Marine biological resources: An advanced raw material base for biofuel

2011 ◽  
Vol 3 (1) ◽  
pp. 57-61 ◽  
Author(s):  
V. A. Galynkin ◽  
A. V. Garabadzhiu ◽  
A. H. Enikeev ◽  
M. M. Karasev ◽  
G. V. Kozlov
Fisheries ◽  
2021 ◽  
Vol 2021 (4) ◽  
pp. 33-37
Author(s):  
Svetlana Vladimirovna Lisienko

The modern tasks of fishing, as a process of carrying out fishing activities to achieve effective and rational use of biological resources in solving the problems of food security of the country, are complex in nature. The study of modern fishing and fishery systems and processes requires a new object-oriented framework for their formation and functioning. Such an unconditional advantage is possessed by the methodology of the systems approach, which makes it possible to classify and design newly created systems of the highest level, to study and establish their system characteristics, connections and requirements for subsequent modeling, to investigate intersystem connections and their interaction. Fishing activity in the fishing zone is formed by the systemic interaction of the raw material base of fishing, technical means for the extraction of aquatic biological resources, fishing technology, creating a new biotechnological system "fishing" with new qualifications in structure and content. The main stages of research and design were the process of identifying production processes of extraction carried out in the fishing zone with the designation of boundaries, composition of elements, establishing links with the environment, correlated with the aim of improving the quality of fishing; the process of the formation of the compositional structure and functions of the system - the production area, the properties of its elements that affect the system efficiency. System design of a biotechnological system - a fishing zone was carried out in stages with the designation of the composition of its classes (components) and sets of objects that formed the component composition of the system under study with an embedded fishing process, and the establishment of structural and functional dependencies and relationships. The designed model of the system is interconnected with its component composition through the imposition of three components established between the corresponding objects and sets: biological, technical and technological, as well as the establishment of inter-component structural and functional dependence and communication, linking all three components of the system with each other into a single mechanism and giving the entire system integrity in achieving a single goal.


2018 ◽  
Vol 5 (6) ◽  
pp. 3-7 ◽  
Author(s):  
E.S. Popov ◽  
V.I. Gavrilyuk ◽  
N.V. Mukina ◽  
E.T. Kovalev ◽  
I.D. Drozdnik ◽  
...  

Mining Revue ◽  
2021 ◽  
Vol 27 (3) ◽  
pp. 40-44
Author(s):  
Eugen Traistă ◽  
Camelia Bădulescu ◽  
Maria Lazăr ◽  
Camelia Traistă

Abstract Metallurgical slag is one of the most common industrial wastes. Many of these wastes are not stable over time, by reacting with water and air, continuously generating emissions of heavy metals. Metallurgical slag processing is necessary for at least two reasons: reducing pollutant emissions and broadening the raw material base. The recovery of these slags is very difficult because they are the result of metallurgical processes that aimed to fix metals considered impurities in chemical matrices as stable as possible. This paper presents the initial research on the behavior of metallurgical slags against different leaching technologies.


Author(s):  
I. F. Iskakov ◽  
G. A. Kunitsyn ◽  
D. V. Lazarev ◽  
А. А. Red`kin ◽  
S. A. Trubitsyn ◽  
...  

To use effectively internal raw material base, JSC “Ural Steel” accomplished I category major overhaul of the blast furnace No. 2. The main purpose of the overhaul was to design a rational profile which could ensure an ability to operate with a charge containing 95 % of Mikhailovskii GOK (mining and concentrating plant) pellets having basicity of 0.5 by CaO/SiO2. The blast furnace No. 2 having useful volume of 1232 m3, was constructed by design of Danieli Corus, the Netherlands, and was blown in on December 30, 2020. In the process of guarantee tests, step-by-step increase of Mikhailovskii GOK pellets (Fetotal = 60.5 %, CaO/SiO2 = 0.5) content in the charge iron ore part was being accomplished from 55 to 95.1%. Charging of the blend containing pellets in the amount of 55% of iron ore part, was done by charging system 4OOCC + 1COOCC (Ore - Coke) with filling level 1.5 m. Under conditions of pellets part increase in the blend, the charging system was changed to decrease their content at the periphery, to increase it in the ore ridge zone and make it intermediate between periphery and the ore ridge. At the pellets share in the iron ore raw materials 0.75 the charging system was used as the following: 3OOCC + 1COOC + 1COOCC, while at the content 95.1% the following charging system was used: 2COOC + 2COOC + 1COOCC. It was noted that in the period of guarantee tests the furnace running was smooth. The average silicon content in the hot metal was 0.70% at the standard deviation 0.666. Sulfur content in the hot metal did not exceed 0.024%, the blowing and natural gas consumption figures were 2100 m3/min and 11000 m3/min correspondently, oxygen content in the blowing 26.5%, hot blowing and top smoke pressure figures were 226.5 and 109.8 KPa correspondently. The productivity of the furnace was reached as high as 2358 t/day at the specific coke rate 433 kg/t of hot metal. After guarantee tests completion, the pellets content in the iron ore part was decreased gradually from 95 down to 50%. The decreasing was made by 5% in every 6 hours of operation. Application of the mastered technology of the blast furnace No. 2 with the increased share of pellets will enable to stably supply the blast furnaces No. 1, 3 and 4 by iron ore raw materials in the proportion of 30-35% of pellets and 65-70% of sinter.


2021 ◽  
Vol 1022 ◽  
pp. 80-86
Author(s):  
Mikhail G. Kholodnyak ◽  
Sergey A. Stelmakh ◽  
Evgeniy M. Shcherban ◽  
Mukhuma P. Nazhuev

The paper considers the current state of the mineral raw material base and the construction material market of the Rostov Region. The effect of various factors on the strain-stress behavior of local limestones has been investigated. The scientific and technical literary sources devoted to the processes of rock failure under various loads have been analyzed. The experimental studies have shown that the tested samples of limestone with a high content of cuboidal grains have characteristics comparable to those of the crushed granite stone. It has been concluded that the use of the Rostov Region limestones in the construction industry is competitive and feasible, provided the proper implementation of the engineering measures proposed in their production.


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