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1.
建立气相色谱法测定中、长链脂肪乳注射液中大豆油和中链甘油三酸酯含量的不确定度评定方法。建立数学模型,分析气相色谱法测定中、长链脂肪乳注射液中大豆油和中链甘油三酸酯含量的不确定度来源及影响因素,对各不确定度分量进行评价,计算合成标准不确定度及扩展不确定度。当大豆油质量分数为9.63%时,其扩展不确定度为0.10%(k=2)。当中链甘油三酸酯质量分数为10.00%时,其扩展不确定度为0.11%(k=2)。气相色谱法测定中、长链脂肪乳注射液中大豆油和中链甘油三酸酯含量的不确定度主要来源于对照品和样品溶液制备过程。该不确定度评定为实验过程的控制和测定结果的评估提供了参考,有利于保证该类药品的质量控制水平和检验结果的准确性。  相似文献   

2.
本文采用热分析(DSC)的方法对UNIPOL气相流化床聚乙烯反应器块料生成过程所经历的热历史进行了详细测试与对比分析.结果发现,在反应器排产线性低密度聚乙烯LLDPE DFDA-7042时,DSC曲线上出现了多重熔融峰,其一次升温熔融峰值和熔融焓值均高于对应粉料的,表明块料经历了更为复杂的熔融再结晶过程,结晶更为完善;...  相似文献   

3.
采用高效液相色谱法测定复方罗布麻片Ⅰ中氢氯噻嗪含量,对测定结果的不确定度进行评定。通过建立数学模型,分析测定过程中不确定度来源及影响因素,分别评价各不确定度分量,计算合成标准不确定度和扩展不确定度。在95%置信区间下,扩展不确定度为0.028 mg,复方罗布麻片Ⅰ中氢氯噻嗪含量可表示为(1.58±0.028)mg(k=2)。对测量结果影响最大的因素是对照品称量,应在实验过程中加以重点关注与控制。该评定方法为复方罗布麻片Ⅰ中氢氯噻嗪的含量测定提供理论依据。  相似文献   

4.
由乙烯高效催化聚合而得的超高分子量聚乙烯的研究   总被引:1,自引:1,他引:0  
本工作系研究以高效催化聚合获得的超高分子量聚乙烯的结构和性能。用扫描电子显微镜观察了高效催化剂及初生聚乙烯的形态。透射电子显微镜观察了初生聚乙烯粉未,发现毛遂边缘的超分子原纤维状织态结构。用偏光显微镜观察了不同分子量聚乙烯粉末的熔融和冷却结晶过程,生成的球晶随分子量增大而增大。用X-射线衍射、差热分析、倒换气相色谱测定了初生聚乙烯的结晶度随分子量而增大;用X-射线衍射、差热分析及密度梯度法测定经退火或热压制的聚乙烯样品的结晶度均随分子量增大而下降。X-射线衍射测定其晶粒尺寸亦随分子量增大而减小。差热分析和倒换气相色谱测定超高分子量聚乙烯粉末的结晶熔点温度(Tm)要比普通分子量聚乙烯高8-12℃。不同分子量聚乙烯的热形变曲线表明,超高分子量聚乙烯在熔融温度后出现明显的橡胶态。此外,还用差热与热重分析研究了超高分子量聚乙烯的热老化行为。测定了超高分子量聚乙烯的优异抗冲强度和沙浆磨耗量。并用扫描电镜对比观察了常规分子量和超高分子量聚乙烯试样的冲击断面的织态结构。  相似文献   

5.
采用酸碱滴定法测定芥子气纯度,对测量结果的不确定度进行评定。分析了测定过程中不确定度来源,包括滴定剂的标定、消耗滴定剂体积、样品称量等引入的不确定度及其计算方法,最后合成得到标准不确定度。当芥子气纯度测定结果为94.78%时,扩展不确定度为0.34%(k=2)。实验结果表明,样品称量引入的不确定度对测量结果的影响最大。  相似文献   

