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蛋黄冷冻凝胶化的产生原因及抑制方法的研究进展
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作者 杨田 李凤红 +4 位作者 李鑫 董世建 李述刚 黄群 何雨 《食品科学》 EI CAS CSCD 北大核心 2024年第21期39-47,共9页
蛋黄是一个由多样化蛋白质组成的复杂的超分子结构体系,具有丰富的营养价值和突出的功能特性。冷冻保藏是工业上常用的延长蛋黄保质期、提高运输便捷性的有效方式。但在低温条件下,蛋黄内部的蛋白质会发生聚集,导致蛋黄凝胶化,从而出现... 蛋黄是一个由多样化蛋白质组成的复杂的超分子结构体系,具有丰富的营养价值和突出的功能特性。冷冻保藏是工业上常用的延长蛋黄保质期、提高运输便捷性的有效方式。但在低温条件下,蛋黄内部的蛋白质会发生聚集,导致蛋黄凝胶化,从而出现流动性降低、溶解性下降等问题,影响其功能特性,不利于其在食品加工中的应用。本文介绍蛋黄的组成结构、功能特性,以及蛋黄冷冻原因和蛋黄凝胶化的形成机制,论述蛋黄的冷冻凝胶化对蛋黄品质的影响,重点阐述采用物理、化学和生物等方法对蛋黄进行预处理,抑制冷冻过程中蛋白质的聚集,对抑制蛋黄冷冻凝胶化的产生、改善冷冻蛋黄的品质具有指导意义。 展开更多
关键词 蛋黄 冷冻凝胶化 品质劣变 蛋白质聚集 抑制方法
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Nanocomposite LiFePO_4·Li_3V_2(PO_4)_3/C synthesized by freeze-drying assisted sol-gel method and its magnetic and electrochemical properties 被引量:3
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作者 刘丽英 肖文学 +7 位作者 郭剑峰 崔艳艳 柯曦 蔡伟通 刘军 陈易明 施志聪 侴术雷 《Science China Materials》 SCIE EI CSCD 2018年第1期39-47,共9页
Nano-sized LiFePO_4·Li_3V_2(PO_4)_3/C was synthesized via a sol-gel route combining with freeze-drying. X-ray diffraction results show that this composite mainly consists of olivine Li Fe PO4 and monoclinic Li3... Nano-sized LiFePO_4·Li_3V_2(PO_4)_3/C was synthesized via a sol-gel route combining with freeze-drying. X-ray diffraction results show that this composite mainly consists of olivine Li Fe PO4 and monoclinic Li3 V2(PO4)3 phases with small amounts of V-doped LiFePO_4 and Fe-doped Li_3V_2(PO_4)_3. The magnetic properties of LiFePO_4·Li_3V_2(PO_4)_3/C are significantly different from LiFePO_4/C. Trace quantities of ferromagnetic impurities and Fe_2P are verified in LiFePO_4/C and LiFePO_4·Li_3V_2(PO_4)_3/C by magnetic tests, respectively. LiFePO_4·Li_3 V_2(PO_4)_3/C possesses relatively better rate capacities and cyclic stabilities, especially at high charge-discharge rates.The initial discharge capacities are 136.4 and 130.0 mA h g^(-1),and the capacity retentions are more than 98% after 100 cycles at 2C and 5C, respectively, remarkably better than those of LiFePO_4/C. The excellent electrochemical performances are ascribed to the mutual doping of V^(3+)and Fe^(2+), complementary advantages of LiFePO_4 and Li_3V_2(PO_4)_3 phases, the residual high-ordered carbon and Fe_2P with outstanding electric conductivity in the nanocomposite. 展开更多
关键词 lithium ion battery cathode material lithium iron phosphate lithium vanadium phosphate magnetic property
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