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凝固剂种类对大豆蛋白质组分7S和11S胶凝能力的影响 被引量:8
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作者 钟芳 王璋 许时婴 《无锡轻工大学学报(食品与生物技术)》 CSCD 北大核心 2003年第3期12-17,共6页
在分离纯化得到具有较高纯度大豆蛋白7S和11S组分的基础上,采用动态流变仪测定了不同凝固剂单独作用于7S和11S时的胶凝曲线.结果表明,在采用葡萄糖酸内酯(GDL)作为凝固剂时,在GDL质量浓度0.5g/dL,60℃条件下,11S组分的胶凝速度明显高于7... 在分离纯化得到具有较高纯度大豆蛋白7S和11S组分的基础上,采用动态流变仪测定了不同凝固剂单独作用于7S和11S时的胶凝曲线.结果表明,在采用葡萄糖酸内酯(GDL)作为凝固剂时,在GDL质量浓度0.5g/dL,60℃条件下,11S组分的胶凝速度明显高于7S组分,但反应后期两者形成的凝胶强度相当;转谷氨酰胺酶(TGS)更有利于11S的胶凝,在TGS作用下,11S凝胶的强度约为7S凝胶的3倍;而以木瓜蛋白酶(papain)为凝固剂时,低酶用量条件下对胶凝起主要作用的是11S组分,而高酶用量条件下起主要作用的是7S组分,在各自适宜的papain用量条件下,11S组分凝胶的强度高于7S组分. 展开更多
关键词 固剂 大豆蛋白质 胶凝能力 7S 11S 动态流变仪 葡萄糖酸内酯 木瓜蛋白酶
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氨基酸衍生物类凝胶因子的合成及成胶能力评价 被引量:1
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作者 王可可 梁宇 +1 位作者 陈希 姜明燕 《中国药科大学学报》 CAS CSCD 北大核心 2014年第3期320-324,共5页
以L-丙氨酸和L-苯丙氨酸为母体,与不同碳链长度的饱和酰氯进行酰胺反应,合成了一系列有机凝胶因子,并通过1H NMR和MS对其结构进行鉴定。通过测定最小胶凝浓度和相转变温度,比较凝胶因子分子结构与胶凝能力间的关系,结果表明,8种凝胶因... 以L-丙氨酸和L-苯丙氨酸为母体,与不同碳链长度的饱和酰氯进行酰胺反应,合成了一系列有机凝胶因子,并通过1H NMR和MS对其结构进行鉴定。通过测定最小胶凝浓度和相转变温度,比较凝胶因子分子结构与胶凝能力间的关系,结果表明,8种凝胶因子均可在大多数油相中形成有机凝胶,氨基酸手性碳原子的空间位阻及羧酸端酯基的增大均可导致胶凝能力的下降,而碳链长度的增加则使有机凝胶胶凝能力增强。有机凝胶因子分子结构对胶凝能力影响规律的发现为开发新型有机凝胶释药系统提供了理论基础。 展开更多
关键词 有机释药系统 因子 胶凝能力 最小浓度 相转变温度
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鱼糜凝胶过程的影响因素分析 被引量:46
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作者 陈艳 丁玉庭 +1 位作者 邹礼根 殷亚峰 《食品研究与开发》 CAS 2003年第3期12-15,共4页
鱼糜凝胶能力的大小受鱼种类、漂洗液、辅料以及冷藏等外部条件的影响,而凝胶过程中的凝胶劣化现象(modori)主要是由内源热稳定碱性蛋白酶降解肌原纤维重链引起的。本文除对以上外部条件的研究外,着重探讨内源酶类对鱼糜凝胶的影响及其... 鱼糜凝胶能力的大小受鱼种类、漂洗液、辅料以及冷藏等外部条件的影响,而凝胶过程中的凝胶劣化现象(modori)主要是由内源热稳定碱性蛋白酶降解肌原纤维重链引起的。本文除对以上外部条件的研究外,着重探讨内源酶类对鱼糜凝胶的影响及其抑制机理。 展开更多
关键词 鱼糜 能力 劣化现象 内源酶类 抑制机理
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凝胶产品中使用冷藏牛肉的最佳时间
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《中外食品加工技术》 2003年第8期65-65,共1页
关键词 产品 牛肉 冷藏时间 储藏 能力 功能特性 蛋白质 肌纤维蛋白 溶解度
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明胶的冻力 被引量:9
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作者 李云龙 《明胶科学与技术》 CAS 2000年第2期98-99,共2页
冻力是明胶多项理化指标中的一项重要指标。早在20世纪70年代初期,国内明胶用户从应用明胶的实践中,觉察到明胶冻力在应用中的重要作用,因此向明胶厂提出,要求生产供应高冻力明胶,价格可以从优。明胶厂为了满足用户的需求,将“高冻力明... 冻力是明胶多项理化指标中的一项重要指标。早在20世纪70年代初期,国内明胶用户从应用明胶的实践中,觉察到明胶冻力在应用中的重要作用,因此向明胶厂提出,要求生产供应高冻力明胶,价格可以从优。明胶厂为了满足用户的需求,将“高冻力明胶”作为科研课题列入工作日程。随着我国的改革开放。 展开更多
关键词 冻力 能力 粘剂
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相对分子质量对水解胶原性能的影响 被引量:3
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作者 张雪青 曾运航 +1 位作者 廖学品 石碧 《皮革科学与工程》 CAS 2015年第3期11-16,共6页
以猪皮明胶为原料,用酶解法制备了平均相对分子质量分别为47 k Da、18 k Da、9 k Da和3 k Da的四种水解胶原(CH),并考察了其凝胶性能、表面活性、吸湿保湿性能和抗氧化活性的差别。结果表明:CH的凝胶性能随着相对分子质量的减小而明显减... 以猪皮明胶为原料,用酶解法制备了平均相对分子质量分别为47 k Da、18 k Da、9 k Da和3 k Da的四种水解胶原(CH),并考察了其凝胶性能、表面活性、吸湿保湿性能和抗氧化活性的差别。结果表明:CH的凝胶性能随着相对分子质量的减小而明显减弱,当相对分子质量为3 k Da时已很难形成凝胶;CH的表面活性和吸湿、保湿能力则随着相对分子质量的减小而增强;这四种CH的抗氧化能力均较弱,它们的ABTS、DPPH和羟自由基清除率以及铜离子螯合能力基本相同,还原能力则随相对分子质量减小而略有提高。 展开更多
关键词 水解 相对分子质量 能力 表面活性 吸湿保湿性 抗氧化性
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谷氨酰胺转氨酶对豆浆凝固性能影响
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作者 陈洁 刘梅芳 +2 位作者 黄海坚 秦三敏 何冬兰 《中南民族大学学报(自然科学版)》 CAS 2008年第2期18-20,共3页
运用正交旋转组合设计的方法研究了谷氨酰胺转氨酶活性、反应温度和反应时间对豆浆凝固的影响,并利用得到的最佳组合与葡萄糖酸-γ-内酯分别对豆浆进行凝固实验,比较两者的凝胶性和抗压能力.结果表明:MTG酶活性、反应时间和反应温... 运用正交旋转组合设计的方法研究了谷氨酰胺转氨酶活性、反应温度和反应时间对豆浆凝固的影响,并利用得到的最佳组合与葡萄糖酸-γ-内酯分别对豆浆进行凝固实验,比较两者的凝胶性和抗压能力.结果表明:MTG酶活性、反应时间和反应温度对豆浆凝固影响较大,当酶活力为0.04~0.64u/mL,35-50℃作用170-310min均可使豆浆凝固,其中又以酶活0.32u/mL、45℃作用300min效果为最佳,此时豆腐凝固体积比为76.92%,高度比为73.98%,分别比葡萄糖酸一y-内酯豆腐高10.25%和4.82%. 展开更多
