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1.
以兰州市公共交通(分为公交车和出租车两种)为研究对象,运用生态足迹法,测算2010年-2014年兰州市客运交通生态足迹,并计算兰州市公共交通的生态效率和生态足迹强度.结果表明:公共交通生态足迹年均占比为7.41%;公共交通生态足迹和客运量呈同步增长态势,公共交通生态足迹年均增长1.71%;在影响公共交通生态足迹的因素中,公交车和出租车的化石能源足迹年均占比分别为76.06%和62.32%;就生态效率而言,公交车生态效率是出租车生态效率的6.24倍.  相似文献   
2.
以典型三环多环芳烃菲为代表,选取11种典型纳米颗粒对水中不同浓度的菲进行吸附实验,探究水体中的纳米颗粒对菲的吸附特征.结果表明,Freundlich模型对所有样品的拟合结果最好.logKFr值显示,有机膨润土及3种炭黑对菲的吸附作用最强,且远远大于其他纳米颗粒.有机膨润土对菲的吸附表现为线性吸附(n=1.08),而3种炭黑均表现出显著的非线性特征(n<0.5),且非线性特征随吸附能力的增强而增强,其他几种纳米颗粒均表现出非线性吸附特征(n<0.9).水中所有的纳米颗粒在与菲作用的过程中,吸附的强弱与颗粒表面电位、粒径及比表面积均无显著相关性,即对于所有纳米颗粒来说,这几种性质并不是决定吸附作用的最主要因素,而吸附剂的化学组成及结构特性可能是引起吸附作用差异的主要原因.  相似文献   
3.
饮用水中溴酸盐控制方法和去除技术研究进展   总被引:1,自引:0,他引:1  
溴酸盐是一种潜在致癌物,通常产生于含溴离子水源水的臭氧消毒过程中,我国和世界卫生组织饮用水标准中规定溴酸盐的最高浓度为10μg/L。重点综述了近7年来溴酸盐生成的控制方法(如优化臭氧投加量、降低溶液pH值、加氨等)以及溴酸盐离子去除技术(如吸附法、还原法、离子交换法、生物法等)的研究进展,并对各种技术的优缺点进行了评述。  相似文献   
4.
参考国内外相关标准规范对山东LNG接收站及码头防火设计和消防系统配置进行了系统研究,对消防水系统、高倍数泡沫灭火系统、干粉灭火系统和消防站等关键消防设施进行了重点论述。  相似文献   
5.
Micro-mesoporous ZSM-5 zeolites were obtained by the post-treatment of tetrahydroxy ammonium hydroxide (TPAOH) solution with different concentration. The hierarchical pore structure formed during the desilication process facilitates the dispersion of Pt nanoparticles and Pt/ZSM-5 catalysts exhibit rather high catalytic activity for the deep oxidation of various VOCs at low temperature. The catalyst treated with TPAOH of 0.1 mol/L (Pt/ZSM-5(0.1)) shows the lowest degradation temperature (T90%) of 128 and 142°C, respectively for benzene and n-hexane. Compared with the untreated Pt/ZSM-5 catalyst, the abundant mesopores, small Pt particle size and finely dispersed Pt contribute to the superior catalytic activity and stability of the Pt/ZSM-5 catalysts for VOCs removal. More importantly, the existence of H2O in the feed gases hardly affected the activity of Pt/ZSM-5(0.1) catalyst at the low reaction temperature of 128°C, which is very important for VOCs low-temperature removal in the future practical applications.  相似文献   
6.
Shi  Jialu  Gao  Ya  Liu  Daoru  Shen  Zhanhui  Fan  Jing  Yu  Yating  Bao  Meihui  Li  Panpan  Yao  Rui 《Environmental science and pollution research international》2022,29(38):57629-57643
Environmental Science and Pollution Research - Electrochemical reduction is a promising technology to remove nitrate from water. The metallic composition and geometry of electrodes usually dominate...  相似文献   
7.
