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Journal of Coal Chemistry最新文献

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THE PERSPECTIVE FOR EXPANSION OF THE SALES OF THE ELECTRODE PITCH AT PJSC “ZAPOROZHСOKЕ” PJSC“zaporozhСokЕ”电极间距销售拓展展望
Pub Date : 2019-01-01 DOI: 10.31081/1681-309x-2019-0-1-38-43
A. Bekhter
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引用次数: 0
The study of the chemical coal composition of a number of mines as well as coal-preparation plants of Ukraine and the prospects for the disposal of coal dumps 对乌克兰若干煤矿和选煤厂的化学煤组成进行了研究,并对弃置煤堆的处理前景进行了展望
Pub Date : 2018-10-01 DOI: 10.31081/1681-309X-2018-0-5-16-24
A. Kasimov
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引用次数: 0
The study of the influence of individual technological factors on the results of the process of thermo-oxidative treatment of medium-temperature pitch 研究了各工艺因素对中温沥青热氧化处理效果的影响
Pub Date : 2018-10-01 DOI: 10.31081/1681-309x-2018-0-5-8-15
F. Cheshko, V. Shustikov, G. G. Kleshnya, N. Skripchenko
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引用次数: 0
The interasin raw material base of coke-chemical production of Ukraine: Problems of charge formation, its preparation and coking 乌克兰焦化生产中间层原料基地:电荷形成、制备和焦化问题
Pub Date : 2018-10-01 DOI: 10.31081/1681-309X-2018-0-5-3-7
E. S. Popov, V. I. Gavrilyuk, N. V. Mukina, E. T. Kovalev, I. Drozdnik, N. B. Bidolenko
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引用次数: 2
Graphene structures from coal and coke. Report 2. 石墨烯结构来自煤和焦炭。报告2。
Pub Date : 2018-10-01 DOI: 10.31081/1681-309X-2018-0-6-22-26
V. Shmalko, O. Zelensky
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引用次数: 0
Waste and emissions of Ukrainian power plants working on solid fuels 使用固体燃料的乌克兰发电厂的废物和排放物
Pub Date : 2018-10-01 DOI: 10.31081/1681-309x-2018-0-6-12-21
I. Udalov, A. Kasimov
{"title":"Waste and emissions of Ukrainian power plants working on solid fuels","authors":"I. Udalov, A. Kasimov","doi":"10.31081/1681-309x-2018-0-6-12-21","DOIUrl":"https://doi.org/10.31081/1681-309x-2018-0-6-12-21","url":null,"abstract":"","PeriodicalId":296617,"journal":{"name":"Journal of Coal Chemistry","volume":"9 1","pages":"0"},"PeriodicalIF":0.0,"publicationDate":"2018-10-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":null,"resultStr":null,"platform":"Semanticscholar","paperid":"121771386","PeriodicalName":null,"FirstCategoryId":null,"ListUrlMain":null,"RegionNum":0,"RegionCategory":"","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":"","EPubDate":null,"PubModel":null,"JCR":null,"JCRName":null,"Score":null,"Total":0}
引用次数: 0
The possibility of determining the density of chemical products of coking using a U-shaped oscillatory tube (the vibration method) 用u形振荡管(振动法)测定焦化化学产品密度的可能性
Pub Date : 2018-10-01 DOI: 10.31081/1681-309X-2018-0-6-7-12
A. Borisenko, A. Martynova, N. Golik, A. Y. Romashina
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引用次数: 0
3D model of a coke dry cooling plant 焦炭干式冷却装置的三维模型
Pub Date : 2018-10-01 DOI: 10.31081/1681-309X-2018-0-6-3-7
A. Fidchunov, S. Stelmachenko, S. G. Pozhar, R. Kryuk, A. Kovalov
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引用次数: 0
Technology production of the basic component of plastic lubricant 技术生产塑料润滑剂的基本成分
Pub Date : 2018-10-01 DOI: 10.31081/1681-309x-2018-0-5-25-29
A. Grigorov
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引用次数: 0
The moisture consumption during preparation of coals for coking. 焦化煤制备过程中的水分消耗。
Pub Date : 1900-01-01 DOI: 10.31081/1681-309x-2022-0-2-4-12
Meshchanin V. I., M. D. V.
