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本论文由三部分组成: 1) 大豆高产品种黑农40与低产品种黑农37不同发育时期叶片光合生理生态特性的研究;以不同产量水平的东北大豆黑农40和对照品种黑农37为试验材料,研究了从幼苗期到衰老期五个不同发育时期叶片光合作用特性的变化。尤其是系统的研究了光合作用、蒸腾作用和水分利用效率的变化之间的联系,以及气孔导度和胞间CO2浓度的相随变化。发现净光合速率和产量之间存在明显的正相关关系,各个光合生理生态参数之间也有密切的关系。 2) 在大豆生长过程的重要时期结荚期,对大豆品种黑农37和黑农40的光合和水分特性的日变化研究;测定结荚期黑农37和黑农40的光合作用、蒸腾作用、气孔导度和水分特征(水分利用效率和水势)的日变化以及它们之间可能存在的联系,并分析了光抑制的现象,研究表明在晴朗的一天中,光合速率的日变化呈双峰曲线,在整个日变化中,黑农40的净光合速率都比黑农37的要高。黑农40和黑农37相比,在水分亏缺的情况下黑农40能维持较高的水势和水分利用效率,特别是在中午的时候,差别更加明显。 3) 比较研究了1970s 、1980s 和1990s 期间不同大豆 (Glycine max (L) Merr.)品种的生理生态特性:光合作用、蒸腾作用、水分利用效率和叶片水势,分析了各生理生态特性之间以及与产量的关系。研究表明光合速率和产量之间存在显著的相关关系,大豆叶片水势和净光合速率之间也存在明显正相关关系,高产大豆在水分亏缺的情况下仍能维持较高的的水分利用效率和水势。

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An investigation into the seismic behaviour of municipal solid waste (MSW) landfills by dynamic centrifuge testing was undertaken. This paper presents physical modelling of MSW landfills for dynamic centrifuge testing, with regard to the following research areas: 1. amplification characteristics of municipal solid waste; 2. tension induced in geomembranes placed on landfill slopes due to earthquake loading; 3. damage to landfill liners due to liquefaction of foundation soil. A model waste, that has engineering properties similar to MSW, is presented. A model geomembrane that can be used in centrifuge tests is also presented. Results of dynamic centrifuge tests with the model geomembrane showed that an earthquake loading induces additional permanent tension (∼25%) in the geomembrane. © 2006 Taylor & Francis Group.

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 目的:探讨猪2猕猴延迟性异种移植排斥反应(DXR) 的发生机制。方法:建立湖北白猪2云南猕猴的腹腔异位心 脏移植模型,应用中华眼镜蛇毒因子(Y2CVF) 完全清除受者体内补体,并应用环孢素A(CsA) 、环磷酰胺(CTX) 和甲泼尼龙(M. P) 三联免疫抑制治疗。检测血清C3、C4、抗猪内皮细胞天然抗体,免疫组化方法染色检测移植物中C3、C5b29、IgG、IgM、细胞间 黏附分子21 ( ICAM21) 、肿瘤坏死因子2α(TNF2α) 、单核巨噬细胞(CD68) 、NK细胞(CD57) 、CD4 + T 细胞和CD8 + T 细胞的表达。 结果:移植心存活时间分别为8、10、13 和13 天,血清C3 和补体总活性均下降为0 ,抗猪内皮细胞天然抗体水平在移植后则有 一个更为明显的下降,在移植心失功前2~4 天开始天然抗体稍有回升,但较术前正常时仍明显偏低。移植心有程度不等的 C3、C4、C5b29、IgG及IgM 沉积,大量的单核细胞(50 %) ,少量的NK细胞(8 %~10 %) 、CD4 + T 细胞(15 %) 和CD8 + T 细胞 (25 %) 。移植物血管内皮细胞表面出现ICAM21 的表达上调,移植物间质中出现TNF2α的表达增加。结论:体液免疫和细胞免 疫参与猪2猕猴DXR 排斥反应的发生。

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An investigation into the seismic behaviour of municipal solidwaste (MSW) landfills by dynamic centrifuge testing was undertaken. This paper presents physical modelling of MSW landfills for dynamic centrifuge testing, with regard to the following research areas: 1. amplification characteristics of municipal solid waste; 2. tension induced in geomembranes placed on landfill slopes due to earthquake loading; 3. damage to landfill liners due to liquefaction of foundation soil. A model waste, that has engineering properties similar to MSW, is presented. A model geomembrane that can be used in centrifuge tests is also presented. Results of dynamic centrifuge tests with the model geomembrane showed that an earthquake loading induces additional permanent tension (∼25%) in the geomembrane. © 2006 Taylor & Francis Group, London.

