scholarly journals Research of polymeric additive influence of organic composition on thermochemical conversion of carbon masses

2008 ◽  
Vol 2 (1) ◽  
pp. 65-69
Author(s):  
Anatoliy Starovoit ◽  
◽  
Yevgen Maliy ◽  

Influence of polymeric addition is explored on properties of carbon the masses of itself calcinating electrodes in the process of their carbonation. It is exposed that polymeric addition intensifies co-operation of carbon filler with an electrode pitch – connective, that is high-quality represented on descriptions thermographic of laboratory masses. The mechanism of co-operation of components of carbon mass is formulated with a modifier.

2020 ◽  
Vol 2 (4) ◽  
pp. 12-17
Author(s):  
T. V. NAUMENKO ◽  

The concept of mass media has nothing to do with the masses or the amount of information being circu-lated. Mass information is information that circulates at the level of mass consciousness of society, which is a practical consciousness as opposed to a specialized consciousness. She is not only an important means of social adaptation to a mass audience in the environment of existence, but also a major catalyst of the global-ization processes, because the media contributes to the formation of such properties of the mass conscious-ness, as the versatility needed for high-quality formation and functioning of global social processes.


Author(s):  
Jürgen KERN ◽  
Priit TAMMEORG ◽  
Merrit SHANSKIY ◽  
Ruben SAKRABANI ◽  
Heike KNICKER ◽  
...  

Peat is used as a high quality substrate for growing media in horticulture. However, unsustainable peat extraction damages peatland ecosystems, which disappeared to a large extent in Central and South Europe. Furthermore, disturbed peatlands are becoming a source of greenhouse gases due to drainage and excavation. This study is the result of a workshop within the EU COST Action TD1107 (Biochar as option for sustainable resource management), held in Tartu (Estonia) in 2015. The view of stakeholders were consulted on new biochar-based growing media and to what extent peat may be replaced in growing media by new compounds like carbonaceous materials from thermochemical conversion. First positive results from laboratory and greenhouse experiments have been reported with biochar content in growing media ranging up to 50%. Various companies have already started to use biochar as an additive in their growing media formulations. Biochar might play a more important role in replacing peat in growing media, when biochar is available, meets the quality requirements, and their use is economically feasible.


2019 ◽  
Vol 488 (4) ◽  
pp. 4520-4525 ◽  
Author(s):  
K A Çokluk ◽  
D Koçak ◽  
T İçli ◽  
S Karaköse ◽  
S Üstündağ ◽  
...  

ABSTRACT We present observations and analysis of an RS CVn-type double-lined eclipsing binary system, RU Cnc. The system has been observed for over a century. High-quality long-cadence observations, newly obtained from the Kepler K2 C5 and C18 campaigns, and two radial velocity curves were combined and analysed simultaneously, assuming a multispot model. The masses, radii and luminosities of the component stars have been precisely obtained as $M_\textrm{c} = 1.386\pm 0.044\, \mathrm{M}_{\odot }$, $M_\textrm{h} = 1.437 \pm 0.046\, \mathrm{M}_{\odot }$, $R_\textrm{h} = 2.39\pm 0.07\, \mathrm{R}_{\odot }$, $R_\textrm{c} = 5.02 \pm 0.08\, \mathrm{R}_{\odot }$, $L_\textrm{h} = 11.4\pm 1.2\, \mathrm{L}_{\odot }$ and$L_\textrm{c} = 12.0 \pm 1.0\, \mathrm{L}_{\odot }$, with a separation of $a = 27.914 \pm 0.016\, \mathrm{R}_{\odot }$. The distance of the system is determined to be $380\pm 57\,$ pc, which is consistent with the Gaia Data Release 2 result. Long-term detailed period variation analysis of the system indicates a period decrease of 7.9 × 10−7 d yr–1. The results suggest that the cooler component is on the red giant branch (RGB) and the hotter component is still on the main sequence.


