![]() Method of separating rock and rock-containing coal products in coal mining
专利摘要:
The invention relates to a process for separating rock refuse of coal mining and products of coal deposits with rock intercalation, the coal contents of which being advantageously less, than 50%, into parts being rich and poor in coal, respectively, in a given case in a pure refuse parts by using the heavy-media process. In sense of the invention the raw material mentioned above is crushed according to necessity to the grain size of 0 to 50 mm and/or graded. Hereinafter from the raw material and from the weighting material partly being present in the raw material in a quantity of at least 7 weight-%, advantageously 10 weight-%, in a grain size of 0-0.5 mm, partly recycled from the process, a mixture of sludge is prepared in the presence of a liquid phase, while the density of the sludge mixture is adjusted in accordance with the extent of separation. The sludge mixture is allowed to pass through one or more hydrocyclones and equipments separating according to grainsize and/or grading equipments. The density of a part or of the entirety of the streaming suspension is adjusted in accordance with the required density of the sludge mixture, and the suspension in a density thus adjusted is recycled to the sludge production. The product resulting from separation and the suspension not having been recycled are discharged from the system. In case of necessity the process is partly or entirely automatically controlled. 公开号:SU1364227A3 申请号:SU802900906 申请日:1980-03-28 公开日:1987-12-30 发明作者:Кулчар Дьюла;Шолимош Андраш 申请人:Татабаньаи Сенбаньак (Инопредприятие); IPC主号:
专利说明:
The invention relates to the enrichment of coal, in particular rock-containing coal products in coal mining, using a separation process in a heavy suspension. The purpose of the invention is to simplify and reduce the cost of the process when separating products containing up to 50% coal. The drawing shows a device for carrying out the proposed method. The raw material after-sorting and grinding together with water (not shown), and later in an uninterrupted process, using a suspension like 1) in the tank 7 through the pump 8 to the thickening hydrocyclone 9. With. the more and less dense suspension obtained in a hydrocyclone can, if necessary, adjust the density of the suspension in container 6 by mixing it with the denser parts of the suspension, which are sub-sieve products of flat and resonant sieves. 20 25 35 In order to realize the optimal return and use of components, the process is carried out with the help of automation, which, in addition to among other things, the presence and dosage of the reinforcing material required for the method.
权利要求:
Claims (2) [1] 1. A method for separating rock and rock-containing coal products in 40 coal mining, including sorting and grinding the raw material, mixing the latter with a heavy suspension, dividing the resulting suspension into rich and poor coal 50 particles with a particle size of 0.05-0.5 mm, mixing its more dense parts and feeding the resulting mixture to the starting material, characterized in that, in order to simplify and cheapen the process during the separation of products, heavy container 6, resulting in a mixture with a density of 1.07-1.09 kg / dm. When feeding this mixture into the tank 1 to the starting material, from - mined to a particle size of not more than 50 mm and containing 7-10 wt.% Of particles with a size of 0.05-0.5 mm, the density of the resulting suspension is adjusted to 1, T86 1, 30 kg / dmz, After a lower density of the resonant sieve 5.1 is washed out on the lower sector, a lower density of the suspension is drawn (in the drawing along the dashed line) into the tank 7 through the pump 8 to the thickening hydrocyclone 9. Using the more dense and less dense suspension obtained in the hydrocyclone suspensions in container 6 by mixing them with more dense parts of the suspensions, which are mis-undersize products of flat and resonant sieves. A discontinuous suspension stream measures and monitors all desired parameters. In order to realize the optimal return and use of components, the process is carried out with the help of automation, which, in addition to A discontinuous suspension stream measures and monitors all desired parameters. among other things, the presence and dosage of the reinforcing material required for the method. Invention Formula The fractions, separation from the latter by dehydration and leaching of correspondingly more and less dense parts of the suspension, containing solids often containing up to 50% coal, add less dense parts of the suspension to the mixed more dense parts, bringing the density of the mixture obtained. si up to 1.07-1.09 kg / dm, and when served 5 Fractions, separation from the latter by dehydration and leaching of correspondingly more and less dense parts of the suspension, containing solid particles containing up to 50% coal, add a less dense part of the suspension to the mixed more dense parts, bringing the density obtained mixtures up to 1.07-1.09 kg / dm, and when feeding 1. The method of separation of rock and coal-containing coal products in coal mining, including sorting and grinding the source material, mixing the latter with a heavy suspension, dividing the resulting suspension into rich and poor coal. 5 Fractions, separation from the latter by dehydration and leaching of correspondingly more and less dense parts of the suspension, containing solid particles containing up to 50% coal, add a less dense part of the suspension to the mixed more dense parts, bringing the density obtained mixtures up to 1.07-1.09 kg / dm, and when feeding 0 particles with a particle size of 0.05-0.5 mm, mixing its more dense parts and feeding the resulting mixture to the starting material, characterized in that, in order to simplify and cheapen the process during the separation of products, 1364227 the latter to the initial material, which is fine to a particle size of not more than 50 mm and containing 7-10 wt.% of particles with a size of 0.05-0.5 mm, density the resulting slurry is adjusted to 1.186-1.30 kg / dm. p l [2] 2. A method according to claim 1, characterized in that the suspension obtained after washing out of a lower density is mixed in a centrifugal field before mixing it with the denser parts.