The paper presents the results of research for determination of the change in moisture content in coal concentrates during the process of their transportation from the tipper to the top of the silos of the coal preparation department at different environment air temperatures, namely in April (+4.0 ° C) and August (+23.5 ° C) at one of the coke-chemical enterprises of Ukraine. Eight coal concentrates of different degrees of metamorphism were selected for the study: Shchedrukhinskaya CEP, brend "G", Uskovskaya mine, brend "G"; Carter Roag, brend "Zh", Toms Creek, brend "Zh", EP "St. Barbarian", brend "K", Goonyella, brend "K", EP "Berezovskaya", brend "K", mine "Bachatsky", brend "K". The loss of moisture in coal concentrates during their transportation significantly depends on the ambient temperature: the higher the temperature, the more moisture is lost, and vice versa. It was established that unloading and transportation of coal from closed silo is accompanied by loss of ~ 0.9 % of moisture at an environment air temperature of 23.5 ºC and ~ 0.2 % at a temperature of +4 °C. The change in the working moisture of the charge in the process of its transportation and crushing has been determined In April, June and August. The research was performed as follows: the conveyor supplying coal concentrates from closed coal silos for crushing has been stopped, and then, taking into account the value of the loading on the belt, the average dynamic value of humidity of the whole coal charge has been calculated. At the same time, the conveyor after the crusher and the conveyor in front of the coal tower have been stopped and coal samples (weighing 80–100 kg) have been taken from the conveyor belt section length of 1 meter across its entire width. When crushing and transporting the coal charge to the coal tower of the coke oven battery, the change in its actual weight was ~ 0.1 % at an environment air temperature of +4 o C and 0.7 % at an environment air temperature of + 23.5 ÷ 25.5 ºC. The practical use of the obtained results makes it possible to save coke oven gas for heating coke ovens due to the reduction of the working humidity of the charge. For the production of 1 million tons of gross coke, this savings will amount to 3.84 million m3 of gas, or about UAH 59.8 million. Keywords: coal, preparation scheme, crushing, moisture, economic calculation.. Corresponding author D. V. Miroshnichenko, e-mail: dvmir79@gmail.com
本文介绍了在乌克兰某焦化企业4月(+4.0°C)和8月(+23.5°C)不同环境气温下,测定煤精矿从自卸车运输到选煤厂筒仓顶部过程中水分含量变化的研究结果。选取8个不同变质程度的煤精矿进行研究:Shchedrukhinskaya CEP, brend“G”,Uskovskaya mine, brend“G”;Carter Roag, brend "Zh", Toms Creek, brend "Zh", EP "St. Barbarian", brend "K", Goonyella, brend "K", EP "Berezovskaya", brend "K", mine "Bachatsky", brend "K"。煤精矿在运输过程中的水分损失很大程度上取决于环境温度:温度越高,水分损失越多,反之亦然。结果表明,在23.5℃的环境空气温度下,煤从密闭仓中卸载和运输会损失~ 0.9%的水分,在+4℃的环境空气温度下损失~ 0.2%的水分。在4月、6月和8月测定了物料在运输和破碎过程中工作水分的变化。研究工作如下:停止供煤精矿从密闭的煤仓进行破碎的输送机,然后考虑输送带上的负荷值,计算出整个煤料的平均动态湿度值。同时,停止破碎机后的输送机和煤塔前的输送机,从整个宽度为1米的输送带段取煤样(重80-100公斤)。煤料破碎输送至焦炉蓄电池煤塔时,在环境气温为+4℃时,其实际重量变化量为~ 0.1%,在环境气温为+ 23.5℃~ 25.5℃时,其实际重量变化量为0.7%。所得结果的实际应用,由于炉料的工作湿度降低,可以节省焦炉煤气用于加热焦炉。以生产100万吨焦炭为例,这将节省384万立方米的天然气,约合5980万澳元。关键词:煤,选煤方案,破碎,水分,经济计算通讯作者d.v. Miroshnichenko, e-mail: dvmir79@gmail.com
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引用次数: 0
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Journal of Coal Chemistry
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