相似文献