CN109482339B - It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite - Google Patents

It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite Download PDF

Info

Publication number
CN109482339B
CN109482339B CN201811589278.1A CN201811589278A CN109482339B CN 109482339 B CN109482339 B CN 109482339B CN 201811589278 A CN201811589278 A CN 201811589278A CN 109482339 B CN109482339 B CN 109482339B
Authority
CN
China
Prior art keywords
monazite
obtains
ore
uhligite
rare earth
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201811589278.1A
Other languages
Chinese (zh)
Other versions
CN109482339A (en
Inventor
钟金根
董文
阎镇
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Fujian Wensheng Mining Co ltd
Original Assignee
Hainan Haituo Mining Co Ltd
Hainan Wensheng New Material Science & Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Hainan Haituo Mining Co Ltd, Hainan Wensheng New Material Science & Technology Co Ltd filed Critical Hainan Haituo Mining Co Ltd
Priority to CN201811589278.1A priority Critical patent/CN109482339B/en
Publication of CN109482339A publication Critical patent/CN109482339A/en
Application granted granted Critical
Publication of CN109482339B publication Critical patent/CN109482339B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B03SEPARATION OF SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS; MAGNETIC OR ELECTROSTATIC SEPARATION OF SOLID MATERIALS FROM SOLID MATERIALS OR FLUIDS; SEPARATION BY HIGH-VOLTAGE ELECTRIC FIELDS
    • B03BSEPARATING SOLID MATERIALS USING LIQUIDS OR USING PNEUMATIC TABLES OR JIGS
    • B03B7/00Combinations of wet processes or apparatus with other processes or apparatus, e.g. for dressing ores or garbage

Landscapes

  • Manufacture And Refinement Of Metals (AREA)

Abstract

The present invention provides a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, comprising the following steps: the uhligite raw material containing monazite is carried out magnetic separation in 1500-3000Gs, obtains the ilmenite containing rare earth and the material A containing monazite;Material A is subjected to magnetic separation in 9000-11000Gs, pulp density 45-55% obtains material B and hair rare earth containing monazite;Ilmenite containing rare earth is sorted through spiral chute, obtains titanium ore and hair rare earth;It by the material B containing monazite through gravity separation, removes after tailings through electric separation, obtains rutile and the material C containing monazite, material C obtains zircon sand and material D containing monazite through 10000-15000Gs high intensity magnetic separation;The hair rare earth that step S2 is obtained is sorted through spiral chute, obtains the material E containing monazite;Material D, material E are subjected to flotation, slot bottom mine is gone, obtains monazite concentrate.The present invention has sufficiently looked after the sorting and purification of monazite, can not only obtain monazite concentrate best in quality, the rate of recovery can reach 99% or more in the premise for guaranteeing that uhligite effectively recycles.