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A novel compound for carbon capture and storage (CCS) applications, the 6H perovskite Ba4Sb2O9, was found to be able to absorb CO2 through a chemical reaction at 873 K to form barium carbonate and BaSb2O6. This absorption was shown to be reversible through the regeneration of the original Ba4Sb 2O9 material upon heating above 1223 K accompanied by the release of CO2. A combined synchrotron X-ray diffraction, thermogravimetric, and microscopy study was carried out to characterize first the physical absorption properties and then to analyze the structural evolution and formation of phases in situ. Importantly, through subsequent carbonation and regeneration of the material over 100 times, it was shown that the combined absorption and regeneration reactions proceed without any significant reduction in the CO2 absorption capacity of the material. After 100 cycles the capacity of Ba4Sb2O9 was ∼0.1 g (CO 2)/g (sorbent), representing 73% of the total molar capacity. This is the first report of a perovskite-type material showing such good properties, opening the way for studies of new classes of inorganic oxide materials with stable and flexible chemical compositions and structures for applications in carbon capture. © 2013 American Chemical Society.

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Chemical-looping combustion (CLC) has the inherent property of separating the product CO2 from flue gases. Instead of air, it uses an oxygen carrier, usually in the form of a metal oxide, to provide oxygen for combustion. All techniques so far proposed for chemical looping with solid fuels involve initially the gasification of the solid fuel in order for the gaseous products to react with the oxygen carrier. Here, the rates of gasification of coal were compared when gasification was undertaken in a fluidised bed of either (i) an active Fe-based oxygen carrier used for chemical looping or (ii) inert sand. This enabled an examination of the ability of chemical looping materials to enhance the rate of gasification of solid fuels. Batch gasification and chemical-looping combustion experiments with a German lignite and its char are reported, using an electrically-heated fluidised bed reactor at temperatures from 1073 to 1223 K. The fluidising gas was CO2 in nitrogen. The kinetics of the gasification were found to be significantly faster in the presence of the oxygen carrier, especially at temperatures above 1123 K. A numerical model was developed to account for external and internal mass transfer and for the effect of the looping agent. The model also included the effects of the evolution of the pore structure at different conversions. The presence of Fe2O3 led to an increase in the rate of gasification because of the rapid oxidation of CO by the oxygen carrier to CO2. This resulted in the removal of CO and maintained a higher mole fraction of CO2 in the mixture of gas around the particle of char, i.e. within the mass transfer boundary layer surrounding the particle. This effect was most prominent at about 20% conversion when (i) the surface area for reaction was at its maximum and (ii) because of the accompanying increase in porosity and pore size, intraparticle resistance to gas mass transfer within the particle of char had fallen, compared with that in the initial particle. Excellent agreement was observed between the rates predicted by the numerical model and those observed experimentally. ©2013 Elsevier Ltd. All rights reserved.

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A simple method for analyzing the effects of TO packaging network on the high-frequency response of photodiode modules is presented. This method is established based on the relations of the scattering parameters of the packaging network, photodiode chip, and module. It is shown that the results obtained by this method agree well with those obtained by the conventional comparison method. The proposed method is much more convenient since only the electrical domain measurements are required. (C) 2008 Wiley Periodicals, Inc.

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用混合表面活性剂制备柴油──水微乳液PREPARATIONOFDIESEL-WATERMICROEMULSIONFROMMIXINGSUREACTANT范绮莲,李蒙俊,邹红林1前言燃油掺水形成乳化液,使燃烧更加完全,从而提高燃烧率及减少废气对环境的污...