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261.
基于天气分型的北京地区雷电潜势预报预警系统   总被引:2,自引:0,他引:2  
熊亚军  廖晓农  于波  魏东  吴庆梅 《灾害学》2012,(2):67-71,81
对1997-2006年457个雷暴过程的环流形势进行对比分析,将北京地区的雷暴天气分为东北低涡低槽、贝蒙低涡低槽、西来槽等11种雷暴天气型;利用南郊观象台(54511站)的探空资料计算对流有效位能、抬升指数和相对风暴螺旋度等33个对流参数,通过与北京地区SAFAIR3000获取的闪电定位资料进行统计分析,提取BCAPE、BLI、MDCI、BIC、KNEW和SWISS等6个对流参数作为北京地区潜势预报参数;采用事件概率回归(REEP)方法,利用获取的6个对流参数作为变量,形成了11种雷暴天气型下的潜势预报方法。利用WRF模式的预报场,建立适用于北京地区3~36 h雷电潜势预报系统。个例实验结果表明其具有较好准确性。由于该系统建立过程中使用了高分辨率探测资料和中尺度模式的输出结果,实现了雷电潜势预报由点到面,由粗到细的突破,对北京地区雷电预警预报具有一定的应用价值。  相似文献   
262.
采用水生植物滤床系统深度处理养猪废水,开展了不同收割频率条件下系统对污水净化效果的对比研究。实验结果表明,当水力负荷为5cm/d时,植物收割频率的增加会降低系统对TN和TP的去除效果,而对COD的去除效果则无明显影响。当不进行植物收割时,系统对养猪废水的净化效果最好,对COD、TN和TP的平均去除率分别为71.26%、34.32%和29.52%。因此,合适的植物收割频率是强化APFB系统处理效果的关键因素。  相似文献   
263.
通过以油烟冷凝液为惟一碳源的选择培养基初筛,从长期受到油烟严重污染的土壤中筛选出具有降解油烟污染物能力的优势菌株XJ01、XJ03。研究了其最佳生长条件及降解性能,并对其进行了生理生化特征及分子生物学鉴定。研究表明,XJ01、XJ03最佳生长温度分别为35℃、30℃,最佳生长pH均为7,摇床转速均为120r/min,最佳降解时间分别为48h和36h;在最佳降解条件下,xJ01、XJ03总降解量分别达4.47113g/L和4.18ing/L,降解过程中,降解液pH值持续下降,生物量先增加后下降。经分子生物学鉴定,菌株XJ01、XJ03分别与铜绿假单胞菌群(Pseudomonasaeruginosagroup)和克雷伯氏菌属(Klebsiellasp.)同源性最高均达到100%。  相似文献   
264.
采用固相熔融法从尾矿中提取SiO2,利用超声辅助化学沉淀法制备纳米SiO2。分别研究了NaOH与尾矿质量比、反应温度、反应时间对SiO2提取率的影响,以及溶解水量、HCl浓度、终点pH、超声波功率和超声波频率对纳米SiO2性能的影响,研究表明,当NaOH与尾矿的质量比为1.4∶1,温度为325℃时灼烧25 min后用100 mL水溶解,滴加1.6 mol/LHCl酸化沉淀,终点pH调至8.5,在超声功率100 W,超声频率28 Hz的条件下,尾矿中SiO2提取率达到98.0%,产物中SiO2含量为98.40%,平均粒度为18 nm,得到的产品符合国家标准。  相似文献   
265.
植物收割频率对水生植物滤床深度处理养猪废水的影响   总被引:2,自引:0,他引:2  
采用水生植物滤床系统深度处理养猪废水,开展了不同收割频率条件下系统对污水净化效果的对比研究。实验结果表明,当水力负荷为5 cm/d时,植物收割频率的增加会降低系统对TN和TP的去除效果,而对COD的去除效果则无明显影响。当不进行植物收割时,系统对养猪废水的净化效果最好,对COD、TN和TP的平均去除率分别为71.26%、34.32%和29.52%。因此,合适的植物收割频率是强化APFB系统处理效果的关键因素。  相似文献   
266.
以核桃壳为原料,钛铁矿为造孔剂,制备钛铁矿造孔核桃壳基活性炭。实验结果表明:在氯化锌浓度为3mol/L、碳化时间为40min、碳化温度为400℃、钛铁矿加入量为5%的条件下,制得的钛铁矿造孔核桃壳基活性炭对苯酚、碱性品红、Pb2+的吸附量分别达到了156.80,181.35,35.84mg/g,比核桃壳活性炭分别提高了25.84%,18.59%,19.10%;钛铁矿作为造孔剂制备活性炭,可以降低碳化温度和缩短碳化时间,且对活性炭中孔的形成起促进作用,有利于对大分子物质和重金属的吸附去除。  相似文献   
267.
