64 resultados para 748


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介绍了一种多路电荷灵敏前置放大器,其路数最多为8路,它有功耗低,体积小,价格低廉,使用方便等特点,并对它的设计以及特点作了较详细的阐述。

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由60MeV/μ18O离子照射天然钍靶所引起的232Th-2p反应产生230Ra,通过放射化学分离方法从被照射的靶中提取出镭元素并制成薄源,经230Ra230Ac得到230Ac.用云母裂变径迹探测器和PHGeγ射线探测器对来自源中的裂变碎片和γ谱进行记录和测量,借助于所测得的两个裂变事件和γ谱,鉴别了β-延发裂变核230Ac,得到了它的β-延发裂变概率为(1.19±0.85)×10-8.

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在相对论平均场框架下研究了Pr同位素链的基态性质 .对关联的处理采用了BCS方法 ,并使用了与同位旋有关的对力常数 ,对不成对的核子采用了‘阻塞法’ ,并考虑了核的轴对称形变 .计算结果表明 ,包含非线性介子自相互作用的相对论平均场理论可以在很大的同位旋范围内很好地描述Pr同位素链的结合能、形变、中 (质 )子密度分布、同位素位移等 .理论计算的结果与有限力程小液滴模型的结果符合得很好 .特别检验了描述对关联的BCS近似在Pr链的适用范围和适用的程度

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探测器位置分辨能力的高低是实现γ成像的一个重要指标.Segmented HPGe平面型位置灵敏探测器能够很好地给出γ射线与探测器晶体相互作用的作用点位置信息.利用由这种探测器组成的探测器阵列对~(22)Na标准源进行了γ成像实验.结果能够区分出标准源两个不同的摆放位置的细微差别,并与实际情况符合得很好.从而检验了Segmented HPGe平面型位置灵敏探测器的位置分辨能力.

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生态足迹模型已广泛应用于可持续发展和生态承载力评估中。本文以大连市统计资料为依据,计算了大连市的人均生态足迹和人均生态承载力,用来分析大连市生态可持续发展情况;同时基于生态足迹理论,运用水足迹模型,计算了大连市2001年的水足迹。结果表明:从1991—2004年,大连市人均生态足迹整体呈上升趋势,多年人均生态足迹均在2.250hm2·人-1以上;2004年为3.965hm2·人-1,是1991年(2.250hm2.人-1)的1.76倍,2000—2004年大连市存在不同程度的生态赤字现象;2001年人均水足迹为748.270m3·人-1,低于北方人均水足迹水平,属于水资源短缺型城市。

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对燕儿沟综合治理试验示范区水文泥沙监测资料作一通报 ,并以获得的泥沙资料为基础 ,对燕儿沟流域的治理减沙及泥沙来源情况作了初步分析 ,结果表明 :燕儿沟流域年输沙量有明显的递减趋势 ,并提出了目前监测工作存在的一些问题 ,以便为专题组工作顺利进行提供科学依据

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多氯联苯(polychlorinated biphenyls,简称PCBs)是一类对环境有不利影响的有毒有机物,它在环境中广泛而大量分布。许多科学家都在致力于有效处理PCBs污染介质(包括水、油、沉积物和土壤)的修复技术的研究。本文综述了国内外在零价金属还原脱氯降解PCBs领域的研究状况。在高温等特殊条件下或有钯、铂、镍和铜等催化剂存在的条件下,零价金属能有效促进PCBs还原脱氯。讨论了零价铁还原脱氯的3个可能的途径:金属直接反应,将零价铁表面的电子转移到有机氯化物使之脱氯;铁腐蚀的直接产物Fe2+具有还原能力,它可使得一部分氯代烃脱氯;铁反应产生的氢气可使有机氯化物还原。评述了零价金属还原脱氯PCBs具有有效、廉价和易得的特点。展望了零价金属还原脱氯降解PCBs研究领域的发展前景。

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Blends of poly(lactic acid)(PLA) and thermoplastic acetylated starch(ATPS) were prepared by means of the melt mixing method. The results show that PLA and ATPS were partially miscible, which was confirmed with the measurement of T-g by dynamic mechanical analysis(DMA) and differrential scanning calorimetry(DSC). The mechanical and thermal properties of the blends were improved. With increasing the ATPs content, the elongation at break and impact strength were increased. The elongation at break increased from 5% of neat PLA to 25% of the blend PLA/ATPS40. It was found that the cold crystallization behavior of PLA changed evidently by addition of ATPS. The cold crystallization temperature(T-cc) of each of PLA/ATPS blends was found to shift to a lower temperature and the width of exothermic peak became narrow compared with that of neat PLA.

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series of a donor-acceptor-donor type of near-infrared (NIR) fluorescent chromophores based on [1,2,5]thiadiazolo[3,4-g]quinoxaline (TQ) as an electron acceptor and triphenylamine as an electron donor are synthesized and characterized. By introducing pendent phenyl groups or changing the pi-conjugation length in the TQ core, we tuned tile energy levels of these chromophores, resulting in the NIR emission in a range from 784 to 868 nm. High thermal stability and glass transition temperatures allow these chromophores to be used as dopant emitters, which can be processed by vapor deposition for the fabrication of organic light-emitting diodes (OLEDs) having the multilayered structure of ITO/MoO3/NPB/Alq(3):dopant emitter/BCP/Alq(3)/LiF/Al. The electroluminescence spectra of the devices based on these new chromophores cover a range from 748 to 870 nm. With 2 wt % of dopant 1, the LED device shows an exclusive NIR emission at 752 nm with the external quantum efficiency (EQE) as high as 1.12% over a wide range of current density (e.g., around 200 mA cm(-2)).

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生化需氧量 (biochemicaloxygendemanded ,BOD)是衡量水污染程度必须测定的重要指标之一。然而 ,传统的 5d法不能及时反映排放水的污染程度。因此 ,能够快速、准确测定BOD的微生物传感器近年来得到了迅速发展。本文综述了BOD微生物传感器及其商品化仪器的发展 ,并对能使BOD传感器与传统的 5d法得到更为一致的结果的方法做了总结

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As a high efficiency separation technique, capillary electrophoresis(CE) has been widely used in various fields of analytical science. Amperometry is one of the most sensitive electrochemical detection methods in CE. The capillary/electrode decoupling mechanism, applications,of new electrode systems in CE, detection cell technique are discussed in detail. Amperometric detection is compatible with microfabricated CE chips and will make the concept of lab-on-a-chip become a reality. Because of these progresses, amperometry is becoming a widely acceptable detection method,for more chemical and biological analytes.