Description

It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite
Technical field
It is the present invention relates to Rare Earth Mine technical field, in particular to a kind of using uhligite as the dresser of raw materials recovery monazite Skill.
Background technique
Rare Earth Mine is mineral precious in the world today, has extremely important value.Monazite is the main mine of Rare Earth Mine One of object.In the beach placer of titanium containing zirconium all over the world, most mengite rare-earth mines all containing a small amount of (2%-5%). This monazite typically contains ytterbium abundant (Yb), neodymium (Nd), dysprosium (Dy), terbium (Tb) contour value element, be as much as possible All recycling.In the dressing plant Gao Tai all over the world, concern is primarily with the sorting and purification of zircon sand, ilmenite, rutile, Monazite is not treated as core mineral, most of monazite is caused to be dispersed in various products or tailings, causes to damage It loses, the rate of recovery only has 60%-70%.The country relies primarily on magnetic separation at present, only increases by one of magnetic separation in the electric separation link of zirconium English Operation recycling is solitary, so that the monazite rate of recovery also only has 70%, heavy losses precious resources, and while to environment there are also severe It influences.Therefore it is badly in need of a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, solution above-mentioned technical problem.
Summary of the invention
Mirror with this, the present invention propose it is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, guarantee uhligite The premise effectively recycled has sufficiently looked after the sorting and purification of monazite, can not only obtain monazite concentrate best in quality, returns Yield can reach 97% or more.
The technical scheme of the present invention is realized as follows:
It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, comprising the following steps:
S1, the uhligite raw material containing monazite is subjected to magnetic separation in 1500-3000Gs, obtains the ilmenite containing rare earth and contained only Occupy the material A of stone;
S2, material A is subjected to magnetic separation in 9000-11000Gs, pulp density 45-55% obtains the material B containing monazite With hair rare earth;Ilmenite containing rare earth is sorted through spiral chute, obtains titanium ore and hair rare earth;
S3, by material B through gravity separation, remove after tailings through electric separation, obtain rutile and the material C containing monazite, material C Zircon sand and material D containing monazite are obtained through 10000-15000Gs high intensity magnetic separation;The hair rare earth that step S2 is obtained is through spiral chute Sorting, obtains the material E containing monazite;
S4, material D, material E are subjected to flotation, go slot bottom mine, obtains monazite concentrate.
Preferably, in S1 step, the field strength of the magnetic separation is 2000-2500Gs.
Preferably, in S2, S3 step, the ore pulp mass concentration of the spiral chute sorting is 30~40%, flow 0.8 ~1.2 tons/h.
Preferably, in S3 step, the equipment of the gravity separation is shaking-table gravity concentrator.
Preferably, in S3 step, the classifying screen aperture size of the electric separation is 0.14~0.16mm.
Preferably, in S4 step, the ore pulp mass concentration of the flotation is 40%~80%, 25~35min of mixing time.
Compared with prior art, the beneficial effects of the present invention are:
Ore-dressing technique of the invention is combined for the uhligite for containing micro (2%-5%) monazite using high-gradient magnetic separation Gravity separation and flotation recycle association Rare Earth Mine.In the premise for guaranteeing that uhligite effectively recycles, sufficiently look after solitary The sorting and purification of stone, can not only obtain monazite concentrate best in quality, and the rate of recovery can reach 99% or more.
The present invention guarantees monazite overwhelming majority recycling, tailings, rutile product, the zircon sand product etc. being discharged in process Monazite is practically free of in product.
Ore-dressing technique of the invention using technique of the invention and combines existing set without increasing highly difficult equipment Standby, abundant optimization technological process greatly reduces monazite loss, ensure that the high rate of recovery and product quality, while handle again Important mineral ilmenite concentrate, rutile, zircon sand do more preferable.
Overwhelming majority monazite by Wet-type high gradient magnetic separation twice, is enriched in magnetic by the present invention by the raw material containing monazite Property mineral in, further according to various mineral material of the specific gravity this part containing monazite with spiral chute remove part garnet, The impurity such as tourmaline, are enriched with monazite further, then serve flotation device and directly monazite concentrate is elected.For Not yet magneticly electing the particulate monazite come completely in first of magnetic concentration working, it can be enriched in inside one section of zirconium English rough concentrate, It in the refining process of zircon sand, can be enriched in magnetic tailing, finally upper flotation operation recycles monazite to magnetic tailing.So that The monazite rate of recovery of the invention can reach very high level.
Detailed description of the invention
Fig. 1 is that the present invention is a kind of using uhligite as the flow diagram of the ore-dressing technique of raw materials recovery monazite.
Specific embodiment
In order to be best understood from the technology of the present invention content, specific embodiment is provided below, the present invention is described further.
Experimental method used in the embodiment of the present invention is conventional method unless otherwise specified.
Material used in the embodiment of the present invention, reagent etc., are commercially available unless otherwise specified.
Referring to Fig. 1
It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, comprising the following steps:
S1, the uhligite raw material of the 2%-5% containing monazite is subjected to magnetic separation in 1500-3000Gs, obtains the ferrotianium containing rare earth Mine and material A containing monazite;
S2, step S1 material A is subjected to magnetic separation in 9000-11000Gs, pulp density 45-55% is obtained containing monazite Material B and hair rare earth;Ilmenite by step S1 containing rare earth is sent into spiral chute and carries out spiral, and control ore pulp mass concentration is 30 ~40%, spiral flow is 0.8~1.2 ton/h, obtains titanium ore and hair rare earth;
