六价铬Cr(VI)的不稳定性使其成为RoHS(限定有害物质,Restriction of Hazardous Substances)符合性测试的难点之一.采用分光光度法对塑料中痕量Cr(VI)进行检测,着重研究Cr(VI)萃取与显色中的过程参数与干扰因素的影响,并建立了一套试样...六价铬Cr(VI)的不稳定性使其成为RoHS(限定有害物质,Restriction of Hazardous Substances)符合性测试的难点之一.采用分光光度法对塑料中痕量Cr(VI)进行检测,着重研究Cr(VI)萃取与显色中的过程参数与干扰因素的影响,并建立了一套试样制备、萃取、显色等标准程序.研究表明,采用混合碱萃取法可对Cr(VI)进行有效提取,同时消除Cr(III)的干扰,通过排除共存离子影响,优化萃取、显色、标定过程中pH值、温度和时间等参数,可使试样和加标溶液的回复率保持在90%~110%之间,RSD<1%,校准在低浓度范围(0~500μg/L)呈良好线性关系.提出的方法和检测程序具有较高的精确度和灵敏度,而且操作简单、快速,为信息产业应对RoHS符合性测试提供了较好的技术支持.展开更多
The effects of temperature and wavelength choice on in-situ dissolution test instrument of Cimetidine were studied. Absorbance (A)〈 1.0 is required when using a fiber-optic dissolution test system. The detection wa...The effects of temperature and wavelength choice on in-situ dissolution test instrument of Cimetidine were studied. Absorbance (A)〈 1.0 is required when using a fiber-optic dissolution test system. The detection wavelength of 2 (218 nm) was replaced by 244 nm to carry out this test. The absorbance of Cimetidine solution at different temperature showed an obvious change. Calibration of Cimetidine solution should be tested at the same temperature (37° C) with the test solution. A suitable wavelength with smaller tangent slope could be chosen for in-situ dissolution test of Cimetidine tablets.展开更多
The purpose of this study was to investigate the hydrolyzation of aspirin during the process of dissolution testing for aspirin delayed-release tablets. Hydrolysis product of salicylic acid can result in adverse effec...The purpose of this study was to investigate the hydrolyzation of aspirin during the process of dissolution testing for aspirin delayed-release tablets. Hydrolysis product of salicylic acid can result in adverse effects and affect the determination of dissolution rate assaying. In this study, the technique of differential spectra was employed, which made it possible to monitor the dissolution testing in situ. The results showed that the hydrolyzation of aspirin made the percentage of salicylic acid exceed the limit of free salicylic acid (4.0), and the hydrolyzation may affect the quality detection of aspirin delayed-release tablets.展开更多
文摘六价铬Cr(VI)的不稳定性使其成为RoHS(限定有害物质,Restriction of Hazardous Substances)符合性测试的难点之一.采用分光光度法对塑料中痕量Cr(VI)进行检测,着重研究Cr(VI)萃取与显色中的过程参数与干扰因素的影响,并建立了一套试样制备、萃取、显色等标准程序.研究表明,采用混合碱萃取法可对Cr(VI)进行有效提取,同时消除Cr(III)的干扰,通过排除共存离子影响,优化萃取、显色、标定过程中pH值、温度和时间等参数,可使试样和加标溶液的回复率保持在90%~110%之间,RSD<1%,校准在低浓度范围(0~500μg/L)呈良好线性关系.提出的方法和检测程序具有较高的精确度和灵敏度,而且操作简单、快速,为信息产业应对RoHS符合性测试提供了较好的技术支持.
基金the Xinjiang Uygur Autonomous Region Natural Science Fund (No.2011211A041) Xinjiang Uygur Autonomous Region Science and Technology Plan (No.200910107)
文摘The effects of temperature and wavelength choice on in-situ dissolution test instrument of Cimetidine were studied. Absorbance (A)〈 1.0 is required when using a fiber-optic dissolution test system. The detection wavelength of 2 (218 nm) was replaced by 244 nm to carry out this test. The absorbance of Cimetidine solution at different temperature showed an obvious change. Calibration of Cimetidine solution should be tested at the same temperature (37° C) with the test solution. A suitable wavelength with smaller tangent slope could be chosen for in-situ dissolution test of Cimetidine tablets.
基金supported by the Xinjiang Medical University Scientific Innovation Fund (No. XJC201129)Xinjiang Uygur Autonomous Region Natural Science Fund (No. 2011211A041)
文摘The purpose of this study was to investigate the hydrolyzation of aspirin during the process of dissolution testing for aspirin delayed-release tablets. Hydrolysis product of salicylic acid can result in adverse effects and affect the determination of dissolution rate assaying. In this study, the technique of differential spectra was employed, which made it possible to monitor the dissolution testing in situ. The results showed that the hydrolyzation of aspirin made the percentage of salicylic acid exceed the limit of free salicylic acid (4.0), and the hydrolyzation may affect the quality detection of aspirin delayed-release tablets.