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A new approach of ball-milled Mg2Ni in tetrahydrofuran (THF) to improve the hydriding kinetics of Mg2Ni alloy is suggested and studied. It is found that the modified alloy displayed the improved activity for hydriding even at relatively low temperature (e.g., 323-373 K). In the case of the sample milled in THF for 20 h, the hydrogen content (mass fraction) reaches 1.6 % at 323 K, 2.1% at 348 K and 3.4% at 448 K, respectively. The use of THF during grinding led to the change of the structure, which is reflected by the broadening and weakening of the diffraction peaks in the XRD spectra. The XPS analysis shows that Mg (2s) binding energy peak of Mg2Ni after modification shifted from a lower binding energy to a higher one, indicating the charge transference between Mg and THF and the formation of catalytically active electron donor-acceptor (EDA) complexes on the surface of modified Mg2Ni alloy.  相似文献   
3.
介绍了粗品四氢呋喃的除醇技术,过氧化物的生成机理与抗氧化技术。  相似文献   
4.
聚氨酯弹性体复合抗磨环的研制   总被引:2,自引:0,他引:2  
介绍了聚氨酯弹性体复合抗磨环的设计及制作过程,并将该产品应用于挖泥船泥泵中。经过试验证明,该产品比传统的钢质抗磨环耐气蚀、耐磨损,使用寿命可延长3倍以上。  相似文献   
5.
M.L. Sagu  K.K. Bhattacharyya 《Polymer》1984,25(8):1193-1197
Radiation-initiated copolymerization of solid trioxane (TOX) with tetrahydrofuran (THF) was investigated. The effects of radiation dose, THF concentration, and post-polymerization temperature and duration on copolymer yield and THF incorporation were studied. These results are compared with the results of TOX homopolymerization under identical conditions. Copolymer yield was lower than that of homopolymer. Only a fraction of charged THF entered into the polymer chain. THF content and radiation dose also altered the MW of the copolymer but it showed better thermal stability. The initial reaction rates of the copolymerization were determined and from these the activation energy was found to be 36.2 kcal mol?1.  相似文献   
6.
Under water-rich conditions, small amphiphilic and hydrophobic drug molecules self-assemble into supramolecular nanostructures. Thus, substantial modifications in their interaction with cellular structures and the ability to reach intracellular targets could happen. Additionally, drug aggregates could be more toxic than the non-aggregated counterparts, or vice versa. Moreover, since self-aggregation reduces the number of effective “monomeric” molecules that interact with the target, the drug potency could be underestimated. In other cases, the activity could be ascribed to the non-aggregated molecule while it stems from its aggregates. Thus, drug self-assembly could mislead from drug throughput screening assays to advanced preclinical and clinical trials. Finally, aggregates could serve as crystallization nuclei. The impact that this phenomenon has on the biological performance of active compounds, the inconsistent and often controversial nature of the published data and the need for recommendations/guidelines as preamble of more harmonized research protocols to characterize drug self-aggregation were main motivations for this review. First, the key molecular and environmental parameters governing drug self-aggregation, the main drug families for which this phenomenon and the methods used for its characterization are described. Then, promising nanotechnology platforms investigated to prevent/control it towards a more efficient drug development process are briefly discussed.  相似文献   
7.
研究压力如何影响恒沸点,探索改变操作压力由反应精馏精制四氢呋喃(THF)可行性,模拟计算考察了压力对THF/水体系恒沸点的影响,结果表明体系压力增加,恒沸物中THF摩尔分率减少。通过两塔在不同压力下操作,利用反应精馏技术可从1,4-丁二醇制备高纯度的THF。  相似文献   
8.
采用溶胀/溶解法回收报废HTPB推进剂中的AP。研究了浸取时间、浸取温度、四氢呋喃质量分数、液料比(四氢呋喃溶液体积与HTPB推进剂的质量比)、试样厚度及搅拌速率对AP回收率的影响。通过扫描电镜、X射线能谱仪对回收得到的AP进行表征,并对其纯度进行了检测。结果表明,AP的最佳回收工艺参数为:浸取时间6h、浸取温度60℃、四氢呋喃质量分数80%、液料比10∶1(mL/g)、试样厚度3mm、搅拌速率500r/min。其中,浸取时间、浸取温度和四氢呋喃质量分数对AP回收率的影响较大。在最佳工艺条件下,AP的回收率为95.0%,纯度为96.1%,表明此方法可用于报废HTPB推进剂中AP组分的回收。  相似文献   
9.
端羟基ECH-THF共聚醚合成的可控性研究   总被引:1,自引:0,他引:1  
首次以三羟乙基异氰脲酸酯( THEIC)为起始剂开展了环氧氯丙烷(ECH)与四氢呋喃( THF)的聚合研究,考察了催化剂种类、共聚温度及投料比等因素对ECH-THF共聚可控性的影响,确定了该体系下ECH-THF可控聚合的优化条件为:以BF3·THF为催化剂,nECH/nTHEIC≤30/1,nECH/ nTHF ≥2/...  相似文献   
10.
Modular ligation strategies for the functionalization of polymeric microspheres provide new perspectives for their applications in material science. In the current trend article we highlight variable synthetic procedures for generating functional microspheres via orthogonal modular conjugation chemistries. An overview of the different surface chemistries available is provided, followed by surface-sensitive characterization techniques relevant for the microparticles. Finally, we explore future trends in modular orthogonal modification approaches on microparticles and provide an outlook on the perspectives that the field of surface-modification of polymeric microparticles holds.  相似文献   
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