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31.
Carbon dioxide was investigated for use as a beneficial admixture to concrete as it was truck mixed. The reaction between the CO2 and the hydrating cement creates finely distributed calcium carbonate reaction products that thereby influence the subsequent hydration. Comparisons of the fresh, hardened and durability properties were made between a reference concrete batch, a batch that contained a conventional accelerating admixture, and three batches subjected to a carbon dioxide addition. The optimum dose of carbon dioxide was found to reduce the time to initial set by 40% and increase the one and three day compressive strengths by 14% and 10% respectively. In comparison to the CO2 batch, the conventional accelerator provided greater reductions in set time but lower early strength. Concrete durability test results indicated that the carbon dioxide process did not compromise the expected durability performance of the treated concrete. Carbon dioxide is a viable admixture to improve concrete performance.  相似文献   
32.
This paper presents the results of uniaxial tensile tests, flow-rate measurements, and size-exclusion chromatography (SEC), which are used to evaluate the ageing of elastomeric bituminous geomembranes (BGMs) that were installed 6, 10, 15, 20, and 30 years ago in ponds at two different sites in France. SEC was used to detect oxidation and the absence of polymer in the bitumen at the surface of the 20- and 30-year-old BGMs. The results indicate that, for BGMs exposed less than 20 years, there was no oxidation or degradation of the polymer at the core. However, the elastomeric polymer was altered at the core of the 30-year-old BGM, resulting in an embrittlement of the bitumen, but this did not affect the mechanical properties of the glass veil and nonwoven polyester geotextile in the BGM core. Lastly, the flow rates through the BGM measured according to EN 14150 are still below 10?6 m3 m?2 d?1, which indicates that the elastomeric bituminous GM is still watertight after 30 years of exposure.  相似文献   
33.
Boron nitride, which is also known as “white graphene” may be an attractive filler for composite proton exchange membrane. Application of polymer electrolyte membranes in fuel cell as an electrolyte is gaining attention due to the requirement of clean energy. However, despite its attractive features it requires more consideration for complete commercialization. Herein we demonstrate the preparation of novel functionalized WHITE GRAPHENE (hexagonal boron nitride) and sulfonated poly ether sulfone (SPES) based polymer electrolyte membranes (PEM). Composite membranes have been characterized through thermal, mechanical, structural analysis. Membranes have been subjected to measure methanol permeability and proton conductivity at different temperatures for its use in DMFC. Composite membranes exhibit good physicochemical properties as well as high methanol crossover resistance. 0.5 wt % of FBN (SP-FBN-05) membrane is found to be adequate to get the better performance in DMFC.  相似文献   
34.
Splitting water for hydrogen production is still a promising technique to meet the energy requirements of society and overcome many environmental problems. However, the development of carbon-based transition electrocatalysts with superior activity for hydrogen evolution reaction (HER) is still challenging. In this study, a CoNiMo/NPC electrocatalyst was successfully fabricated using ZIF-67 as a precursor via facile absorption, pyrolysis and annealing processes. The fabricated CoNiMo/NPC was used as an electrocatalyst for hydrogen production. The results revealed that the doping of Ni and Mo increase the number of active sites and enhance the conductivity of electrocatalysts. CoNiMo/NPC exhibits excellent HER activity in alkaline solutions and only requires an overpotential of 182 mV to reach a current density of 10 mA/cm2. Furthermore, long-term measurements demonstrated that CoNiMo/NPC has superior durability in alkaline solutions. The excellent HER performance of CoNiMo/NPC can be attributed to the doping of Co, Ni, and Mo on porous carbon. In addition, the high specific surface area and high graphitisation degree of the electrocatalyst are beneficial for rapid charge transport and collection.  相似文献   
35.
A series of Ni/Fe electrodes have been prepared by electrodeposition of metal salt precursors on different substrates. The surface morphology, chemical composition and electrochemical characteristics of these electrodes were studied by various physico-chemical techniques such as X-ray Photoelectron Spectroscopy (XPS) and Scanning Electron Microscopy (SEM). The electrochemical properties of the electrodes were examined by steady-state polarization curves. First, the influence of features such as Ni/Fe composition and type of substrate for the oxygen evolution reaction (OER) were determined by electrochemical techniques in a conventional 3-electrodes cell. The overpotential for the OER is lower for the electrodes with the higher concentrations of Ni. The electrodes with a Ni/Fe composition of 75/25 wt.% electrodeposited on steel mesh and/or 75/25 and 50/50 wt.% on nickel foam result in the most active configurations for the OER. These electrodes were further tested as anodes for alkaline water electrolysis during at least 70 h. In order to understand their activity and stability, the used electrodes were also characterized by SEM and compared to the fresh electrodes. Among the compositions and substrates examined, the Ni50Fe50-Nf electrode exhibited the lowest overpotential (2.1 V) for the OER and the higher stability as anode in an alkaline water electrolysis cell.  相似文献   
36.