6.
采用分光光度法测定空气中甲醛,对测定结果的不确定度进行评定。采用酚试剂分光光度法测定空气中甲醛,分析测定过程中的各项不确定度来源,包括样品采集、标准工作溶液配制、标准工作曲线拟合、测定仪器以及重复测定等引入的不确定度,计算合成不确定度,最后获得相对扩展不确定度。当空气中甲醛质量浓度为0.0244~0.2218 mg/m^3时,测定结果在95%置信区间时的相对扩展不确定度为0.1172(k=2)。不确定度主要来源于A类不确定度和系列标准工作溶液制备、标准工作曲线拟合、水中甲醛溶液标准物质的稀释引入的不确定度。  相似文献   

7.
气相色谱法测定腐乳中脱氢乙酸的测量不确定度评定   总被引:2,自引:0,他引:2  
通过对气相色谱法测定腐乳中脱氢乙酸的测定过程不确定度来源的系统分析,找出影响测量结果不确定度的主要因素。对各不确定度分量进行了评定和量化,计算了合成标准不确定度和扩展不确定度,腐乳中脱氢乙酸的测定结果表示为:(255.91±10.75)mg/kg(k=2)。  相似文献   

8.
采用气相色谱–质谱法(GC–MS)测定食用植物油中短链脂肪酸含量,对测量结果的不确定度进行评定,探讨提高测量准确度的方法。依据方法建立数学模型,分析得出不确定度主要来源于样品制备过程、计量器具的使用、标准溶液配制、测量设备、人员读数误差、方法回收率,计算各不确定度分量,得到相对标准不确定度和扩展不确定度。结果表明,当食用植物油中短链脂肪酸测定结果为13.1 mg/kg时,其扩展不确定度为1.8 mg/kg(k=2)。测量设备、标准溶液配制过程引入的不确定度较大,应在实验过程中予以控制和关注。  相似文献   

9.
采用电感耦合等离子体质谱(ICP-MS)对玩具材料中的锡含量进行测定,讨论了不确定度的主要来源,从样品称量质量、定容体积及测定用样品溶液中锡含量等方面对不确定度分量进行了评定,最后计算了检测结果的合成标准不确定度和扩展不确定度。  相似文献   

10.
辐照聚乙烯的熔融和重结晶   总被引:1,自引:0,他引:1  
用差示扫描量热法(DSC),小角X-射线散射(SAXS),广角X-射线衍(WAXD)等考察了辐照聚乙烯的熔融和重结晶,辐照破坏了聚乙烯结晶结构,使其熔融温度、结晶度均随辐照剂量的增加而降低,将辐聚乙烯熔融再结晶,其重结晶度、熔融温度随辐照剂量而下降的幅度较大,其原因被归结为片晶劈裂。  相似文献   

11.
Crystalline polymers are not in thermal equilibrium and thermodynamic parameters such as enthalpy of fusion as determined by differential scanning calorimetry from the area under the melting endotherm over a wide temperature range have not been measured under equilibrium conditions. Accordingly measurements of the degree of crystallinity based on the enthalpy of fusion reflect experimental conditions, are incorrect in that they do not usually agree with those determined by other analytical procedures, such as density and WAX scattering, particularly when measured at ambient temperatures. While this has been repeatedly pointed out procedures used to determine the fractional crystallinity of polymers based on the enthalpy of fusion continue to be widely used.Using the First Law method, the enthalpy of fusion and fractional crystallinity have been measured as a function of temperature for metallocene polyethylene and polyethylene terephthalate during heating. The crystallinity measured on the sample prior to heating is in good agreement with that determined by density and wide angle X-ray diffraction.  相似文献   