2018 ◽  
Vol 140 (4) ◽  
Author(s):  
Charley J. Sprenger ◽  
Lope G. Tabil ◽  
Majid Soleimani ◽  
Joy Agnew ◽  
Amie Harrison

Municipal solid waste (MSW) may be a suitable feedstock for thermochemical conversion. Current technologies process the MSW into refuse-derived fuel (RDF) fluff before conversion. Bench- and pilot-scale densification trials were conducted to determine the parameters required to produce a high quality feedstock from the MSW-RDF material in pellet form. The RDF was densified, as well as the biodegradable (paper and wood) fraction of the RDF stream to compare quality of pellets for the two material compositions. A single pelleting trial was conducted to examine the compaction parameters that would produce high quality pellets: sample material, grind size, moisture content, temperature, and pelleting pressure. It was determined that quality pellets, for both materials, were formed at a grind size of 6.35 mm at 16% moisture under pelleting conditions of 90 °C and 4000 N applied load. Pilot-scale pelleting was then completed to emulate industrial pelleting process utilizing the parameters from the single pelleting trials that were deemed to produce quality pellets. All of the samples produced durable pellets (88–94%), with the ash content around 20%. A techno-economic feasibility study determined that 6.35 mm diameter pellets could be produced for an average cost of $38/Mg, although the aggressive process of the size reduction required indicates that it may not be a technically feasible option.


2021 ◽  
Vol 4 (5) ◽  
pp. 217-234
Author(s):  
Mesud Šadinlija ◽  

The presence of regular Yugoslav military forces in central Podrinje and their participation in the aggression against Bosnia and Herzegovina have been evident from the very beginnings. As there were no significant forces of the Yugoslav People’s Army in Bosnian Podrinje, in the beginning of April 1992 the 336th Motorized brigade was dislocated from the area of Tuzla and it established its command post in Šekovići, thus becoming the bearer of battle activities and organization of the Army of the Serb Republic of Bosnia and Herzegovina in this region, including in its organic composition all Serb armed formations from Zvornik, Kalesija, Šekovići, Vlasenica, Milići, Bratunac and Skelani. In the attacks during which the Serb forces gained control over a broader area of Central Podrinje, and the Bosniak population, which constituted a pronounced majority of the overall population, was suppressed and reduced to three isolated enclaves on the territory of Cerska, Konjević Polje and Srebrenica, the function of leading and commanding these forces, as well as other regular and irregular units which were directed or acted from the territory of Serbia, was conducted by the Operative group “Drina”, a formation under the command of the Belgrade military zone, later the 1st Army of the Yugoslav Army. In the attacks on the remaining enclaves of Podrinje during the summer and autumn of 1992 the aviation of the Yugoslav Army was employed along with lighter jets of agricultural aviation, as well as artillery from the firing positions of the Yugoslav Army on the territory of Serbia. The contents of the Wance-Owen peace plan, according to which the greater part of the Bosnian Podrinje was supposed to be included into one of the provinces with a Bosniak ethnic majority, which would have spelt the end of the Serb national policy in Podrinje, represented an announcement of a large winter offensive of the Serbian forces. With a directive issued on 19 November 1992 the Drina corps of the Army of Republika Srpska was ordered to defend Višegrad, Zvornik and the corridor towards Serbia with its main forces, to deblock the communication on the line Milići – Konjević Polje – Zvornik, and to exhaust the enemy on the broader area of Podrinje, inflict upon him as much loss as possible, and force him to “leave the areas of Birač, Žepa and Goražde together with the Muslim population”. On the basis of this directive act, the planned offensive military activities of the Serb forces in Central Podrinje, initiated during November and finished with the agreement on the demilitarization of Srebrenica in April 1993, according to the documents of the Army of Republika Srpska, had three successive phases codenamed: “PROBOJ” (Breakthrough), “PESNICA” (Fist) and “UDAR” (Assault). Despite the significant engaged forces, the offensive “PROBOJ” did not go according to plan, and in the counterattacks during December the forces of the Army of the Republic of Bosnia and Herzegovina liberated a large number of settled places, and until 9 January 1993 gained control over Serb strongholds in the communication region of Bratunac – Kravica, and thus physically connected all parts of the liberated territory. Then a new offensive was launched, codenamed “PESNICA”, which, aside from the stabilization of the Serb defence of Bratunac, did not achieve its stated goals, while on the other side the forces of the Army of the Republic of Bosnia and Herzegovina arrived to the part of the state border with Serbia in the region of Skelani. In the final phase of the offensive, that bore the code name of “UDAR”, the Army of Yugoslavia directly joined the fighting in Central Podrinje on the territory of Bosnia and Herzegovina. From the direction of Bratunac towards Srebrenica the forces from the composition of OG “Drina” and parts of other units from the 1st Army of the Yugoslav Army were active, which established a command outpost in Ljubovija. In central Podrinje parts of the Special units corps of the Yugoslav Army also operated, and during the offensive they were stationed in the region of Skelani. From that side, from the direction of Skelani towards Srebrenica, the forces from the composition of the Užice corps of the 2nd Army of the Yugoslav Army were also active. When the forces of the Army of the Republic of Bosnia and Herzegovina were suppressed from the larger part of the territory and together with the masses of Bosniak civilians restricted to the broader town area of Srebrenica, the units of the Yugoslav Army could retreat to the territory of their state. The offensive was concluded with the signing of the agreement about the demilitarization of Srebrenica.


