88 research outputs found

    海洋微生物的多样性在赤潮调控中的利用

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    海洋发生赤潮是由多种因素相互作用的一个极其复杂的过程,丰富的营养盐和微量重金属元素是形成赤潮的物质基础[1]。近年来,随着人口的持续增长和经济的高速发展,造成某些水体交换条件不良

    Research Progress of Metal Material Liquid Forming Technology

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    随着汽车工业的迅速发展以及市场竞争对铸件质量要求的提高,推动了金属材料液态成型技术发展。从20世纪70年代压铸技术的广泛运用,到90年代挤压铸造技术的不断完善,随后挤压压铸技术不断创新,使液态成型技术向多学科渗透融合发展,应用领域不断拓展,铸件用量逐年上升。重点介绍了压铸、挤压铸造、挤压压铸这三种重要的成型技术发展以及取得的最新成果。With the rapid development of auto industry and the market competition on the increase of the requirement of the casting quality,the development of metal material liquid forming technology was promoted.From the extensive use of the die casting technology in the nineteen seventies to constant maturity of the 90's the squeeze casting technology,and then the continuous innovation of squeezing die casting,the liquid forming technology for multidisciplinary permeated and developed,application area continued to expand,and casting quantities increased year by year.The development and the latest achievements of three kinds of important forming technologies(die casting,squeezing casting and squeezing die casting) were mainly introduced.贵州省(贵阳市)工业攻关项目(黔科合GY字[2012]3004;筑科合同[2012101]2-13号

    改良分子信标-实时PCR快速检测副溶血弧菌

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    目的 :建立改良分子信标 -实时 PCR检测副溶血弧菌的快速方法 ,应用于副溶血弧菌食物中毒的快速诊断和海产品检验。方法 :根据 Gen Bank公布副溶血弧菌的耐热直接溶血毒素基因 (TDH)的保守序列 ,设计一对引物和改良分子信标探针 ,用 FAM荧光剂标记探针的 5′,并进行特异性和灵敏度分析 ;同时以 11种细菌作对照 ,建立改良分子信标检测副溶血弧菌的实时 PCR反应体系 ,应用于副溶血弧菌食物中毒快速诊断和食品微生物检测。结果 :检测 12种细菌 ,只有副溶血弧菌有荧光信号 ,与其他细菌无交叉反应 ,DNA灵敏度为 16 6 .6 fg/ μl,菌液灵敏度为 6 9cfu/ ml或 6 cfu/ PCR反应体系。改良分子信标 -实时 PCR反应体系检测 4 0株副溶血弧菌均出现特异的荧光信号 ,无干扰。对 3起细菌性食物中毒共 4 8份样品和 10 0份海产品进行检测 ,9份副溶血弧菌实时 PCR阳性 ,其中 7份副溶血弧菌细菌培养阳性 ,其余样品都为阴性。检测时间仅需 2 h。结论 :改良分子信标 -实时 PCR检测体系快速、灵敏度高 ,特异性强 ,可用于副溶血弧菌食物中毒的快速诊断 ,为食源性疾病的分子流行病学调查提供新的检测手

    The Seismic Detecting Technique on Gas Hydrates Based on Wave Impedance Inversion