关键词 谷氨酰胺转氨酶 豆腐 能力
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明胶在食品中的应用 被引量:1
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作者 利健霭 《中国食品工业》 2008年第3期43-44,共2页
明胶是一种从动物的骨头、皮肤、肌腱和肌肉中提取出来,经过酸、碱或酶的部分水解而获得的天然、可溶解、具有凝胶能力的蛋白质。
关键词 应用 食品 部分水解 能力 蛋白质 骨头 皮肤
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Preparation and Application of the Sol–Gel Combustion Synthesis-Made CaO/CaZrO_3 Sorbent for Cyclic CO_2 Capture Through the Severe Calcination Condition 被引量:5
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作者 王保文 宋小勇 +1 位作者 王宗华 郑楚光 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第9期991-999,共9页
Calcium looping method has been considered as one of the efficient options to capture C02 in the combustion Ilue gas. CaO-based sorbent is the basis for application of calcium looping and should be subjected to the se... Calcium looping method has been considered as one of the efficient options to capture C02 in the combustion Ilue gas. CaO-based sorbent is the basis for application of calcium looping and should be subjected to the severe calcination condition so as to obtain the concentrated C02 stream. In this research, CaO/CaZrO3 sorbents were synthesized using the sol-gel combustion synthesis (SGCS) method with urea as fuel. The cyclic reaction performance of the synthesized sorbents was evaluated on a lab-scaled reactor system through calcination at 950 ℃ in a pure C02 atmosphere and carbonation at 650 ℃ in the 15% (by volume) C02. The mass ratio of CaO to CaZr03 as 8:2 (designated as CasZr2) was screened as the best option among all the synthesized CaO sorbents for its high CO2 capture capacity and carbonation conversion at the initial cycle. And then a gradual decay in the C02 capture capacity was observed at the following 10 successive cycles, but hereafter stabilized throughout the later cycles. Furthermore, structural evolution of the carbonated CasZr2 over the looping cycles was investigated. With increasing looping cycles, the pore peak and mean grain size of the carbonated CasZr2 sorbent shifted to the bigger direction but both the surface area (SA) ratio and surface fractal dimension Ds decreased. Finally, morphological transformation of the carbonated CasZr2 was observed. Agglomeration and edge rounding of the newly formed CaC03 grains were found as aggravated at the cyclic carbonation stage. As a result, carbonation of CasZr2 with C02 was observed only confined to the external active CaO by the fast formation of the CaC03 shell outside, which occluded the further carbonation of the unreacted CaO inside. Therefore, enough attention should be paid to the carbonation stage and more effective activation measures should be explored to ensure the unreacted active CaO fully carbonatPd river the extended Ioonin cycles. 展开更多
关键词 C02 captureCalcium looping cyclesCaO/CaZr03 sorbentSol-gel combustion synthesis method
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Increased photo-catalytic removal of sulfur using titania/MWCNT composite 被引量:1
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作者 Molood Barmala Abdolsamad Zarringhalam Moghadam Mohammad Reza Omidkhah 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第5期1066-1070,共5页
