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101.
Rangel Ithamar Ribeiro Pereira Roberto Guimarães da Silva Alves Matheus Pinheiro Carliandro Vale 《Clean Technologies and Environmental Policy》2021,23(10):2895-2907
Clean Technologies and Environmental Policy - A comparison of the emissions of gasoline–ethanol fuel and compressed natural gas (CNG) fuel used in vehicles with spark ignition engine was... 相似文献
102.
Lothar Wondraczek Georg Pohnert Felix H. Schacher Angela Khler Michael Gottschaldt Ulrich S. Schubert Kirsten Küsel Axel A. Brakhage 《Advanced materials (Deerfield Beach, Fla.)》2019,31(24)
From the smallest ecological niche to global scale, communities of microbial life present a major factor in system regulation and stability. As long as laboratory studies remain restricted to single or few species assemblies, however, very little is known about the interaction patterns and exogenous factors controlling the dynamics of natural microbial communities. In combination with microfluidic technologies, progress in the manufacture of functional and stimuli‐responsive materials makes artificial microbial arenas accessible. As habitats for natural or multispecies synthetic consortia, they are expected to not only enable detailed investigations, but also the training and the directed evolution of microbial communities in states of balance and disturbance, or under the effects of modulated stimuli and spontaneous response triggers. Here, a perspective on how materials research will play an essential role in generating answers to the most pertinent questions of microbial engineering is presented, and the concept of adaptive microbial arenas and possibilities for their construction from particulate microniches to 3D habitats is introduced. Materials as active and tunable components at the interface of living and nonliving matter offer exciting opportunities in this field. Beyond forming the physical horizon for microbial cultivates, they will enable dedicated intervention, training, and observation of microbial consortia. 相似文献
103.
Juliana F. De Conto Marília R. Oliveira Matheus M. Oliveira Thadeu G. Brandão Kelvis V. Campos Cesar C. Santana 《Chemical Engineering Communications》2018,205(4):533-537
Industry and academia have shown great interest in the synthesis of organic–inorganic hybrid material because the modification of inorganic supports with organic groups increases the options for using these materials. Microwave irradiation as a heat source is an alternative tool compared with conventional heating (oil bath or furnace) to reduce the reaction times during the synthesis of these materials. Thus, the purpose of this work was to synthesize an organic–inorganic hybrid material, more specifically silica nanoparticles modified with 3-chloropropyl-trimethoxysilane, using microwave irradiation as the heat source. The hybrid materials were synthesized using the sol–gel method, with microwave irradiation for 10, 25, and 40?min, at 300?W of power and temperature of 40, 60, and 80°C. Elemental analyses, FTIR, and N2 adsorption–desorption isotherms were developed to characterize the materials. It can be concluded that when microwave irradiation is used as a heat source, the reaction rate is accelerated and the surface area of hybrid materials increases considerably. 相似文献
104.
Effect of nanocellulose fibers and acetylated nanocellulose fibers on properties of poly(ethylene‐co‐vinyl acetate) foams 下载免费PDF全文
Matheus Vinícius Gregory Zimmermann Michelle Paola da Silva Ademir José Zattera Ruth Marlene Campomanes Santana 《应用聚合物科学杂志》2017,134(17)
Cellulose nanofibers are promising materials in the development of polymeric foams, because they act as heterogeneous nucleation sites for the growth of cells during foaming. In this research, we studied the incorporation of cellulose nanoparticles in poly(ethylene‐co‐vinyl acetate)‐EVA foams. The foams were produced with different fiber contents. We observed the effect of a chemical treatment by acetylation on the cellulose fibber, that is, we evaluated the use of hydrophilic and hydrophobic cellulose nanofibers in EVA foams. The main results indicate that with the addition of only 1% of cellulose nanofibers, cell density significantly reduces when compared with the pure EVA foams. On the other hand, by increasing the cellulose content, the agglomeration of nanofibers also increases, which results in heterogeneous cell sizes. The same phenomenon was observed in the foams produced with acetylated cellulose nanofibers, regardless of the fiber content used. © 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017 , 134, 44760. 相似文献
105.
Patrícia de Macedo Sales Lêda Christiane de Figueirêdo Lopes Lucena Thalita Maria R. Porto Jeovanesa R. Carvalho Matheus Costa Lopes 《Petroleum Science and Technology》2016,34(17-18):1574-1580
There is a growing concern with the environmental damage caused by the various types of industrial activities. Because of that, research in paving has sought alternatives to reduce fuel consumption and emissions of greenhouse gases generated by those. The warm mixtures have received increasing attention because they are capable of decreasing the mixture and compaction temperatures of asphalt mixtures. The objective of this study was to evaluate the effect of the incorporation of CCBit from the mechanical characterization of asphalt mixtures. From the results, it was found that the incorporation of CCBit has the advantage of reducing mixing and compaction temperatures without harming their mechanical behavior. 相似文献
106.