We attempted the room-temperature fabrication of Al2O3-based nanodiamond (ND) composite coating films on glass substrates by an aerosol deposition (AD) process to improve the anti-scratch and anti-smudge properties of the films. Submicron Al2O3 powder capable of fabricating transparent hard coating films was used as a base material for the starting powders, and ND treated by 1H,1H,2H,2H-perfluorooctyltriethoxysilane (PFOTES) was added to the Al2O3 to increase the hydrophobicity and anti-wear properties. The ND powder treated by PFOTES was mixed with the Al2O3 powder by ball milling to ratios of 0.01 wt.%, 0.03 wt.%, and 0.05 wt.% ND. The water contact angle (CA) of the Al2O3-ND composite coating films was increased as the ND ratio increased, and the maximum water CA among all the films was 110°. In contrast to the water CA, the Al2O3-ND composite coating films showed low transmittance values of below 50% at a wavelength of 550 nm due to the strong agglomeration of ND. To prevent the agglomeration of ND, the starting powders were mixed by attrition milling. As a result, Al2O3-ND composite coating films were produced that showed high transmittance values of close to 80%, even though the starting powder included 1.0 wt.% ND. In addition, the Al2O3-ND composite coating films had a high water CA of 109° and superior anti-wear properties compared to those of glass substrates.  相似文献   
37.
The durability of a niobium (Nb) thin film deposited on AISI 316L by magnetron sputtering was investigated in simulated polymer electrolyte membrane fuel cell (PEMFC) environments. The result of a potentiostatic test in a simulated corrosion environment showed that the current densities of the cathode and anode were 1.56 × 10−7 and -7.2 × 10−7 A/cm2, respectively.Before and after the potentiostatic test, the value of the interfacial contact resistance (ICR) increased 40.1 mΩ cm2 at 1.5 MPa. The cell performance observed with the Nb-bipolar plate (BP) was slightly decreased compared to the commercial graphite-BP over this test period. After a 300 h durability test, cell performance of the Nb-BP unit cell was slightly decreased by 5.4% at a current density of 400 mA/cm2.  相似文献   
38.
A model is proposed for prediction of natural carbonation in reinforced concrete (RC) structures, and is potentially applicable to existing and new RC structures. The major components of the model comprise mathematical functions applied to predict the influence of concrete composition, and environmental factors on natural carbonation.This paper introduces the model concept and explains its structure including derivation, optimization and calibration. Over 163 data sets taken from a 10-year carbonation study were used in the model development and calibration. Only the experimental data that were based on outdoor natural exposure environment were employed in this research. Also in this study, the proposed model is compared with fib-Model Code 2010 using carbonation predictions generated from 346 data sets involving real world, highway structures. It is shown that the proposed model is comparably accurate and involves mainly basic tests with no major anticipated costs.  相似文献   
39.
介绍一种汽车滑移门走轮臂和止动合件耐久试验方法及装置,该装置结构简单,能够模拟滑动门实际工作时的运动情况,并避免使用整个滑移门作为试验对象,能快速验证止动合件及走轮臂的耐久性和可靠性。  相似文献   
40.
通过优化养护剂组分,研制出有效保水率高、在新鲜混凝土面成膜快的高分子乳液型养护剂,室内对比研究了三种养护方式(标准养护、自然养护和养护剂养护)对混凝土强度、耐久性和塑性收缩、开裂的影响,并采用该养护剂在干旱风沙地区进行了工程应用。结果表明,与标准养护相比,养护剂养护下混凝土7d 前强度不降低,56d强度仅降低约5%,90d 自然碳化深度为0,氯离子渗透性略有增加;成膜养护剂能有效降低混凝土塑性收缩和开裂程度,用于干旱风沙地区混凝土养护具有明显的技术经济性能优势。  相似文献   
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