12.
The melting and the crystallization of-irradiated (doses: 0–6Mrad) ultra-high molecular weight nascent polyethylene (UHMWPE) and high density nascent polyethylene with normal molecular weight (NMWPE) were investigated by DSC. The heat of melting of the nascent UHMWPE (DSC degree of crystallinity, respectively) increases up to a dose of 3 Mrad, after which it slightly decreases. The heat of the second melting of UHMWPE and of the first and second melting of NMWPE increases slightly up to a dose of 3 Mrad, after which it does not change. The X-ray degree of crystallinity of the nascent non-irradiated and irradiated polymers was 0.62±0.02. The calorimetric crystallinity was compared to the X-ray one. The results show that radiation does not affect the polymer crystallinity, but influences the thermodynamic heat of melting. The increase ofH m vs. dose in UHMWPE is explained in terms of processes of tie molecule scission within the amorphous regions and on the surface of the crystals, which predominate over crosslinking up to a dose of 3 Mrad. That leads to an increase in the conformational mobility of the molecules and to an increase in the enthalpy, according to Peterlin's formula. The scission of the chains at the points of entangling of the tie molecules leads to a decrease in the temperature and to an increase in the enthalpy of crystallization of UHMWPE vs. dose. In NMWPE these effects are considerably weaker.  相似文献   

13.
Different grades of linear low density polyethylenes (LLDPEs) have been quenched cooled step-wise and crystallised isothermally at (a series of increasing) temperatures in a DSC (thermal fractionated samples). These samples have been investigated by temperature modulated DSC (MDSC). The heat flow curves of the thermal fractionated materials were compared with those obtained from samples crystallised at a relatively slow cooling rate of 2 K min-1(standard samples). The melting enthalpy obtained from the total heat flow of the thermal fractionated samples was 0-10 J g-1higher than those of standard samples. The melting enthalpy obtained from the reversing heat flows was 13-31 J g-1lower in the thermal fractionated samples than in the standard samples. The ratio of the reversing melting enthalpy to the total melting enthalpy increased with decreasing density of the PE. The melting temperature of the endotherms formed by the step-wise cooling was 9 K higher than the crystallisation temperature. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

14.
Chan Park S  Shinzawa H  Qian J  Chung H  Ozaki Y  Arnold MA 《The Analyst》2011,136(15):3121-3129
A novel strategy is demonstrated to improve the accuracy for determination of polyethylene (PE) density using Raman spectroscopy by optimizing the temperature of sample measurement. Spectral features associated with the conformation change of the polymer induced by temperature may provide valuable information to quantify important polymer properties such as density. To evaluate possible existence of an optimal temperature providing improved quantitative accuracy, Raman spectra of PE pellets with different densities were collected at eight different temperatures from 30 to 100 °C at 10 °C intervals. Using the spectral datasets collected at each temperature, partial least squares (PLS) models were developed using the reference PE density values determined by a standard density gradient method at 23 °C. Interestingly, the most accurate determination of density was realized at 70 °C. Multiple perturbation two-dimensional (MP2D) correlation analysis and differential scanning calorimetry (DSC) were used to examine the origin of improved accuracy at 70 °C. From these analyses, the pre-melt behavior of the PE samples was identified below their melting temperatures. Structural variations induced at the pre-melt stages enhance Raman spectral selectivity among the samples, thereby providing more accurate determination of PE density. The MP2D correlation analysis revealed the unforeseen thermal behavior of PE samples and successfully explained the improved accuracy at 70 °C.  相似文献   

15.
Low-density polyethylene (LDPE) and linear low-density polyethylene (LLDPE) with different copper contents were prepared by melt mixing. The copper powder particle distributions were found to be relatively uniform at both low and high copper contents. There was cluster formation of copper particles at higher Cu contents, as well as the formation of percolation paths of copper in the PE matrices. The DSC results show that Cu content has little influence on the melting temperatures of LDPE and LLDPE in these composites. From melting enthalpy results it seems as if copper particles act as nucleating agents, giving rise to increased crystallinities of the polyethylene. The thermal stability of the LDPE filled with Cu powder is better than that for the unfilled polymer. The LLDPE composites show better stability only at lower Cu contents. Generally, the composites show poorer mechanical properties (except Young's modulus) compared to the unfilled polymers. The thermal and electrical conductivities of the composites were higher than that of the pure polyethylene matrix for both the LDPE and LLDPE. From these results the percolation concentration was determined as 18.7 vol.% copper for both polymers.  相似文献   