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    天然气水合物作为特殊的地质体,可以有效地粘结碎屑颗粒,降低沉积物孔隙度,它的存在改变了地层沉积物的物理性质,造成天然气水合物与围岩速度反差较大,从而与围岩之间存在明显的波阻抗差。为了对地层中是否有天然气水合物赋存进行地震检测,对南海北部神狐海域的天然气水合物赋存区域的地震资料进行波阻抗反演分析,结果显示波阻抗反演方法能够作为探测天然气水合物的一种技术手段,研究区天然气水合物矿体的波阻抗呈高值分布特征,波阻抗值约为3 850--3 960 g/CM3.M/S。综合分析认为,波阻抗反演方法能够用于天然气水合物的地震探测、储层分析和综合研究工作中,反演结果可以为天然气水合物储量计算提供比较准确的矿体面积和厚度参数。As specific geologic body,gas hydrate can cement effectively clastic particles and reduce porosity of deposition,so its presence changes physical property of the sedimentary strata and results in the difference of seismic-wave velocity between gas hydrate and the surrounding rock,and there exists obviously wave impedance difference.In order to detect the presence of sediments with gas hydrate,seismic data of gas hydrate zone in the Shenhu area of the northern South China Sea were used in the wave impedance inversion through practice,testing and summary.Wave impedance inversion method is considered as a kind of good seismic detection technique for identification of gas hydrates,meanwhile,the wave impedance of gas hydrate zone shows high value in the study area,and the wave impedance value is about 3,850-3,960 g/cm3·m/s.All the results suggested that wave impedance inversion can be used for detection,reservoir analysis and comprehensive research of gas hydrates.The wave impedance inversion results can provide comparatively accurate area and thickness parameters of gas hydrate zone for reserves calculation.国家高技术研究发展计划项目(2006AA09A202);国土资源部公益性行业科研专项项目(200811014);国土资源部海洋油气资源与环境地质重点实验室资助项目(MRE200911);国家重点基础研究发展计划项目(2009CB219502

    改良分子信标—实时PCR快速检测霍乱弧菌

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    目的 建立改良分子信标—实时PCR检测霍乱弧菌的快速方法 ,应用于霍乱监测。 方法 根据GenBank公布的霍乱弧菌肠毒素基因A亚单位 (ctxA)的保守序列 ,设计一对引物和改良分子信标探针 ,并进行特异性和灵敏度分析 ;同时以 11种细菌作对照 ,建立改良分子信标检测霍乱弧菌的实时PCR反应体系 ,应用于霍乱监测。 结果 霍乱弧菌改良分子信标检测体系检测 12种细菌 ,只有霍乱弧菌有荧光信号 ,与其他细菌无交叉反应 ,DNA灵敏度为10 2 4fg/ul ,菌液灵敏度为 3 2cfu/ml或 3cfu/PCR反应体系。对 10 0份海产品和 3 0份腹泻病人大便标本进行检测 ,结果都为阴性。检测时间仅需 2h。 结论 改良分子信标—实时PCR检测体系快速、灵敏度高、特异性强 ,可用于霍乱的快速诊断 ,为霍乱的分子流行病学调查提供新的检测手

    双重实时PCR快速同时检测霍乱弧菌和副溶血弧菌

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    目的建立改良分子信标双重实时PCR同时检测霍乱弧菌和副溶血弧菌的快速方法,应用于霍乱监测、副溶血弧菌食物中毒的快速诊断和海产品检验。方法根据GenBank公布的霍乱弧菌肠毒素基因A亚单位(ctxA)和副溶血弧菌的耐热直接溶血毒素基因(TDH)的保守序列,分别设计引物和改良分子信标探针,以10种细菌作对照,建立双重实时PCR改良分子信标检测体系,应用于副溶血弧菌食物中毒快速诊断和霍乱监测。结果改良分子信标双重实时PCR反应体系DNA灵敏度为102.4~166.6fgμl,菌液灵敏度为32~64CFUml或3~6CFUPCR反应体系,无交叉反应。此反应体系同时检测40株副溶血弧菌和50株霍乱弧菌,均出现特异的荧光信号,两种细菌检测互不干扰。对3起细菌性食物中毒共48份样品和100份海产品进行检测,9份副溶血弧菌实时PCR阳性,其中7份副溶血弧菌细菌培养阳性,其余样品都为阴性。从样品处理到检测结果仅需1天时间。结论改良分子信标双重实时PCR检测体系快速、灵敏度高、特异性强,可用于霍乱和副溶血弧菌食物中毒的快速诊断,为食源性疾病的分子流行病学调查提供新的检测手段

    Controlling Reversible Expansion of Li2O2 Formation and Decomposition by Modifying Electrolyte in Li-O2 Batteries