107.
Leila M. Guimarães Aguiar Rogério Matheus Vargas 《Journal of the American Oil Chemists' Society》1998,75(6):755-756
Glycerolysis of methyl stearate and tristearin has been carried out in the presence of alkylguanidines—strong nonionic bases—as
catalysts. When applied at 10 mol%, 1,5,7-triazabicyclo [4.4.0]dec-5-ene, 1,2,3-tricyclohexylguanidine, and 1,3-dicyclohexyl-2-n-octylguanidine give monoglycerides in more than 90% selectivity, in a maximum of 6 h reaction time. 相似文献
108.
Phosphorus lost in runoff from agricultural land leads to the enrichment of surface waters and contributes to algal blooms. Fertilisers are one source of this P. To compare the water available P of different fertiliser formulations in the laboratory it is necessary to control environmental conditions, temperature, relative humidity and soil water content, prior to simulating rainfall. Two chambers were designed in which relative humidity and soil water content were controlled using salt solutions. An initial design comprising a sealed chamber with three layers of soil samples over a salt bath was found to be inferior to a single layer design. The changes in water content of soil samples were used to test the single layer chamber in a constant temperature environment (15 °C) using a saturated KCl solution (90% relative humidity). Based on the final soil water content of the samples, the spatial variation within the chamber was within tolerable limits. The single layer chamber was used for a simulation experiment comparing the water available P of two commercial fertilisers. Using a saturated resorcinol solution (95% relative humidity) soil samples were equilibrated at 15 °C for 21 days, fertiliser added, and the water available P measured up to 600 h after fertiliser application. The results indicate that the amount of water available P was related to the fertiliser compound and exponentially related to the time since fertiliser application. It was concluded that the single layer chamber is suitable for controlling relative humidity and soil water content in trials such as these where the water available P of fertilisers are being compared. 相似文献
109.
Gabriel Rugalema Giulia Muir Kirsten Mathieson Emily Measures Friderike Oehler Libor Stloukal 《Food Security》2009,1(4):441-455
This paper examines local farmers’ perspectives about emerging and re-emerging infectious diseases (EIDs) of humans, crops
and livestock and their impact on household food security in the Tanzania-Uganda interface ecosystem to the west of Lake Victoria.
While it is increasingly accepted that such an approach could yield vital information not only regarding the extent of the
impact of EIDs but also on practical strategies for their control, recent studies have examined only a narrow part of the
disease-food security spectrum, often lacking a clear analysis of how local people conceptualise the co-occurrence, interactions
and impact on food security of multiple plant, animal and human disease afflictions. Findings of the present study reveal
that farmers perceive diseases as products of wider social, economic, environmental and institutional realities. They employ
a wide range of names to describe disease problems and often such labels have nothing in common with the binomial nomenclature
used in scientific taxonomy. Frequently, local people’s perceptions of severity of the impact of disease on food security
are at variance with views held by experts. Consequently, disease control measures and strategies advocated by experts and
policy makers are often not adhered to. This paper reveals that local or emic perspectives on diseases not only convey the
sense of how local people feel and think about a particular disease but also how such knowledge shapes their response effort.
Finally, the paper argues for a strategy to harness and incorporate aspects of local perspectives and practices into formal
disease control programmes. 相似文献
110.
Crystals growing in confined spaces can generate stress and are a major cause of damage in porous materials. To investigate such deleterious processes, appropriate in situ techniques are required. This paper describes the use of X-ray diffractometry under controlled conditions of temperature and relative humidity (RH-XRD) for the direct observation of phase transition reactions in a porous substrate. An improved environmental chamber without temperature gradients is presented and applied to the investigation of phase transformations in the system Na2SO4 + H2O. This salt is generally considered as particularly damaging and frequently used in accelerated weathering tests. It is demonstrated that RH-XRD can be successfully applied for the direct observation of several relevant phase transitions in glass frits used as porous substrates. The conversion of Na2SO4(III) to Na2SO4(V) and the hydration of Na2SO4(V) both proceed fairly rapidly as true solid-state reactions without deliquescence of the educt phases. In contrast, crystallization from solution is kinetically hindered as there is a strong tendency of aqueous Na2SO4 to form supersaturated solutions also in narrow pores. The important implications of this behavior of the salt are also briefly discussed in the paper. 相似文献