Different zeolites supported Pt catalysts with micro-mesoporous structure were prepared by organic base tetrapropylammonium hydroxide (TPAOH) treatment and their catalytic oxidation activity for various volatile organic compounds (VOCs) were evaluated. The results reveal that the synergistic effect between Pt nanoparticles and surface acid sites plays an important role in VOCs low-temperature removal. The small size and high dispersion of Pt nanoparticles on the surface of the zeolites would promote the catalytic oxidation of aromatics and alkanes over the Pt/zeolite catalysts, while strong acidity and abundant acid sites of catalysts are in favour of the oxidation of the VOCs containing N and O heteroatoms. In addition, it was found that Pt/ZSM-5 catalyst exhibits the highest oxidation activity for various VOCs low-temperature removal amongst all the catalysts due to the balance of both Pt dispersion and abundant acid sites in the catalyst. This comprehensive consideration should be very helpful when designing and preparing novel catalysts for the low-temperature removal of VOCs.  相似文献   
8.
The separation of ultrafine oil droplets from wasted nanoemulsions stabilized with high concentration of surfactants is precondition for oil reuse and the safe discharge of effluent. However, the double barriers of the interfacial film and network structures formed by surfactants in nanoemulsions significantly impede the oil-water separation. To destroy these surfactant protective layers, we proposed a newly-developed polyethyleneimine micelle template approach to achieve simultaneous surface charge manipulation and morphology transformation of magnetic nanospheres to magnetic nanorods. The results revealed that positively charged magnetic nanospheres exhibited limited separation performance of nanoemulsions, with a maximum chemical oxygen demand (COD) removal of 50%, whereas magnetic nanorods achieved more than 95% COD removal in less than 30 s. The magnetic nanorods were also applicable to wasted nanoemulsions from different sources and exhibited excellent resistance to wide pH changes. Owing to their unique one-dimensional structure, the interfacial dispersion of magnetic nanorods was significantly promoted, leading to the efficient capture of surfactants and widespread destruction of both the interfacial film and network structure, which facilitated droplet merging into the oil phase. The easy-to-prepare and easy-to-tune strategy in this study paves a feasible avenue to simultaneously tailor surface charge and morphology of magnetic nanoparticles, and reveals the huge potential of morphology manipulation for producing high-performance nanomaterials to be applied in complex interfacial interaction process. We believe that the newly-developed magnetic-nanorods significantly contribute to hazardous oily waste remediation and advances technology evolution toward problematic oil-pollution control.  相似文献   
9.
中山市2013年污染天气形势和气象要素特征分析   总被引:1,自引:1,他引:0  
利用2013年中山市空气质量监测资料、气象观测资料、韩国气象厅天气图资料和WRF数值模式模拟分析了中山市全年大气污染的基本特征,总结了易于造成大气污染的典型天气形势和气象要素条件。结果表明:2013年中山市空气污染主要发生在秋季和冬季,首要污染物类型为PM2.5和O3,全年共发生12次持续污染事件;当中山市位于我国大陆冷高压底部(冷锋前部)副热带高压脊线北部或台风外围地区时有利于污染发生;中山市的弱(风速1~2 m/s)偏北风或偏东风、合适的相对湿度(40%~60%)和温度(秋季20~25℃,冬季10~15℃)均可能造成秋冬季的大气污染,而高温(大于30℃)是造成夏季大气污染的主要原因。1月PM2.5重污染期间的WRF数值模拟结果表明:此次PM2.5污染是小风(风速小于2 m/s)、地面增暖(增温2℃)、增湿(增湿5%以上)综合作用的结果,而大风(风速大于4 m/s)的强扩散作用对PM2.5的清除效果显著。  相似文献   
10.
为分析蠡湖沉水植物恢复的光补偿深度和透明度条件,根据2012年4月和2013年4月蠡湖水下PAR(光合有效辐射)强度、ρ(SS)、透明度等监测数据以及沉水植物相关资料,探讨了沉水植物光补偿深度的空间分布特征及其影响因素. 结果表明:水下PAR强度随水深呈指数递减,α(光衰减系数)在0.97~6.04 m-1之间变化;光补偿深度空间分布格局均表现为西蠡湖大于东蠡湖、沿岸大于湖心的趋势,并且与水体透明度呈显著正相关;狐尾藻、金鱼藻、菹草、黑藻、苦草的光补偿深度及水体真光层深度分别是透明度的1.83、1.92、2.05、2.12、2.57和3.04倍. 回归分析表明,光补偿深度主要受ρ(SS)影响,其次为ρ(Chla). 以沉水植物群落光补偿深度(水体真光层深度)与水深的比值作为划分沉水植物群落恢复区域的参考依据,将蠡湖水域初步划分为“适宜区”“过渡区”和“暂不适宜区”,其中“适宜区”占蠡湖水域面积的29%.   相似文献   
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