Titania coating of multi wall carbon nano tube(MWCNT) was carried out by sol-gel method in order to improve its photo catalytic properties.The effect of MWCNT/TiO_2 mass to volume ratio on adsorption ability,reaction ... Titania coating of multi wall carbon nano tube(MWCNT) was carried out by sol-gel method in order to improve its photo catalytic properties.The effect of MWCNT/TiO_2 mass to volume ratio on adsorption ability,reaction rate and photo-catalytic removal efficiency of dibenzothiophene(DBT) from n-hexane solution was investigated using a 9 W UV lamp.The results show that the addition of nanotubes improves the photo-catalytic properties of TiO_2 by two factors;however,the DBT removal rate versus MWCNT content is found to follow a bimodal pattern.Two factors are observed to affect the removal rate of DBT and produce two optimum values for MWCNT content.First,large quantities of MWCNTs prevent light absorption by the solution and decrease removal efficiency.By contrast,a low dosage of MWCNT causes recombination of the electron holes,which also decreases the DBT removal rate.The optimum MWCNT contents in the composite are found to be 0.25 g and 0.75 g MWCNT per 80 m L of sol. 展开更多
关键词 photo oxidation DESULFURIZATION SOL-GEL TITANIA multi wall carbon nano tube (MWCNT)
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Studies on Water Absorbency of Polyacrylamide Hydrogels
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作者 Bhadani Reena Mitra Uttam Kumar 《材料科学与工程(中英文B版)》 2015年第11期399-405,共7页
关键词 聚丙烯酰胺水 吸水性能 亚甲基双丙烯酰胺 聚合物链 吸水膨胀 NAOH溶液 能力 离子强度
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Experimental Investigatin of Cementitious Slabs Rinforced with Wired-Meshes and Continuous CFRP Slices
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作者 Hassan Mohamed Ibrahim 《Journal of Civil Engineering and Architecture》 2010年第8期53-62,共10页
Bending tests were conducted on 23 ferrocement slab specimens with steel meshes and continuous CFRP fibers. Two, or three, or four CFRP slices are gathered as a rope and hence these ropes are arranged to form a grid t... Bending tests were conducted on 23 ferrocement slab specimens with steel meshes and continuous CFRP fibers. Two, or three, or four CFRP slices are gathered as a rope and hence these ropes are arranged to form a grid tied to a skeletal frame. The three patterns of slice reinforcement were used to reinforce cementitious slabs with or without conventional wire mesh reinforcement. The slabs were square and simply supported at their periphery with a clear span of 400 mm, and concentrically patch loaded to failure. For specimens designed to fail in flexure, the specimens reinforced with CFRP slices showed a smoother load deflection response and higher flexural capacity. For slabs designed to fail in punching shear, adding CFRP slices showed significant improvement in the ultimate shear capacity and ductility over reference specimens. Well distributed fine cracks of smaller width than control specimens were developed and no matrix spalling was observed. 展开更多
关键词 CFRP slices ferrocement slabs punching failure
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山楂罐头的糖水为啥那样粘稠?
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作者 石红 《商业研究》 1979年第2期16-16,共1页
