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831.
四元体系KCl-ZnCl2-HCl(~10.61%)-H2O(298.15K)的相平衡及其固相化合物 总被引:1,自引:0,他引:1
0引言研究发现,卤化物KX与ZnX2组成的复盐化合物是一种良好的激光基质材料犤1犦,在掺杂了稀土离子的这些化合物中已经实现了低温或室温下的激光输出犤2,3犦。在卤化物中,氯化物的发光强度又大于氟化物犤4犦。因此,我们以KCl与ZnCl2为研究对象,通过盐酸溶液中的相化学反应来了解它们之间可能形成新化合物的种类和溶液中的反应行为。本文对KCl与ZnCl2在25℃11%的盐酸-水四元体系中的相平衡关系进行了研究,并从体系中发现并得到了未见文献报道的5∶4型新化合物5KCl·4ZnCl2·3H2O。1实验部分1.1药品及… 相似文献
832.
在以加氢汽油为溶剂,MoCl_3(C_7H_(15)COO)_2(Mo)为主催化剂,(i-Bu)_2AlO〈O〉(Al)为助催化剂合成1,2-聚丁二烯的二元催化体系中,添加BF_3CH3·OEt_2等,对体系的催化活性影响显著。以的混合物为第三组份加入催化体系,较大幅度提高了钼系催化体系的活性。在Mo/Bd=8.0×10~(-5)(摩尔比),聚合5小时,丁二烯转化率可达到70%。初步搞清了钼催化体系合成的1,2-聚丁二烯中产生凝胶的条件,推测了凝胶的生成原因,考察了聚合条件对催化活性、分子量及微观结构含量的影响。 相似文献
833.
研究了第二过渡金属化合物对TiCl4/AleT1.46cL1.54催化丁二烯环化三聚的多金属协同效应。结果表明,极少量的第二过渡金属化合物,如Cr,(acac)3,Mn(acac)3,NiCl2,ZrCl4等加入TiCl4/AlEt1.46Cl1.54体系后不同程度地提高了丁二烯环化三聚的选择性,并改变了体系的最大速率和催化剂效率。 相似文献
834.
The system BaF2/AlF3 is investigated by X-ray and D.T.A., and the liquid-solid phase diagram is established. Five ternary fluorides are disclosed: trimorphic BaAlF5, Ba3Al2F12, Ba5AlF19, polymorphic Ba3AlF9 and Ba5AlF13. Neutron thermodiffractometry experiments are performed to specify some parts of the diagram. The cell parameters of the fluorides are given and the results are discussed and compared with those of the previous works. 相似文献
835.
A laboratory information management system (LIMS) can make a major contribution to the quality and therefore to the efficiency
and competitiveness of a laboratory. Since it can impact all aspects of a laboratory's organization it must be the key if
not the principal player of the laboratory's quality system. It should support the laboratory in establishing, maintaining
and applying quality procedures thereby enabling the laboratory to achieve its quality goals. As a tool, LIMS permits the
laboratory to input and use its own know-how and experience to optimize the total organization (internal and external) and
workflow of generated information. However, perceived "quality" in the context of an LIMS, can be viewed as being made up
of different facets such as the security, reliability and accessibility of information as well as its turn around time and
production cost. This paper reviews the role of a LIMS in the laboratory and the contribution that both system design and
functionality can have on "building quality ".
Received: 5 October 1998 · Accepted: 20 October 1998 相似文献
836.
The binuclear complex [Cu2(TS)(H2O)]·CH3OH, where TS denotes the binucleating ligand derived from the schiff base N,N′-bis(3-carboxylsalidene)trimethylenediamine, was obtained from the self-decomposition of mononuclear complex Na2CuTS·H2O. It crystallizes in the monoclinic system, space group P21/c. The lattice parameters are a=11.935(2)?,b=15.667(3)?,c=11.621(2)?,β=111.60(3)°,V=2020.2(7)?3, Z=4 with R=0.0467. The structure is made of binuclear units, in which two copper atoms are bridged by two phenolic oxygen atoms. The “inside”copper atom is coordinated by two nitrogens, two phenolic oxygens in a planar coordi-nation site, the copper atom deviates from the mean plane by 0.47?. The “outside” copper atom is five coordinated by two phenolic oxygen atoms、two equatorial carboxyl oxygen atoms and one axial water oxygen atom in a distorted tetragonal cone site, the copper atom is pulled out of the equatorial plane by 0.46?. 相似文献
837.
838.
Siegfried Noack 《Accreditation and quality assurance》1998,3(11):436-443
An important part of quality assurance in any analytical laboratory is the production of comprehensive results integrating uncertainty measurements. Many testing laboratories face the problem that the expenditure required to evaluate small uncertainties (high precision and high accuracy) is often uneconomic. In most cases an uncertainty of high reliability has to be calculated from only a few data (one calibration, few replications, etc.). This problem can be solved by an expert system. To achieve this the analytical procedure has to be structured into a dialouge and divided into parts. The uncertainty has to be calculated for each part of the procedure. Addition of the individual uncertainties results in the combined and expanded uncertainty. During the dialouge the system should advise the analyst how to get an efficient and effective calculation of uncertainty. All calculations, mathematical and statistical procedures have to be surveyable but running the system should not be too time consuming for economic reasons. Within the scope of the EURECA-project initiated by the Eidgenössische Materialprüfungs- und Forschungsanstalt (EMPA), St. Gallen, Switzerland, expert system software is being developed in cooperation with other research institutes and manufacturers of analytical instruments. Using this software it will be possible to calculate the uncertainty for analytical procedures such as titration, atomic emission spectrometry (ICP-OES), atomic absorption spectrometry (AAS) and gas- and liquid chromatography (GC, HPLC). 相似文献
839.
Reliable, traceable and comparable measurements provide the rational basis for evaluation of the quality of a result and
the starting point for recognized laboratory accreditation in any national area. Modern medical diagnostics and treatment
involve rapidly rising numbers and types of clinical laboratory measurements, that are reliable. Therefore, the basic principles
to be followed to assure the traceability of clinical measurements as required by the Romanian Laws of Metrology are reviewed.
Main sources affecting the quality of the unbroken chain of calibrations that relate the measurements back to appropriate
measurement standards are discussed. Examples of how to achieve traceable measurements in clinical laboratories are presented.
Details of specific uses of reference materials, measuring instruments and standard measurement methods are also discussed.
Received: 8 January 1998 · Accepted: 21 April 1998 相似文献
840.
超微孔材料具有1~2 nm的孔径,在分离、催化应用中有望展现出择形催化的能力。 寻找经济、简便的合成超微孔材料的表面活性剂体系是一项有意义的工作。 本研究以短链季铵盐(十烷基三甲基溴化铵,记为C10TAB)和不同链长脂肪酸酸盐混合胶束为模板剂,硅酸钠为硅源,成功制备出高度有序超微孔SiO2。 通过小角X射线衍射、N2吸附-脱附、傅里叶变换红外光谱、扫描电子显微镜(SEM)和透射电子显微镜(TEM)等技术手段对产品的结构和性能进行了表征。 结果表明,合成体系中脂肪酸盐碳链长、加入量、晶化温度等对产物孔道有序性有很大影响。 当选择正辛酸钠(SO)为助表面活性剂,当n(C10TAB):n(Na2SiO3):n(SO):n(H2O)=1:1.5:0.3:800,晶化温度为80 ℃时,可以得到高度有序超微孔SiO2。 煅烧后样品比表面积为1300 m2/g,孔体积0.49 cm3/g,孔径分布在1.90 nm。 相似文献