S3, the material B by step S2 containing monazite are sent to shaking-table gravity concentrator, through gravity separation, after removing tailings Through electric separation, the classifying screen aperture size of electric separation is 0.14~0.16mm, obtains rutile and the material C containing monazite, material C warp 10000-15000Gs high intensity magnetic separation obtains zircon sand and the material D containing monazite;Hair rare earth after step S2 magnetic separation and spiral is sent again Enter spiral chute and carry out spiral, control ore pulp mass concentration is 30~40%, and spiral flow is 0.8~1.2 ton/h, is obtained containing solitary The material E of stone;
S4, material D, material E are carried out to flotation, the control of ore pulp mass concentration 40%~80%, mixing time 25~ 35min goes slot bottom mine, obtains monazite concentrate.
Embodiment 1
It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, comprising the following steps:
S1, the uhligite raw material containing monazite is subjected to magnetic separation in 1500-1800Gs, obtains the ilmenite containing rare earth and contained only Occupy the material A of stone;
S2, material A is subjected to magnetic separation in 9000-10000Gs, pulp density 45-50% obtains the material B containing monazite With hair rare earth;Ilmenite containing rare earth is sent into spiral chute and carries out spiral, control ore pulp mass concentration is 30~33%, spiral Flow is 0.8 ton/h, obtains titanium ore and hair rare earth;
S3, the material B containing monazite is sent to shaking-table gravity concentrator, through gravity separation, is removed after tailings through electric separation, The classifying screen aperture size of electric separation is 0.14mm, obtains rutile and the material C containing monazite, material C is strong through 10000-11000Gs Magnetic separation obtains zircon sand and the material D containing monazite;The hair rare earth of step S2 is re-fed into spiral chute and carries out spiral, controls ore pulp Mass concentration is 30~35%, and spiral flow is 0.8 ton/h, obtains the material E containing monazite;
S4, material D, material E being carried out to flotation, ore pulp mass concentration is controlled in 40%~50%, mixing time 25min, Slot bottom mine is gone, monazite concentrate is obtained.
Embodiment 2
It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, comprising the following steps:
S1, the uhligite raw material containing monazite is subjected to magnetic separation in 2600-3000Gs, obtains the ilmenite containing rare earth and contained only Occupy the material A of stone;
S2, material A is subjected to magnetic separation in 10000-11000Gs, pulp density 53-55% obtains the material B containing monazite With hair rare earth;Ilmenite containing rare earth is sent into spiral chute and carries out spiral, control ore pulp mass concentration is 38~40%, spiral Flow is 1.2 tons/h, obtains titanium ore and hair rare earth;
S3, the material B containing monazite is sent to shaking-table gravity concentrator, through gravity separation, is removed after tailings through electric separation, The classifying screen aperture size of electric separation is 0.16mm, obtains rutile and the material C containing monazite, material C is strong through 14000-15000Gs Magnetic separation obtains zircon sand and the material D containing monazite;The hair rare earth of step S2 is re-fed into spiral chute and carries out spiral, controls ore pulp Mass concentration is 35~40%, and spiral flow is 1.2 tons/h, obtains the material E containing monazite;
S4, material D, material E being carried out to flotation, ore pulp mass concentration is controlled in 70%~80%, mixing time 35min, Slot bottom mine is gone, monazite concentrate is obtained.
Embodiment 3
It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, comprising the following steps:
S1, the uhligite raw material containing monazite is subjected to magnetic separation in 2000-2500Gs, obtains the ilmenite containing rare earth and contained only Occupy the material A of stone;
S2, material A is subjected to magnetic separation in 10000-11000Gs, pulp density 48-52% obtains the material B containing monazite With hair rare earth;Ilmenite containing rare earth is sent into spiral chute and carries out spiral, control ore pulp mass concentration is 34~37%, spiral Flow is 1.0 tons/h, obtains titanium ore and hair rare earth;
S3, the material B containing monazite is sent to shaking-table gravity concentrator, through gravity separation, is removed after tailings through electric separation, The classifying screen aperture size of electric separation is 0.15mm, obtains rutile and the material C containing monazite, material C is strong through 12000-13000Gs Magnetic separation obtains zircon sand and the material D containing monazite;The hair rare earth of step S2 is re-fed into spiral chute and carries out spiral, controls ore pulp Mass concentration is 32~38%, and spiral flow is 1.0 tons/h, obtains the material E containing monazite;
S4, material D, material E being carried out to flotation, ore pulp mass concentration is controlled in 50%~60%, mixing time 30min, Slot bottom mine is gone, monazite concentrate is obtained.
Comparative example 1
Raw material is separated using conventional method through magnetic separation, electric separation, magnetic separation.
Solitary stone ore is made in Examples 1 to 3 and comparative example 1 and carries out attribute test, test rare earth oxide contains Amount, and compared with traditional preparation methods, each component content is as follows in product:
Rare earth oxide content The rate of recovery of monazite
Embodiment 1 64.8% 98.4%
Embodiment 2 65.6% 97.8%
Embodiment 3 67.8% 99.2%
Comparative example 1 60.4% 70.1%
The above results show ore-dressing technique of the invention, for the uhligite containing micro monazite, using high-gradient magnetic separation In conjunction with gravity separation and flotation, association Rare Earth Mine is sufficiently recycled.In the premise for guaranteeing that uhligite effectively recycles, sufficiently shine The sorting and purification for having cared for monazite, can not only obtain monazite concentrate best in quality, and the rate of recovery can reach 99% or more.
The foregoing is merely illustrative of the preferred embodiments of the present invention, is not intended to limit the invention, all in essence of the invention Within mind and principle, any modification, equivalent replacement, improvement and so on be should all be included in the protection scope of the present invention.