糖水山楂罐头的含糖量约为16—22%(指开罐浓度,按折光计),与其他糖水水果罐头的糖度差不多。山楂罐头的糖水显得粘稠,并非加糖特多,而是山楂的果胶物质造成的。所有的水果都含有果胶物质,但含量不同。一般地说,含量越多,凝胶能力越... 糖水山楂罐头的含糖量约为16—22%(指开罐浓度,按折光计),与其他糖水水果罐头的糖度差不多。山楂罐头的糖水显得粘稠,并非加糖特多,而是山楂的果胶物质造成的。所有的水果都含有果胶物质,但含量不同。一般地说,含量越多,凝胶能力越大。凝胶能力大小还与下列两个因素有关:一是果胶质的分子量大小,分子量高,凝胶能力强,反之凝胶能力弱;二是果胶质中的甲氧基(—COH<sub>3</sub>)含量多少;甲氧基含量多,凝胶能力强,反之凝胶能力弱。 展开更多
关键词 能力 山楂罐头 物质 糖水 甲氧基 含糖量 粘稠 水果罐头 折光计
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Effect of high temperature on compression property and deformation recovery of ceramic fiber reinforced silica aerogel composites 被引量:5
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作者 LYU ShuangQi YANG XiaoGuang +3 位作者 SHI DuoQi QI HongYu JING Xin LI ShaoLin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第11期1681-1691,共11页
Ceramic fiber reinforced silica aerogel composites are novel insulation materials in the thermal protection field for hypersonic vehicles. Before the aerogel composites are applied in load-bearing structures, it is ne... Ceramic fiber reinforced silica aerogel composites are novel insulation materials in the thermal protection field for hypersonic vehicles. Before the aerogel composites are applied in load-bearing structures, it is necessary to investigate their mechanical properties including load-bearing and deformation recovery capabilities. High temperature from service conditions will have important effects on the mechanical properties of thermal protection materials. In this paper, compression tests including loading and unloading stages were conducted for ceramic fiber reinforced silica aerogel composites at room temperature and elevated temperatures(300℃, 600℃ and 900℃). Influences of thermal exposure to high temperature and high temperature service environment on the compression property and deformation recovery were both investigated. Scanning electron microscopy(SEM), Fourier transform infrared spectroscopy(FT-IR) and X-ray diffraction(XRD) were applied to help understand the mechanisms of mechanical property variations. The experimental results show that the compression modulus and strength both increase with the increasing thermal exposure temperature and testing temperature,but the deformation recovery capability decreases. The micro structure changes caused by thermal sintering are considered as the main reason for the property variations.Viscous flow and matter transport due to high temperature resulted in the fusion of aerogel particles. This made the particle skeleton thicker and stronger, which led to higher stiffness and strength of the composites. However, matrix cracks induced by the formation and fracture of larger pores made unrecoverable deformation more serious. In the tests at elevated temperatures,the aggregation of aerogel particles in a fused state got more severe because of the addition of mechanical load. As a result, the degradation of deformation recovery capability became more significant. 展开更多
关键词 aerogel composites high temperature deformation recovery thermal exposure thermal protection SINTERING
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Gelation capability of cysteine-modified cyclo(L-Lys-L-Lys)s dominated by Fmoc and Trt protecting groups
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作者 Huimin Geng Qianying Zong +4 位作者 Jie You Lin Ye Aiying Zhang Ziqiang Shao Zengguo Feng 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第3期293-302,共10页