1966 ◽  
Vol 24 ◽  
pp. 51-52
Author(s):  
E. K. Kharadze ◽  
R. A. Bartaya

The unique 70-cm meniscus-type telescope of the Abastumani Astrophysical Observatory supplied with two objective prisms and the seeing conditions characteristic at Mount Kanobili (Abastumani) permit us to obtain stellar spectra of a high quality. No additional design to improve the “climate” immediately around the telescope itself is being applied. The dispersions and photographic magnitude limits are 160 and 660Å/mm, and 12–13, respectively. The short-wave end of spectra reaches 3500–3400Å.


Author(s):  
R. L. Lyles ◽  
S. J. Rothman ◽  
W. Jäger

Standard techniques of electropolishing silver and silver alloys for electron microscopy in most instances have relied on various CN recipes. These methods have been characteristically unsatisfactory due to difficulties in obtaining large electron transparent areas, reproducible results, adequate solution lifetimes, and contamination free sample surfaces. In addition, there are the inherent health hazards associated with the use of CN solutions. Various attempts to develop noncyanic methods of electropolishing specimens for electron microscopy have not been successful in that the specimen quality problems encountered with the CN solutions have also existed in the previously proposed non-cyanic methods.The technique we describe allows us to jet polish high quality silver and silver alloy microscope specimens with consistant reproducibility and without the use of CN salts.The solution is similar to that suggested by Myschoyaev et al. It consists, in order of mixing, 115ml glacial actic acid (CH3CO2H, specific wt 1.04 g/ml), 43ml sulphuric acid (H2SO4, specific wt. g/ml), 350 ml anhydrous methyl alcohol, and 77 g thiourea (NH2CSNH2).


Author(s):  
A. V. Crewe ◽  
J. Wall ◽  
L. M. Welter

A scanning microscope using a field emission source has been described elsewhere. This microscope has now been improved by replacing the single magnetic lens with a high quality lens of the type described by Ruska. This lens has a focal length of 1 mm and a spherical aberration coefficient of 0.5 mm. The final spot size, and therefore the microscope resolution, is limited by the aberration of this lens to about 6 Å.The lens has been constructed very carefully, maintaining a tolerance of + 1 μ on all critical surfaces. The gun is prealigned on the lens to form a compact unit. The only mechanical adjustments are those which control the specimen and the tip positions. The microscope can be used in two modes. With the lens off and the gun focused on the specimen, the resolution is 250 Å over an undistorted field of view of 2 mm. With the lens on,the resolution is 20 Å or better over a field of view of 40 microns. The magnification can be accurately varied by attenuating the raster current.


Author(s):  
L. Mulestagno ◽  
J.C. Holzer ◽  
P. Fraundorf

Due to the wealth of information, both analytical and structural that can be obtained from it TEM always has been a favorite tool for the analysis of process-induced defects in semiconductor wafers. The only major disadvantage has always been, that the volume under study in the TEM is relatively small, making it difficult to locate low density defects, and sample preparation is a somewhat lengthy procedure. This problem has been somewhat alleviated by the availability of efficient low angle milling.Using a PIPS® variable angle ion -mill, manufactured by Gatan, we have been consistently obtaining planar specimens with a high quality thin area in excess of 5 × 104 μm2 in about half an hour (milling time), which has made it possible to locate defects at lower densities, or, for defects of relatively high density, obtain information which is statistically more significant (table 1).


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