生态修复植物蜈蚣草中砷的回收   总被引:1,自引:0,他引:1       下载免费PDF全文
采用管式炉高温热解-NaOH-Na2CO3混合液碱浸-CuSO4·5H2O沉淀的方法回收生态修复植物蜈蚣草中的砷,最终得到产品砷酸铜。该方法的最佳工艺条件为:热解温度600 ℃,热解时间30 min,CaO加入量(CaO与蜈蚣草的质量比)8%; m(NaOH)∶m(Na2CO3)=1∶3,碱浸温度70 ℃, 碱浸时间2 h, 固液比1∶10; 沉淀反应pH 5, 沉淀反应温度70 ℃。采用该方法处理生态修复植物蜈蚣草,得到产品砷酸铜的纯度为93%,砷回收率达88%。  相似文献   
268.
Water quality degradation is often a severe consequence of rapid economic expansion in developing countries. Methods to assess spatial-temporal patterns and trends in water quality are essential for guiding adaptive management efforts aimed at water quality remediation. Temporal and spatial patterns of surface water quality were investigated for 54 monitoring sites in the Wen-Rui Tang River watershed of eastern China to identify such patterns in water quality occurring across a rural-suburban-urban interface. Twenty physical and chemical water quality parameters were analyzed in surface waters collected once every 4–8 weeks from 2000 to 2010. Temporal and spatial variations among water quality parameters were assessed between seasons (wet/dry) and among major land use zones (urban/suburban/rural). Factor analysis was used to identify parameters that were important in assessing seasonal and spatial variations in water quality. Results revealed that parameters related to organic pollutants (dissolved oxygen (DO), chemical oxygen demand (manganese) (CODMn), and 5-day biochemical oxygen demand (BOD5)), nutrients (ammonia nitrogen (NH4 +-N), total nitrogen (TN), total phosphorus (TP)), and salt concentration (electrical conductivity (EC)) were the most important parameters contributing to water quality variation. Collectively, they explained 70.9 % of the total variance. A trend study using the seasonal Kendall test revealed reductions in CODMn, BOD5, NH4 +-N, petrol, V-phen, and EC concentrations over the 11-year study period. Cluster analysis was employed to evaluate variation among 14 sampling sites representative of dominant land use categories and indicated three, three, and four clusters based on organic, nutrient, and salt water quality characteristics, respectively. Factors that are typically responsible for water quality degradation (including population, topography, and land use) showed no strong correlation with water quality trends implying considerable point source inputs in the watershed. The results of this study help inform ongoing water quality remediation efforts by documenting trends in water quality across various land use zones.  相似文献   
269.
There is limited knowledge available on metalloid biosorption by freshwater algae. In this study, biosorption properties of anionic Sb(OH) 6 ? by naturally occurring cyanobacteria Microcystis were investigated as a function of initial pH, biosorbent dosage, contact time, and addition sequences of competitive ions, and their binding mechanisms were discussed. The biosorption process was fast and equilibrium was reached at 2 h. Sb(V) biosorption decreased with the increase of pH and the optimum pH range was 2.5–3.0, which corresponded with the changes of surface charges of the cell wall of Microcystis. The biosorption data satisfactorily followed the Freundlich model. The simultaneous addition of H2PO4 ? and Ca2+ enhanced Sb(V) biosorption, while NO3 ? greatly inhibited the biosorption, compared with single Sb(V) addition. The initial addition of the competitive ions reduced Sb(V) biosorption at higher Sb(V) concentrations, compared with simultaneous addition. A fraction of biosorbed Sb(V) was replaced by the competitive ions which were added subsequently, and the exchange only occurred at higher concentrations of Sb(V). 1.0 mol/L HCl demonstrated the highest desorption efficiency. Speciation analyses indicated that no reduction of Sb(V) into Sb(III) occurred. Based on the results of zeta potential and attenuated total reflection infrared spectroscopy spectra, Sb(OH) 6 ? bound to the biomass through electrostatic attraction and surface complexation, and amino, carboxyl, and hydroxyl groups were involved in the biosorption process. The study suggest that Microcystis from cyanobacteria blooms could be used as a potential biosorbent to remove Sb(V) from effluents at environmentally relevant concentrations (≤10.0 mg/L).  相似文献   
270.
Sewage sludge (SS) with corn stalk (CS) was used to prepare SS-based activated carbon (SAC) by pyrolysis with ZnCl2. The effects of mixing ratio on surface area and pore size distribution, elemental composition, surface chemistry, and morphology were investigated. The results demonstrated that the addition of CS into SS samples improved the surface area (from 92 to 902 m2/g) and the microporosity (from 1.2 to 4.1 %) of the adsorbents and, therefore, enhancing the adsorption performance. The removal of leachate chemical oxygen demand (COD) was also determined. It was found that the COD removal rate reached 85 % at pH 4 with the SAC (90 wt% CS) dosage of 2 % (g/mL) and an adsorption time of 40 min. The adsorption experimental data were fitted by both Langmuir and Freundlich adsorption isotherms. Long-chain alkanes and refractory organics were found in raw leachate, but could be removed by SAC largely.  相似文献   
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