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    锂空电池分别使用空气中的氧气和金属锂作为正负极活性材料,具有极高的能量密度。但是,这一体系尚不能实现商业化的应用,其中一些关键问题未能解决。由于其正极活性材料是气体,使得电化学反应涉及气-液-固三相界面,电极过程十分复杂。与其它二次电池相比,空气电极需要考虑结构因素和催化因素。不仅要改善氧气电化学反应的动力学迟缓问题,还要考虑放电产物的驻留空间问题。董全峰教授课题组在前期开展了基于空气电极固相表面电催化研究,并结合电极结构方面的问题,构筑了有利于氧气发生反应的仿生开放式结构电极。 该研究工作主要由化学化工学院2015级iChEM直博生林晓东(第一作者)在董全峰教授、郑明森副教授和龚磊副教授的共同指导下完成,理论计算由袁汝明助理教授(共同第一作者)完成,曹勇、丁晓兵、蔡森荣、韩博闻等学生参与了部分工作。周志有教授和洪宇浩博士生在电化学微分质谱方面给予大力的帮助与支持。【Abstract】The aprotic lithium-oxygen (Li-O2) battery has attracted worldwide attention because of its ultrahigh theoretical energy density. However, its practical application is critically hindered by cathode passivation, large polarization, and severe parasitic reactions. Here, we demonstrate an originally designed Ru(Ⅱ) polypyridyl complex (RuPC) though which the reversible expansion of Li2O2 formation and decomposition can be achieved in Li-O2 batteries. Experimental and theoretical results revealed that the RuPC can not only expand the formation of Li2O2 in electrolyte but also suppress the reactivity of LiO2 intermediate during discharge, thus alleviating the cathode passivation and parasitic reactions significantly. In addition, an initial delithiation pathway can be achieved when charging in turn; thus, the Li2O2 products can be decomposed reversibly with a low overpotential. Consequently, the RuPC-catalyzed Li-O2 batteries exhibited a high discharge capacity, a low charge overpotential, and an ultralong cycle life. This work provides an alternative way of designing the soluble organic catalysts for metal-O2 batteries.This work was supported by the National 973 Program (2015CB251102), the Key Project of National Natural Science Foundation of China (21673196, 21621091, 21703186, 21773192),and the Fundamental Research Funds for the Central Universities (20720150042,20720150043). The authors thank Prof. Eric Meggers at Philipps-Univeristaet Marburg for his discussion about the synthesis of RuPC complex; Prof. Gang Fu at Xiamen University for his instructive discussions in DFT calculations; Lajia Yu and Dandan Tao at Xiamen University for their assistance in EPR experiments and UV-Vis spectroscopy experiments, respectively; and Yu Gu and Tao Wang at Xiamen University for their discussions in XPS results and CV data,respectively. 该工作得到科技部重大基础研究计划(项目批准号:2015CB251102)、国家自然科学基金(项目批准号:21673196、21621091、21703186、21773192)和中央高校基本科研业务费专项资金(项目批准号:20720150042、20720150043)的资助。 此外,感谢傅钢教授在理论计算方面的讨论和建议,Eric Meggers教授在配合物合成上的讨论,泉州师范学院吴启辉教授和化学化工学院谷宇博士生在X射线光电子能谱方面的帮助,于腊佳老师在电子顺磁共振实验上的帮助,陶丹丹博士生在紫外可见光谱测试上的帮助以及王韬博士生在循环伏安方面的讨论

    Carbon Monoxide-Assisted Synthesis of Single-Crystalline Pd Tetrapod Nanocrystals through Hydride Formation

