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551.
青海玉树7.1级地震震害特点分析及启示   总被引:7,自引:1,他引:6  
根据2010年4月14日玉树7.1级地震震害现场调查资料,对其震害特点进行了全面的分析总结,阐述了震区环境及其地质构造背景,对断层效应及场地效应等也进行了分析,并归纳总结了防震减灾的经验与启示。  相似文献   
552.
张勤  高亦飞  高娜  蒋春花  王宝坤  郭建素  贾军鹏 《灾害学》2010,25(3):130-134,144
社区地震应急工作是我国地震应急管理工作的重要内容之一,是减轻地震灾害的有效途径。如何依托社区开展地震应急工作是近年来,特别是汶川地震后全社会关注的问题。从地震应急组织管理、应急预案、志愿者队伍建设、宣传培训、应急演练、物资储备、避难场地和疏散通道设置以及地震应急处置等几个方面讨论了社区地震应急工作模式。  相似文献   
553.
Xia  Manhong  Dong  Shaogang  Chen  Yue  Liu  Hui 《Environmental geochemistry and health》2021,43(10):4075-4087
Environmental Geochemistry and Health - Due to the drought climate and a large amount of groundwater drainage, there are widespread environmental geological problems in prairie open-pit coal mining...  相似文献   
554.
5R (Recover, Reduce, Recycle, Resource and Reuse) approaches to manage urban water. 5R harvests storm water, gray water and black water in several forms. 5R offers promise for moving solutions for urban water scarcity in practice. Demand for water is expanding with increases in population, particularly in urban areas in developing countries. Additionally, urban water system needs a novel perspective for upgradation with urbanization. This perspective presents a novel 5R approach for managing urban water resources: Recover (storm water), Reduce (toilet flushing water), Recycle (gray water), Resource (black water), and Reuse (advanced-treated wastewater). The 5R generation incorporates the latest ideas for harvesting storm water, gray water, and black water in its several forms. This paper has briefly demonstrated each R of 5R generation for water treatment and reuse. China has the chance to upgrade its urban water systems according to 5R principles. Already, a demonstration project of 5R generation has been installed in Qingdao International Horticultural Exposition, and Dalian International Convention Center (China) has applied 5R, achieving over 70% water saving. The 5R offers promise for moving solutions for urban water scarcity from “hoped for in the future” to “realistic today”.  相似文献   
555.
• Cu and Cr can be mostly incorporated into CuFexAlyCr2xyO4 with a spinel structure. • Spinel phase is the most crucial structure for Cu and Cr co-stabilization. • Compared to Al, Fe and Cr are easier to be incorporated into the spinel structure. • ‘Waste-to-resource’ by thermal process at attainable temperatures can be achieved. Chromium slag usually contains various heavy metals, making its safe treatment difficult. Glass-ceramic sintering has been applied to resolve this issue and emerged as an effective method for metal immobilization by incorporating heavy metals into stable crystal structures. Currently, there is limited knowledge about the reaction pathways adopted by multiple heavy metals and the co-stabilization functions of the crystal structure. To study the Cu/Cr co-stabilization mechanisms during thermal treatment, a simulated system was prepared using a mixture with a molar ratio of Al2O3:Fe2O3:Cr2O3:CuO= 1:1:1:3. The samples were sintered at temperatures 600–1300°C followed by intensive analysis of phase constitutions and microstructure development. A spinel phase (CuFexAlyCr2xyO4) started to generate at 700°C and the incorporation of Cu/Cr into the spinel largely complete at 900°C, although the spinel peak intensity continued increasing slightly at temperatures above 900°C. Fe2O3/Cr2O3 was more easily incorporated into the spinel at lower temperatures, while more Al2O3 was gradually incorporated into the spinel at higher temperatures. Additionally, sintered sample microstructures became more condensed and smoother with increased sintering temperature. Cu / Cr leachability substantially decreased after Cu/Cr incorporation into the spinel phase at elevated temperatures. At 600°C, the leached ratios for Cu and Cr were 6.28% and 0.65%, respectively. When sintering temperature was increased to 1300°C, the leached ratios for all metal components in the system were below 0.2%. This study proposes a sustainable method for managing Cu/Cr co-exist slag at reasonable temperatures.  相似文献   
556.