Claims (6)

1. a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, it is characterised in that: the following steps are included:
S1, the uhligite raw material containing monazite is subjected to magnetic separation in 1500-3000Gs, obtains the ilmenite containing rare earth and contains monazite Material A;
S2, material A is subjected to magnetic separation in 9000-11000Gs, pulp density 45-55% obtains material B and hair containing monazite Rare earth;Ilmenite containing rare earth is sorted through spiral chute, obtains titanium ore and hair rare earth;
S3, by material B through gravity separation, remove after tailings through electric separation, obtain rutile and the material C containing monazite, material C warp 10000-15000Gs high intensity magnetic separation obtains zircon sand and the material D containing monazite;The hair rare earth that step S2 is obtained is through spiral chute point Choosing, obtains the material E containing monazite;
S4, material D, material E are subjected to flotation, go slot bottom mine, obtains monazite concentrate.
2. as described in claim 1 a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, it is characterised in that: S1 step In rapid, the field strength of the magnetic separation is 2000-2500Gs.
3. as described in claim 1 a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, it is characterised in that: S2, In S3 step, the ore pulp mass concentration of the spiral chute sorting is 30~40%, and flow is 0.8~1.2 ton/h.
4. as described in claim 1 a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, it is characterised in that: S3 step In rapid, the equipment of the gravity separation is shaking-table gravity concentrator.
5. as described in claim 1 a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, it is characterised in that: S3 step In rapid, the classifying screen aperture size of the electric separation is 0.14~0.16mm.
6. as described in claim 1 a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite, it is characterised in that: S4 step In rapid, the ore pulp mass concentration of the flotation is 40%~80%, 25~35min of mixing time.
CN201811589278.1A 2018-12-25 2018-12-25 It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite Active CN109482339B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201811589278.1A CN109482339B (en) 2018-12-25 2018-12-25 It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201811589278.1A CN109482339B (en) 2018-12-25 2018-12-25 It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite

Publications (2)

Publication Number Publication Date
CN109482339A CN109482339A (en) 2019-03-19
CN109482339B true CN109482339B (en) 2019-08-02

Family

ID=65711676

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201811589278.1A Active CN109482339B (en) 2018-12-25 2018-12-25 It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite

Country Status (1)

Country Link
CN (1) CN109482339B (en)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111530626B (en) * 2020-04-24 2022-06-28 核工业北京化工冶金研究院 Beneficiation method for recovering monazite from gravity concentrate of titanium-dressing tailings
CN112774850B (en) * 2020-12-28 2022-09-13 海南文盛新材料科技股份有限公司 Ore dressing process for sorting monazite by using grading jigger
CN114392832B (en) * 2021-12-23 2024-03-22 长沙矿冶研究院有限责任公司 Recovery process of zircon in seashore ore sand

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2340402C1 (en) * 2007-04-02 2008-12-10 Государственное образовательное учреждение высшего профессионального образования Читинский государственный университет (ЧитГУ) Production line for extraction of rare and rare-earth elements from fly ash of thermal power plants
CN102614978A (en) * 2012-04-18 2012-08-01 赣州金环磁选设备有限公司 Multiple product separation method of sea beach placer
CN103386358A (en) * 2013-07-19 2013-11-13 广州有色金属研究院 Ore dressing method for low-grade rare earth ore
CN103962232A (en) * 2014-05-08 2014-08-06 广东省工业技术研究院(广州有色金属研究院) Rare earth ore beneficiation method
CN105314640A (en) * 2014-07-15 2016-02-10 大连洲际新材料有限公司 Novel technology of zircon sand extraction
CN109013048A (en) * 2018-09-25 2018-12-18 李梅 A kind of raising zircon concentrate grade obtains the beneficiation method of rareearth enriching material simultaneously