类似技术:
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同族专利:
公开号 | 公开日 NL183126C|1988-08-01| DE3013971A1|1980-10-30| HU179603B|1982-11-29| GB2046630A|1980-11-19| FR2453674A1|1980-11-07| BE882600A|1980-07-31| NL183126B|1988-03-01| US4838433A|1989-06-13| CS266306B2|1989-12-13| DE3013971C2|1989-12-28| GB2046630B|1983-01-12| NL8002118A|1980-10-14| FR2453674B1|1983-07-01| AU533605B2|1983-12-01| BR8002241A|1980-12-02| CS210880A2|1989-04-14| CA1113430A|1981-12-01| TR20989A|1983-03-25| AU5646680A|1980-10-16| ZA801841B|1981-03-25|
引用文献:
公开号 | 申请日 | 公开日 | 申请人 | 专利标题 US2497790A|1943-11-09|1950-02-14|Valenciennoise De Gestion Soc|Sink and float process for the separation of coal from its impurities| FR943292A|1946-03-14|1949-03-03|Directie Staatsmijnen Nl|Process and device for the enrichment of minerals| BE481095A|1947-03-14| DE802690C|1948-04-20|1951-02-19|Stamicarbon|Processing of minerals by means of sword bees and using cyclone separators| GB666801A|1948-08-20|1952-02-20|Stamicarbon|Process for the separation of mixtures of solid materials of different specific gravity and different grain size| US2693878A|1951-10-30|1954-11-09|Stamicarbon|Method of producing a separating suspension| US3031074A|1952-08-30|1962-04-24|Osawa Hirosaburo|Process for cleaning coal by dense medium| US2754963A|1954-03-02|1956-07-17|Stamicarbon|Coal washing process| US2889925A|1955-10-14|1959-06-09|Stamicarbon|Process and apparatus for treating suspensions| US3037630A|1959-01-26|1962-06-05|Wallace E Bixby|Screen| US3235072A|1961-01-05|1966-02-15|Industrial Nucleonics Corp|Control method and apparatus for heavy media separation process| DE1183171B|1962-09-18|1964-12-10|Vnii Shelesnodoroshnogo Transp|Device for the protection of semiconductor rectifier systems| NL150350B|1963-10-08|1976-08-16|Takeshi Horiuchi|HYDROCYCLONE.| US3794162A|1972-03-06|1974-02-26|Bethlehem Steel Corp|Heavy medium beneficiating process| US3926787A|1973-03-02|1975-12-16|C G Process Coal Company|Method and apparatus for reducing sulphur and ash content of coal| US3887456A|1973-10-01|1975-06-03|James W Loughner|Classifier with rifflers and variable throat| US4028228A|1976-02-02|1977-06-07|Heyl & Patterson, Inc.|Process and apparatus for cleaning very fine ore| HU179603B|1979-04-11|1982-11-29|Tatabanyai Szenbanyak|Method for heavy-media separating coal industrial dead materials and coal produces containing deads| US4364822A|1981-04-13|1982-12-21|Rich Jr John W|Autogenous heavy medium process and apparatus for separating coal from refuse|HU179603B|1979-04-11|1982-11-29|Tatabanyai Szenbanyak|Method for heavy-media separating coal industrial dead materials and coal produces containing deads| US4364822A|1981-04-13|1982-12-21|Rich Jr John W|Autogenous heavy medium process and apparatus for separating coal from refuse| US4529506A|1983-08-08|1985-07-16|Amax Inc.|Method for cleaning fine coal| FR2585265B1|1985-07-26|1987-10-23|Gagneraud Pere Fils Entreprise|PROCESS FOR THE RECOVERY OF VALUABLE FINE PARTICLES CONTAINED IN MINING GARBAGE| US6885470B1|1995-03-06|2005-04-26|Matsushita Electric Industrial Co., Ltd.|Electronic mail system| AUPO520597A0|1997-02-21|1997-04-11|Earth Systems Pty. Ltd.|Space filling methods| CN101837320B|2010-04-09|2013-04-03|芬雷选煤工程技术有限公司|Heavy medium coal preparation control equipment, density control system thereof and density control method| CN103252286B|2013-03-22|2015-05-13|滨海金地矿业工程技术有限公司|Method for using dense medium to sort coal-series kaolinite rocks in gangues|
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申请号 | 申请日 | 专利标题 HU79TA1516A|HU179603B|1979-04-11|1979-04-11|Method for heavy-media separating coal industrial dead materials and coal produces containing deads| 相关专利
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