• Gas diffusion electrode (GDE) is a suitable setup for practical water treatment. • Electrochemical H2O2 production is an economically competitive technology. • High current efficiency of H2O2 production was obtained with GDE at 5–400 mA/cm2. • GDE maintained high stability for H2O2 production for ~1000 h. • Electro-generation of H2O2 enhances ibuprofen removal in an E-peroxone process. This study evaluated the feasibility of electrochemical hydrogen peroxide (H2O2) production with gas diffusion electrode (GDE) for decentralized water treatment. Carbon black-polytetrafluoroethylene GDEs were prepared and tested in a continuous flow electrochemical cell for H2O2 production from oxygen reduction. Results showed that because of the effective oxygen transfer in GDEs, the electrode maintained high apparent current efficiencies (ACEs,>80%) for H2O2 production over a wide current density range of 5–400 mA/cm2, and H2O2 production rates as high as ~202 mg/h/cm2 could be obtained. Long-term stability test showed that the GDE maintained high ACEs (>85%) and low energy consumption (<10 kWh/kg H2O2) for H2O2 production for 42 d (~1000 h). However, the ACEs then decreased to ~70% in the following 4 days because water flooding of GDE pores considerably impeded oxygen transport at the late stage of the trial. Based on an electrode lifetime of 46 days, the overall cost for H2O2 production was estimated to be ~0.88 $/kg H2O2, including an electricity cost of 0.61 $/kg and an electrode capital cost of 0.27 $/kg. With a 9 cm2 GDE and 40 mA/cm2 current density, ~2–4 mg/L of H2O2 could be produced on site for the electro-peroxone treatment of a 1.2 m3/d groundwater flow, which considerably enhanced ibuprofen abatement compared with ozonation alone (~43%–59% vs. 7%). These findings suggest that electrochemical H2O2 production with GDEs holds great promise for the development of compact treatment technologies for decentralized water treatment at a household and community level.  相似文献   
557.
利用锆和氯化十六烷基三甲铵共同改性活性炭,制备一种新型去除污水中硝酸盐和磷酸盐的水处理吸附剂,并考察吸附剂加量、反应温度、pH值、共存阴离子等影响因素对吸附效果的影响。结果表明:锆-氯化十六烷基三甲铵改性活性炭(Zr-CTAC-AC)吸附剂适用于硝酸盐和磷酸盐浓度在100mg/L以下的污水,随着Zr-CTAC-AC加量的增加,硝酸盐、磷酸盐去除率逐渐增加,单位吸附量逐渐下降,Zr-CTAC-AC加量为8g/L时,硝酸盐去除率为79%,Zr-CTAC-AC加量为4.0g/L时,磷酸盐去除率可达91%,但应在较低的pH值范围内使用;反应温度对Zr-CTAC-AC的吸附效果影响不大;共存Cl-、HCO3-和SO42-可使硝酸盐的吸附率降低,但对磷酸盐吸附率影响较小;1mol/L NaCl溶液可使吸附到Zr-CTAC-AC表面的硝酸盐90.9%左右被解吸出来,1mol/L NaOH溶液可使吸附到Zr-CTAC-AC表面的磷酸盐78.4%左右被解吸出来。Zr-CTAC-AC能够有效去除污水中硝酸盐和磷酸盐,制备方法简单,且可循环利用,处理成本低。  相似文献   
558.
利用高通量测序技术对微生物强化原位污泥减量工艺中微生物群落进行解析.结果表明,外源菌剂的投加改变了活性污泥中微生物群落结构,菌剂的有效成分乳杆菌属和醋酸杆属在强化组中含量显著增加.科水平上的群落多样性分析显示:强化组厌氧区Siompson指数、Shannon指数和Pielou指数均不同程度升高,群落多样性增加.聚类分析显示,微生物群落按时间顺序明显聚为3簇,强化组厌氧区微生物群落随时间发生较大演变.主坐标分析显示,强化组和对照组微生物群落明显聚为2类,其厌氧区群落分别按照不同的方向演变,微生物强化和DO降低的协同作用是强化组群落演变驱动力,DO降低是对照组群落演变驱动力.典范对应分析显示显著影响微生物群落结构的环境因子依次为pH值、水温和DO.  相似文献   
559.
利用鄱阳湖的原位监测数据,分析鄱阳湖水华蓝藻的分布现状及其影响因素,探索鄱阳湖水华蓝藻的源头.研究结果表明,鄱阳湖浮游植物的优势种为硅藻,蓝藻为鄱阳湖的次级优势种,蓝藻在浮游植物总生物量的比例有逐年增加的趋势.水华蓝藻的主要优势种为鱼腥藻,其次为微囊藻和浮游蓝丝藻. 鄱阳湖蓝藻水华形成初期的基本规律为水华蓝藻在营养盐浓度相对较高且水流较缓的内湾及尾闾区生长分布,在夏秋季水位较高时在水流和风的作用下向主航道输移聚集. 结合鄱阳湖水文特点,主航道的水华蓝藻聚集有可能是上游四个湖区的蓝藻向下游漂移综合作用的结果.研究成果可为控制鄱阳蓝藻水华区域风险灾害提供基础数据.  相似文献   
560.
Arthrobacter sp. strain CN2, capable of degrading 4-nitrophenol, was isolated from activated sludge. Degradation of 4-nitrophenol was optimized at pH 7.7, 30?°C, and 0.53% of glucose. Salt tolerance of 4-nitrophenol degradation was as high as 6% (w/v). Several biodegradation intermediates were identified and quantified by high-performance liquid chromatography and mass spectrometry. 4-Nitrocatechol is involved in the degradation of 4-nitrophenol by CN2. Scale-up of 4-nitrophenol degradation was conducted in a bioreactor with different salinity. When the salinity was below 7%, the degradation rate of 4-nitrophenol was above 90% (100 mg L?1, 3 L).  相似文献   
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