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91.
Ivan Kelnar Jakub Rotrekl Ludmila Kaprálková Jiřina Hromádková Adam Strachota 《应用聚合物科学杂志》2012,125(5):3477-3483
The effect of the clay content and the method of its combination with amine-terminated butadiene-acrylonitrile (ATBN) on the structure and behavior of epoxy was studied. In the case of the simultaneous addition of both components, the increasing clay content had a very small effect on the size of the reaction-induced phase separation-formed particles at 5% rubber content due to predominant elimination of two major clay effects, i.e., the nucleation due to phase separation and the kinetics. As a result, both the time window between the onset of phase separation and vitrification and the viscosity at the cloud point did not change significantly. The minor change in the particle size/clay content dependences with different curing temperatures indicates that the balance between the two clay effects shifted. The corresponding study of the mechanical behavior indicated that the best balanced mechanical properties were obtained at certain clay/ATBN ratios, and thus, there was synergy between the components. Similar mechanical parameters were obtained for the application of both components in the form of ATBN/montmorillonite intercalate. © 2012 Wiley Periodicals, Inc. J Appl Polym Sci, 2012 相似文献
92.
Conclusions Low-temperature quenching (from 800°C) of steel 03Kh11N10M2T-VD promotes a noticeable increase in the ultimate rupture strength
and the resistance to corrosion cracking after aging at 520°C. We established a tendency toward an increase in the resistance
to corrosion cracking after quenching from 800°C and a provoking aging at 500°C. This behavior of the steel seems to be connected
with the formation of a finer martensite with a disperse intermetallic phase with uniformly distributed grain size after low-temperature
quenching.
Translated from Metallovedenie i Termicheskaya Obrabotka Metallov, No. 2, pp. 8–11, February, 2000. 相似文献
93.
The Rengen Grassland Experiment: soil contamination by trace elements after 65 years of Ca,N, P and K fertiliser application 总被引:1,自引:0,他引:1
Michal Hejcman Jiřina Szaková Jürgen Schellberg Petr Šrek Pavel Tlustoš 《Nutrient Cycling in Agroecosystems》2009,83(1):39-50
The Rengen Grassland Experiment (RGE) was established in the Eifel Mts. (Germany) on a low productive Nardetum in 1941. Since then, the following fertiliser treatments have been applied along with a two cut system: unfertilised control,
Ca, CaN, CaNP, CaNP–KCl and CaNP–K2SO4 with basic slag (syn. Thomas phosphate) as the only P fertiliser. The effect of long-term fertilisation on plant-available
(extracted with 0.01 mol l−1 CaCl2), easily-mobilisable (extracted with 0.05 mol l−1 EDTA), potentially-mobilisable (extracted with 2 mol l−1 HNO3) and total concentrations of trace elements (As, Cd, Cr, Cu, Fe, Mn, Ni, Pb and Zn) in the top 0–10 and 10–20 cm of soil
were investigated in 2006. According to redundancy analysis (RDA), the effect of treatment on the concentrations of risk elements
was significant and explained 82.3 and 90.6% of the variability in the data in the 0–10 and 10–20 cm soil layers, respectively.
Basic slag supplied the soil with considerable amounts of As, Cr, Cu, Fe, Mn and Zn. Following 65 years of fertiliser application
the concentrations of risk elements in the soil profile had increased substantially, especially with basic slag. However,
threshold limits for total trace element concentration in soil permitted by Czech national legislation were exceeded only
in the case of As. The increase in plant-available As concentrations was most critical as it increased the potential uptake
of As by plants in plots fertilised with P. Although P treatments received more than 300 g of Cr ha−1 annually, no effect on plant-available Cr soil content was detected. This contrasted with the accumulation of total Cr in
the 0–10 and 10–20 cm soil layers. Furthermore, plant availability of Cd, Fe, Mn and Zn was affected by soil pH and generally
decreased with the application of quick lime. Plant availability of these elements was not correlated with amounts supplied
by fertilisers. 相似文献
94.
95.
96.
