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A method is first established for the separation and determination of fenpropathrin enantiomer residues in apple puree, strawberry puree, and tomato puree considered a supplementary food for infants by supercritical fluid chromatography. After the sample was extracted with acetonitrile and cleaned up by a solid-phase extraction column, then it was separated by a CHIRALPAK AD-3 chiral column with gradient elution at a flow rate of 1.5 mL/min using methanol and supercritical carbon dioxide as the mobile phase, detected by ultraviolet detector at 230 nm wavelength and quantified with the external standard method. The limits of quantification of the two fenpropathrin enantiomers were both 0.2 mg/kg, the linear ranges were 1.0–20.0 mg/L with linear correlation coefficients greater than 0.9992, the recoveries in the spiked samples at 0.2, 0.4 and 2.0 mg/kg were from 80.6 to 105%, and the relative standard deviation reached 2.6–7.7%. This method has the advantages of convenient operation, good resolution, and environmental protection, which can satisfy the requirement of determination for fenpropathrin enantiomer residues in fruit and vegetable puree as supplementary food for infants.  相似文献   
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甲氰菊酯的热容及热力学性质的研究   总被引:6,自引:0,他引:6  
采用精密自动绝热量热测量了自已合成并提纯到0.9916(摩尔分数)的甲氰菊酯在80~400K温区的热容.在此温区发现一固液熔化相变.其熔化温度、摩尔熔化焓、摩尔熔化熵分别为:(322.476^+~-0.012)K,(18.57^+~-0.29)kj.mol^-^1,(57.59^+~-1.01)J.K^-^1.mol^-^1.报道了该物质每隔5K的热力学函数值,用热重法研究了该化合物的热分解,对试样的化学纯度进行了量热研究。  相似文献   
3.
The heat capacities of fenpropathrin in the temperature range from 80 to 400 K were measured with a precise automatic adiabatic calorimeter. The fenpropathrin sample was prepared with the purity of 0.9916 mole fraction. A solid—liquid fusion phase transition was observed in the experimental temperature range. The melting point, Tm, enthalpy and entropy of fusion, fusHm, fusSm, were determined to be 322.48±0.01 K, 18.57±0.29 kJ mol–1 and 57.59±1.01 J mol–1 K–1, respectively. The thermodynamic functions of fenpropathrin, H(T)H(298.15), S(T)S(298.15) and G(T)G(298.15), were reported with a temperature interval of 5 K. The TG analysis under the heating rate of 10 K min–1 confirmed that the thermal decomposition of the sample starts at ca. 450 K and terminates at ca. 575 K. The maximum decomposition rate was obtained at 558 K. The purity of the sample was determined by a fractional melting method.This revised version was published online in November 2005 with corrections to the Cover Date.  相似文献   
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本文将聚乙烯醇(PVA)包覆的纳米银粒子组装在铝片表面形成的纳米银薄膜作为表面增强拉曼散射基底,使用扫描电镜对纳米银膜的表面形貌进行了表征。同时采用近红外激光(785nm)作为激发光对甲氰菊酯的丙酮溶液(10-4~10-7 mol/L)进行了近红外表面增强拉曼散射(NIR-SERS)光谱检测。结果表明该方法对甲氰菊酯的检测极限为10-6 mol/L。最后对甲氰菊酯的NIR-SERS光谱重现性进行了检测,即分别检测了浓度为10-4 mol/L和10-5 mol/L的甲氰菊酯丙酮溶液各6个样品,实验结果表明该纳米银膜在检测甲氰菊酯时体现出了较好的重复性。  相似文献   
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