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国家自然科学基金(U1204504)

作品数:2 被引量:2H指数:1
相关作者:李霞刘捷汤克勇刘广力更多>>
相关机构:郑州大学更多>>
发文基金:国家自然科学基金更多>>
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Kinetics and mechanism of thermal degradation of vegetable-tanned leather fiber被引量:2
2019年
Thermal degradation of vegetable-tanned leather fiber(VLF)was investigated by thermogravimetric analysis aiming to know the exact kinetics and degradation mechanism.The thermogravimetric(TG)and differential thermogravimetric(DTG)curves showed that decomposition of the VLF occurs mainly in the range of 150-600℃,and the latter exhibits asymmetrical peak with a pronounced shoulder.The decomposition process was first analyzed by deconvolution of the experimental DTG curves,followed by reconstruction of the weight loss profiles of two individual processes.Several common isoconversional approaches were applied to calculate the activation energy over a wide range of conversion for the sample,including modified Kissinger-Akahira-Sunose(MKAS),Friedman,and Flynn-Wall-Ozawa.The average activation energy of vegetable-tanned leather fiber was found to be 241.9 kJ mol^(−1) by MKAS method.The activation energy values obtained for the pseudocomponents representing highly-crosslinked and low-crosslinked collagen in VLF were given as 190.6 and 124.8 kJ mol^(−1),respectively.Generalized master plots results suggested that the reaction mechanism for highly-crosslinked collagen follows the random nucleation and growth process at conversion values lower than 0.5.When the conversion is higher than 0.5,the mechanism tends to random scission model.For low-crosslinked collagen,the degradation is mainly governed by random nucleation and nuclei growth.The gaseous products of VLF thermal degradation were analyzed with an online-coupled TG-Fourier transform infrared spectroscopy system.
Jie LiuLan LuoYadi HuFang WangXuejing ZhengKeyong Tang
关键词:LEATHERCOLLAGEN
固定pH敏感微凝胶和刚果红复合凝胶膜的传感性能与应用
2016年
以化学交联的聚乙烯醇(PVA)凝胶为基质,固定由沉淀聚合法制备的聚(丙烯酰胺-co-甲基丙烯酸)[P(AM-co-MAA)]微凝胶和刚果红,构筑了对p H有光学响应性的新型复合凝胶膜。采用连接有紫外-可见分光光度计的测试系统对复合凝胶膜的传感性能进行了研究,并考察了复合凝胶膜的响应时间和稳定性。结果表明,P(AM-co-MAA)微凝胶和刚果红对光吸收性能有明显的协同增效作用,复合凝胶膜的p H响应范围为4.1~0.5,响应时间小于100 s,显示出比固定单一p H敏感物更优越的性能。
刘捷李霞刘广力汤克勇
关键词:微凝胶刚果红固定化传感性能
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