Gaëtan Rimmelé Véronique Barlet-Gouédard Olivier Porcherie Bruno Goffé Fabrice Brunet 《Cement and Concrete Research》2008,38(8-9):1038-1048
Efficient and safe storage of injected supercritical carbon dioxide (CO2) underground is now one potential solution for reducing CO2 emissions in the atmosphere. Preventing any CO2 leakage through a wellbore annulus after injection is a key to maintaining long-term wellbore integrity. Most wells in depleted oil and gas fields may be re-used to inject CO2. These wells were mostly cemented with conventional Portland cement. It is thus crucial to study how such cement behaves at depth in CO2-rich fluids.Set cement samples are exposed to CO2 fluids under pressure and temperature to simulate downhole conditions. The degraded cement exhibits significant mineralogical changes and heterogeneous porosity distribution. The bulk porosity evolution, as well as local porosity gradients through the samples, is quantified using combined mercury porosimetry and back-scattered electron image analysis. Both techniques show an initial sealing stage related to calcium carbonate precipitation plugging the porosity, followed by a dissolution stage marked by a significant increase of porosity. 相似文献
97.
随着世界能源危机和环境污染的不断加剧,推动清洁能源革命已成为世界能源产业未来发展的重要趋势。近年来,中国对新能源产业的发展日益重视,尤其是对氢能产业的开发力度日益增大。在未来,氢能有望在推动中国能源结构改革、保障国家能源安全等方面扮演越来越重要的角色,并可能在能源、化工、交通等领域引起一系列变革。在氢能产业发展过程中,高效、低成本的氢气储运技术是实现大规模用氢的必要保障。目前,氢气的典型储运方式主要包括高压气态储运、低温液态储运、有机液态储运和固态储运技术等。综述了各储氢技术的研究现状,并在对不同氢气储运技术进行综合对比分析的基础上,对中国未来氢气储运技术的发展方向做出展望。 相似文献
98.
Ghinwa M. Naja René Alary Philippe Bajeat Gaël Bellenfant Jean-Jacques Godon Jean-Philippe Jaeg Gérard Keck Armand Lattes Carole Leroux Hugues Modelon Marina Moletta-Denat Olivier Ramalho Christophe Rousselle Sandrine Wenisch Isabelle Zdanevitch 《Renewable Energy》2011,36(12):3445-3451
Biogas produced from anaerobic fermentation of organic substances represents an alternative renewable energy source. Its utilization would contribute to substantial reduction of the solid waste volume in land-filling and incineration. Biogas so produced could be utilized on site or it could be injected into the natural gas distribution network. Microbiological and chemical compositions of different biogas types were determined in order to conduct qualitative and quantitative risk assessments of the potential health hazards associated with biogas use for cooking. Biogas types that could be allowed for injection in the natural gas pipelines were listed with recommendations, while outlining the European biogas injection policy. Results indicated that the injection of the processed biogas in the distribution network did not present any additional chemical or microbiological risk to consumers when compared to natural gas, provided that the biogas resulted from the fermentation of non-dangerous waste. However, since this study did not examine the microbiological and chemical composition of biogas originating from wastewater sludges and/or industrial wastes, the injection of this type of biogas into the gas distribution network should not be allowed unless a similar risk evaluation study is conducted for each case. 相似文献
99.
Michał Terlecki Saumya Badoni Michał K. Leszczyński Stanisław Gierlotka Iwona Justyniak Hanako Okuno Małgorzata Wolska-Pietkiewicz Daniel Lee Gaël De Paëpe Janusz Lewiński 《Advanced functional materials》2021,31(49):2105318
Colloidal nanoplatelets (NPLs) and nanosheets with controlled thickness have recently emerged as an exciting new class of quantum-sized nanomaterials with substantially distinct optical properties compared to 0D quantum dots. Zn-based NPLs are an attractive heavy-metal-free alternative to the so far most widespread cadmium chalcogenide colloidal 2D semiconductor nanostructures, but their synthesis remains challenging to achieve. The authors describe herein, to the best of their knowledge, the first synthesis of highly stable ZnO NPLs with the atomically precise thickness, which for the smallest NPLs is 3.2 nm (corresponding to 12 ZnO layers). Furthermore, by means of dynamic nuclear polarization-enhanced solid-state 15N NMR, the original role of the benzamidine ligands in stabilizing the surface of these nanomaterials is revealed, which can bind to both the polar and non-polar ZnO facets, acting either as X- or L-type ligands, respectively. This bimodal stabilization allows obtaining hexagonal NPLs for which the surface energy of the facets is modulated by the presence of the ligands. Thus, in-depth study of the interactions at the organic–inorganic interfaces provides a deeper understanding of the ligand–surface interface and should facilitate the future chemistry of stable-by-design nano-objects. 相似文献
100.