A series of symmetrical peptidomimetics (3-8) based on cysteine-modified cyclo(L-Lys-L-Lys)s were synthesized, and their gelation capability in organic solvents was dominated by fluorenylmethyloxycarbonyl (Fmoc)... A series of symmetrical peptidomimetics (3-8) based on cysteine-modified cyclo(L-Lys-L-Lys)s were synthesized, and their gelation capability in organic solvents was dominated by fluorenylmethyloxycarbonyl (Fmoc) and triphenylmethyl (Trt) protecting groups and the exchange of thiol-to-disulfide as well. The peptidomimetics holding Trt (3 and 4) showed no gel performance, while the Fmoc groups promoted 5 and 6 to give rise to thermo-reversible organogels in a number of organic solvents. The self-assembled fibrillar networks were distinctly evidenced in the organogels by transmission electron micros- copy (TEM) and scanning electron microscopy (SEM) observations. Fourier transform infrared spectroscopy (FT-IR) and fluorescence analyses revealed that the hydrogen bonding and ^-rt stacking play as major driving forces for the self-assembly of these organogelators. A 13-turn secondary structure was deduced for the organogel of 6 by virtue of X-ray diffraction, FT-IR and circular dichroism (CD) measurements, and an interdigitated bilayer structure was also presented. 展开更多
关键词 ORGANOGEL cyclic dipeptide SELF-ASSEMBLY CYSTEINE β-turn
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Adhesive aero-hydrogel hybrid conductor assembled from silver nanowire architectures 被引量:2
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作者 Zhao Pan Ze-Yu Wang +2 位作者 Mo-Han Wang Lu Yang Shu-Hong Yu 《Science China Materials》 SCIE EI CAS CSCD 2021年第11期2868-2876,共9页
Conductive and adhesive hydrogels are promising materials for designing bioelectronics.To satisfy the high conductivity of bioelectronic devices,metal nanomaterials have been used to fabricate composite hydrogels.Howe... Conductive and adhesive hydrogels are promising materials for designing bioelectronics.To satisfy the high conductivity of bioelectronic devices,metal nanomaterials have been used to fabricate composite hydrogels.However,the fabrication of a conductive-nanomaterial-incorporated hydrogel with high performance is a great challenge because of the easy aggregation nature of conductive nanomaterials making processing difficult.Here,we report a kind of adhesive aero-hydrogel hybrid conductor(AAHC)with stretchable,adhesive and anti-bacteria properties by in situ formation of a hydrogel network in the aerogel-silver nanowires(AgNWs)assembly.The AgNWs with good conductivity are wellintegrated on the inner-surface of shape-memory chitosan aerogel,which created a conductive framework to allow hydrogel back-filling.Reinforcement by the aerogel-silver makes the hybrid hydrogel tough and stretchable.Functional groups from the hydrogel allow strong adhesion to wet tissues through molecular stitches.The inherent bacteria-killing ability of silver ions endows the conductive hydrogel with excellent anti-bacteria performance.The proposed facile strategy of aerogel-assisted assembly of metal nanomaterials with hydrogel opens a new route to incorporate functional nanoscale building blocks into hydrogels. 展开更多
关键词 silver nanowire chitosan aerogel templating assembly conductive hydrogel
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