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
RU2340402C1 (en) * 2007-04-02 2008-12-10 Государственное образовательное учреждение высшего профессионального образования Читинский государственный университет (ЧитГУ) Production line for extraction of rare and rare-earth elements from fly ash of thermal power plants
CN102614978A (en) * 2012-04-18 2012-08-01 赣州金环磁选设备有限公司 Multiple product separation method of sea beach placer
CN103386358A (en) * 2013-07-19 2013-11-13 广州有色金属研究院 Ore dressing method for low-grade rare earth ore
CN103962232A (en) * 2014-05-08 2014-08-06 广东省工业技术研究院(广州有色金属研究院) Rare earth ore beneficiation method
CN105314640A (en) * 2014-07-15 2016-02-10 大连洲际新材料有限公司 Novel technology of zircon sand extraction
CN109013048A (en) * 2018-09-25 2018-12-18 李梅 A kind of raising zircon concentrate grade obtains the beneficiation method of rareearth enriching material simultaneously

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
高梯度湿式磁选机在锆钛选矿生产中的应用;侯军发 等;《建材世界》;20131015;第34卷(第5期);第68-70页

Also Published As

Publication number Publication date
CN109482339A (en) 2019-03-19

Similar Documents

Publication Publication Date Title
CN109482339B (en) It is a kind of using uhligite as the ore-dressing technique of raw materials recovery monazite
CN109894259B (en) Comprehensive utilization method of gold tailings containing gold, iron and feldspar
CN102527504B (en) Magnetic ore dressing method
CN111250259B (en) Titanium selection process of olivine-containing vanadium titano-magnetite
CN103736588B (en) Efficient beneficiation method of comprehensively recovering low-grade vanadium titano-magnetite
CN108636591B (en) Method for recovering quartz from iron tailings
CN111729757A (en) Serial elutriation deep concentration process for extremely difficult-to-separate magnetite
CN105312148A (en) Beneficiation and enrichment method suitable for associated scheelite in molybdenite flotation tailings
CN107413517B (en) A kind of beneficiation method improving micro fine particle magnetite stone stage grinding and stage separation sorting index
CN108514949B (en) Recovery method of fine-grain ilmenite
CN105057089A (en) Beneficiation technology for rock-type primary ilmenite
CN109332001A (en) Method for recovering iron and titanium from vanadium titano-magnetite tailings
CN111841871A (en) Beneficiation method for low-grade tungsten ore
CN109675715A (en) A kind of pre-selection technique of the red mixing poor iron ore of magnetic-
CN107583764A (en) Beneficiation method for recovering mica from copper ore tailings
CN111729756A (en) Anshan type low-grade magnetite tailing recovery process
CN104689904A (en) Method for separating ilmenite concentrate from vanadium titanium magnetite tailings
CN109499747A (en) The separation system and sorting process of Associated Fluorite in a kind of polymetallic ore
CN108579987A (en) A method of extracting quartz concentrate using desert drift-sand
CN103230832A (en) Beneficiation method for recovering fine fraction iron from strong magnetic separation gangues of ferric oxide ores
CN105435958B (en) Beneficiation and enrichment method for primary scandium ore
CN105689126B (en) A kind of oolitic hematite ore-dressing technique
CN109127109B (en) Reselection combined recovery process for uranium, niobium and lead polymetallic ore
CN112791848B (en) Method for reducing ilmenite flotation difficulty in process of recycling ilmenite from iron ore dressing tailings
CN111921694B (en) Comprehensive recovery method for various valuable minerals in bauxite

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right

Effective date of registration: 20191008

Address after: 363000, Zhangzhou Changtai Economic Development Zone, Fujian agricultural farm silver pond Industrial Park

Patentee after: FUJIAN WENSHENG MINING Co.,Ltd.

Address before: 570100 No. 199 Binjiang West Road, Pandan Community, Guoxing Street, Qiongshan District, Haikou City, Hainan Province, 3-301

Co-patentee before: HAINAN HAITUO MINING Co.,Ltd.

Patentee before: HAINAN WENSHENG HIGH-TECH MATERIALS CO.,LTD.

TR01 Transfer of patent right
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of invention: A beneficiation process for recovering monazite using zirconium titanium ore as raw material

Effective date of registration: 20230901

Granted publication date: 20190802

Pledgee: China Minsheng Banking Corp Haikou branch

Pledgor: FUJIAN WENSHENG MINING Co.,Ltd.

Registration number: Y2023980055023

PE01 Entry into force of the registration of the contract for pledge of patent right