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为了研究近场脉冲地震下桥梁结构的时变抗震性能,以一座常规连续梁桥为研究对象,引入氯离子侵蚀模型,在考虑多种不确定性因素基础上,采用拉丁超立方抽样建立不同服役时期的时变模型样本,运用增量动力分析方法,从能力、需求以及倒塌等方面对算例桥梁的时变抗震性能进行了研究和评价。结果表明:近场脉冲型地震下结构的抗震需求明显大于远场地震;氯离子侵蚀导致钢筋锈蚀后力学性能发生改变,箍筋对核心混凝土约束能力减弱,锈蚀纵筋屈服强度及极限拉应变都降低,导致桥墩的变形能力下降;与地面运动的不确定性相比,模型参数的不确定性对结构的抗震需求均值及离散性影响均不大;随着服役时间延长,钢筋锈蚀加剧,桥墩出现倒塌破坏的概率加大。 相似文献
195.
针对不锈钢产品酸洗处理过程中产生的氮氧化物浓度高、对大气污染的影响大、且难于净化治理等特性,在上海某不锈钢项目中设计了一套酸雾净化系统。该设计解决了酸洗中产生的氮氧化物难以净化的问题,提升了氮氧化物处理技术,它将成为不锈钢酸洗行业中氮氧化物净化处理技术的发展方向。 相似文献
196.
Catalytic oxidation is widely used in pollution control technology to remove volatile organic compounds. In this study, Pd/ZSM-5 catalysts with different Pd contents and acidic sites were prepared via the impregnation method. All the catalysts were characterized by means of N2 adsorption- desorption, X-ray fluorescence (XRF), HE temperature programmed reduction (H2-TPR), and NH3 temperature programmed desorption (NH3-TPD). Their catalytic performance was investigated in the oxidation of butyl acetate experiments. The by-products of the reaction were collected in thermal desorption tubes and identified by gas chromatography/mass spectrometry. It was found that the increase of Pd content slightly changed the catalytic activity of butyl acetate oxidation according to the yield of CO2 achieved at 90%, but decreased the cracking by-products, whereas the enhancement of strong acidity over Pd-based catalysts enriched the by-product species. The butyl acetate oxidation process involves a series of reaction steps including protolysis, dehydrogenation, dehydration, cracking, and isomerization. Generally, butyl acetate was cracked to acetic acid and 2- methylpropene and the latter was an intermediate of the other by-products, and the oxidation routes of typical by-products were proposed. Trace amounts of 3-methylpentane, hexane, 2-methylpentane, pentane, and 2-methylbutane originated from iso4merization and protolysis reactions. 相似文献
197.
Arsenic in the environment is attracting increasing attention due to its chronic health effects. Although arsenite(As(III)) is generally more mobile and more toxic than arsenate(As(V)), reducing As(V) to As(III) may still be a means for decontamination, because As(III) can be removed from solution by precipitation with sulfide or by adsorption or complexation with other metal sulfides. The performance of As(V) bio-reduction under autohydrogenotrophic conditions was investigated with batch experiments. The results showed that As(V) reduction was a biochemical process while both acclimated sludge and hydrogen were essential. Most of the reduced arsenic remained in a soluble form, although 20% was removed with no addition of sulfate, while 82% was removed when sulfate was reduced to sulfide. The results demonstrated that the reduced arsenic was re-sequestered in the precipitates, probably as arsenic sulfides. Kinetic analysis showed that pseudo first-order kinetics described the bio-reduction process better than pseudo second-order. In particular, the influences of pH and temperature on As(V) reduction by acclimated sludge under autohydrogenotrophic conditions and total soluble As removal were examined. The reduction process was highly sensitive to both pH and temperature, with the optimum ranges of pH 6.5–7.0 and 30–40°C respectively. Furthermore, Arrhenius modeling results for the temperature effect indicated that the As(V) reduction trend was systematic. Total soluble As removal was consistent with the trend of As(V) reduction. 相似文献
198.
目前针对加装FBC-DPF(燃油添加剂-柴油机颗粒捕集器)后的柴油机放特性研究较少,并且缺乏FBC-DPF对颗粒物中PAHs排放量的影响效果研究.为全面评估加装FBC-DPF后柴油机颗粒物排放特性和FBC-DPF对柴油机尾气中的颗粒物排放污染控制效果,在发动机台架上对装有FBC-DPF的重型柴油机进行了颗粒物排放特性试验.利用电子低压撞击仪(ELPI)测量加装FBC-DPF前、后柴油机颗粒物的数浓度与粒径分布,用玻璃纤维滤膜采集加装FBC-DPF前、后尾气中的固相PAHs,利用色谱质谱联用仪对加装FBC-DPF前、后尾气中的固相PAHs进行定量分析.结果表明:①加装FBC-DPF后柴油机排放的颗粒物数浓度大幅降低,FBC-DPF对尾气中颗粒物的捕集效率平均值在95%左右;②加装FBC-DPF后柴油机固相PAHs总比排放量有所降低,在大负荷区域降幅在25.0%~88.0%之间;③加装FBC-DPF前的颗粒物中位直径为30~89 nm,而加装FBC-DPF后的颗粒物中位直径为41~98 nm,平均增幅为38.2%.对于国Ⅳ及未来国Ⅴ柴油机排放法规,FBC-DPF是解决柴油机颗粒物排放的有效手段;此外,FBC-DPF可以大幅降低柴油机尾气中的有毒成分,并且能够适应高含硫量的燃油环境. 相似文献
199.
以金属有机多孔材料MIL-101(Cr3+)为非均相催化剂,过硫酸钠(Na2S2O8)为类Fenton体系的氧化剂,在可见光(300 W)下对甲基橙进行催化氧化降解研究。结果表明,MIL-101(Cr3+)在反应时间为120 min时对甲基橙降解率高达91.0%,且回收利用3次后仍表现出优异的降解性能(降解率达到81.0%)。同样条件下,把MIL-101(Cr3+)替换为TiO2或者不添加任何催化剂,甲基橙的降解率分别为25.6%和8.8%。采用紫外-可见漫反射光谱考察了常温下MIL-101(Cr3+)的禁带宽度大小,进一步证明其优异的光催化降解性能;同时还探讨了MIL-101(Cr3+)催化降解甲基橙的可能机理。 相似文献
200.
房磊 《资源节约和综合利用》2014,(17):48-49
石墨,以其耐高温、高强度、导电性能强的性质,被广泛应用于工业领域。随着我国冶金、化工、机械、医疗器械、核能、汽车、航空航天等行业的快速发展,这些行业对石墨及碳素制品的需求将会不断增长,中国石墨及碳素制品行业将保持快速增长。根据《中国石墨及碳素制品行业发展前景与投资战略规划分析报告前瞻》数据,2006—2011年,中国石墨及碳素制品行业销售收入年复合增长率为36.56%。 相似文献