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    通讯作者地址: Zheng, NF (通讯作者),Xiamen Univ, State Key Lab Phys Chem Solid Surfaces, Coll Chem & Chem Engn, Xiamen 361005, Peoples R China 地址: 1. Xiamen Univ, State Key Lab Phys Chem Solid Surfaces, Coll Chem & Chem Engn, Xiamen 361005, Peoples R China 2. Xiamen Univ, Dept Chem, Coll Chem & Chem Engn, Xiamen 361005, Peoples R China 3. Xiamen Univ, Dept Phys, Xiamen 361005, Peoples R China 电子邮件地址: [email protected]; [email protected] monoxide can adsorb specifically on Pd(111) to induce the formation of unique Pd nanostructures. In the copresence of CO and H-2 single-crystalline Pd tetrapod nanocrystals have now been successfully prepared. The Pd tetrapods are enclosed by (111) surfaces and are yielded through hydride formation. Density functional theory calculations revealed that the formation of PdHx in the presence of H, reduces the binding energy of CO on Pd and thus helps to decrease the CO coverage during the synthesis, which is essential to the formation of the PdHx tetrapod nanocrystals. In addition to tetrapod nanocrystals, tetrahedral nanocrystals were also produced in the copresence of CO and H-2 when the reaction temperature was ramped to further lower the CO coverage. Upon aging in air, the as-prepared PdHx nanocrystals exhibited a shape-dependent hydrogen releasing behavior. The conversion rate of PdHx tetrapod nanocrystals into metallic Pd was faster than that of tetrahedral nanocrystals.MOST of China 2011CB932403 2009CB930703 NSFC 21131005 21021061 20925103 20973139 21133004 Fok Ying Tung Education Foundation 121011 Fundamental Research Funds for the Central Universitie

    Freestanding palladium nanosheets with plasmonic and catalytic properties

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    通讯作者地址: Huang, XQ (通讯作者), Xiamen Univ, State Key Lab Phys Chem Solid Surfaces, Xiamen 361005, Peoples R China 地址: 1. Xiamen Univ, State Key Lab Phys Chem Solid Surfaces, Xiamen 361005, Peoples R China 2. Xiamen Univ, Dept Chem, Coll Chem & Chem Engn, Xiamen 361005, Peoples R China 3. Xiamen Univ, Dept Phys, Xiamen 361005, Peoples R China 电子邮件地址: [email protected] metal films can exhibit quantum size and surface effects that give rise to unique physical and chemical properties(1-7). Metal films containing just a few layers of atoms can be fabricated on substrates using deposition techniques(7), but the production of freestanding ultrathin structures remains a significant challenge. Here we report the facile synthesis of freestanding hexagonal palladium nanosheets that are less than 10 atomic layers thick, using carbon monoxide as a surface confining agent. The as-prepared nanosheets are blue in colour and exhibit a well-defined but tunable surface plasmon resonance peak in the near-infrared region. The combination of photothermal stability and biocompatibility makes palladium nanosheets promising candidates for photothermal therapy. The nanosheets also exhibit electrocatalytic activity for the oxidation of formic acid that is 2.5 times greater than that of commercial palladium black catalyst.NSF of China 20925103 20871100 20721001 20703032 MOST of China 2009CB930703 2011CB932403 Fok Ying Tung Education Foundation 121011 NSF of Fujian 2009J06005 Key Scientific Project of Fujian Province 2009HZ0002-

    改良分子信标-实时PCR快速检测志贺菌

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    目的:建立改良分子信标-实时PCR检测志贺菌的快速方法,应用于志贺菌食物中毒的快速诊断和门诊肠道致病菌的检测。方法:根据GenBank公布志贺菌ipaH基因的保守序列,设计引物和改良分子信标探针,建立实时PCR-改良分子信标检测体系,应用于对志贺菌食物中毒的快速诊断和门诊肠道致病菌的检测。结果:改良分子信标-实时PCR反应体系DNA灵敏度为93 fgμ/l,菌液灵敏度为64 cfu/m l或2 cfu/PCR反应体系,无交叉反应。此反应体系检测67株志贺菌,均出现特异的荧光信号。对细菌性食物中毒样本等共657份样品进行志贺菌检测,42份志贺菌实时PCR阳性,其中41份志贺菌细菌培养阳性。从样品处理到检测结果仅需2 h~1 d时间。结论:改良分子信标-实时PCR检测体系快速、灵敏度高,特异性强,可用于志贺菌食物中毒的快速诊断,为食源性疾病的分子流行病学调查提供新的检测手段,对于提高肠道门诊的工作效率有重要意义
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