16.
反气相色谱法研究结晶聚合物的结晶行为   总被引:2,自引:0,他引:2  
邹其超  彭顺金  方光荣  岳霞丽 《色谱》2000,18(3):202-205
 :采用反气相色谱法(IGC)测定了结晶聚合物聚乙二醇(PEG)的熔点和结晶度,探讨了探针分子的性质、固定相中聚合物的涂布量对测定结果的影响,同时与热分析(DSC)方法测得的结果作了比较。结果表明,IGC法测定结晶性聚合物熔点和结晶度是一种非常实用可靠的技术,其优点在于并不依赖100%纯结晶聚合物的性质,PEG的熔点测得值为67℃,结晶度为89.7%,测定结果与DSC法的测得值(Tm=67.9℃,Xc=90.6%)相近,所测定的结果与探针分子的性质无关,但受PEG在担体上的涂布量的影响显著。  相似文献   

17.
差示扫描量热法测量纯度的不确定度分析   总被引:1,自引:1,他引:0  
依据JJF1059-1999分析了差示扫描量热法测量纯度的不确定度。以美国PE公司的DSC-2C型差示扫描量热仪为例,该方法测量苯纯度的提高扩展不确定度为0.11%。  相似文献   

18.
The crystallinity of non-molten and pre-molten uncompatibilized and compatibilized polymer blends of high density polyethylene (HDPE)/Nylon 12 have been investigated by using FT-Raman spectroscopy, differential scanning calorimetry (DSC), and wide angle X-ray diffraction (WAXD). The FT-Raman, DSC, and WAXD measurements have revealed that the crystallinity of HDPE of both uncompatibilized and compatibilized blends increases upon melting except for the compatibilized blend with the Nylon 12 content of 80 wt%. The degree of the increase is significantly larger for the uncompatibilized blends than the compatibilized blends. The FT-Raman data suggests that the crystallinity of the compatibilized blend with the Nylon 12 content of 80 wt% decreases slightly after melting. It is very likely that the compatibilized polymer blends are well oriented during the melting and molding process by an extruder because of the existence of maleic anhydride (MAH)-grafted copolymer as a compatibilizer. In contrast, it seems that the uncompatibilized polymer blends are not so much oriented and have more amorphous phase in the Nylon 12 rich region before melting. Thus, the melting process induces a recrystallization process.  相似文献   

19.
iPP/HDPE/EPDM三元共混体系的组分分布、相容性和结晶行为   总被引:1,自引:0,他引:1  
 用DSC、13C-NMR、SEM和WAXD等方法研究了IPP/HDPE/EPDM三元共混体系的组分分布、相容性和结晶行为。实验结果表明,EPDM与PE组分的相容性优于与PP组分的相容性,多数EPDM分子链段能够分布在PE组分中;EPDM含量为15%时,共混物相容性最好,SEM照片呈现晶体微区的互连或网络状结构;随EPDM含量增加,总结晶度Xc减小,其中PE组分结晶度XcE有较大幅度地降低,PP组分结晶度Xcp基本没有变化,这可以根据EPDM和PE、PP之间相容性的差异以及PE、PP两组分在冷却过程中不同的结晶行为来解释。  相似文献   

20.
Summary: Raman spectroscopy was applied to perform a comprehensive morphological analysis of polyethylene (PE) ski base materials at different processing levels. The morphological characterization included determination and evaluation of Raman spectra and examination of the crystallinity values by differential scanning calorimetry (DSC). A good agreement between Raman and DSC crystallinity fractions was obtained, thus corroborating the Raman spectroscopy approach. While for the PE grade with the lowest average molar mass no significant morphological changes due to processing from the raw material via the extruded film to the post-treated film was found, higher molar mass PE grades exhibited a decrease of crystallinity, but an increase of the amorphous fraction along the process chain.  相似文献   

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