CN102249325A - Method for preparing chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue - Google Patents

Method for preparing chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue Download PDF

Info

Publication number
CN102249325A
CN102249325A CN2010105981509A CN201010598150A CN102249325A CN 102249325 A CN102249325 A CN 102249325A CN 2010105981509 A CN2010105981509 A CN 2010105981509A CN 201010598150 A CN201010598150 A CN 201010598150A CN 102249325 A CN102249325 A CN 102249325A
Authority
CN
China
Prior art keywords
chromium
calcium
magnesium
chloride
repone
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.)
Pending
Application number
CN2010105981509A
Other languages
Chinese (zh)
Inventor
王嘉兴
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to CN2010105981509A priority Critical patent/CN102249325A/en
Publication of CN102249325A publication Critical patent/CN102249325A/en
Pending legal-status Critical Current

Links

Images

Landscapes

  • Processing Of Solid Wastes (AREA)

Abstract

The invention belongs to the technical field of three waste (waste water, waste gas, industrial residue) treatment and comprehensive utilization in the manufacturing enterprise of chromium compounds, and particularly discloses a method for preparing the chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue. The method mainly comprises the following steps of: performing acidolysis on the chromium residue by using the hydrochloric acid, filtering, settling filtrate, separating settlement liquid, and performing deep treatment on the filtrate and filter cake to obtain the chromium hydroxide, potassium chloride and the calcium, magnesium and aluminum mixed carbonate. By the method, waste residue can be treated completely, and the pollution of the waste residue to environment can be reduced; and the valuable chromium hydroxide, potassium chloride and calcium, magnesium and aluminum mixed carbonate can be prepared, the method has obvious social and economic benefit, and the process and production equipment are simple, and the method is a very practical treatment and utilization method.

Description

The method for preparing chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate with the chromium slag
Technical field
The present invention relates to the technical field of the disposal of three wastes of chromium cpd manufacturing concern and utilization, especially a kind of method for preparing chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate with the chromium slag.
Technical background
The solid waste of chromium salt production is meant mainly that in the sodium dichromate 99 production process chromite is generally called the chromium slag through the residue with the water extraction sodium dichromate 99 after the roasting.The chromium slag is to belong to severe toxicity, dangerous waste residue, and its outward appearance has Huang, color such as black, reddish brown.Often contain oxide compounds such as calcium, magnesium, iron, aluminium and chromium sesquioxide, water-soluble chromic acid sodium, solubility in acid Sodium chromate etc. in the chromium slag.The main sexavalent chrome of the toxicity of chromium, chromic toxicity mainly come from its strong oxidizing property to be caused organic corrosion and destruction, also is the carcinogenic substance of MA.
Because raw materials used, production technique and prescription are different, the turnout of chromium slag is different thereupon with composition.After testing, consisting of of chromium slag: chromium sesquioxide accounts for 2.5%~4% of total slag amount percentage ratio, water-soluble sexavalent chrome accounts for 0.28%~1.34% of total slag amount percentage ratio, the solubility in acid sexavalent chrome accounts for 0.9%~1.4% of total slag amount percentage ratio, calcium oxide accounts for 29%~36% of total slag amount percentage ratio, magnesium oxide accounts for 20%~33% of total slag amount percentage ratio, and aluminium sesquioxide accounts for 5%~8% of total slag amount percentage ratio, 8%~11% of the total slag amount of silica comprises percentage ratio.
Because the toxicity of chromium slag is very big, in a single day soil and underground water are subjected to chromic pollution, and soil can not farming, and underground water can't be quoted, if can not take special control measures, this pollution can't be eliminated decades, and can't recover ecological decades on every side.Hence one can see that, chromium slag such as the untimely processing of detoxifying, in case polluted environment, particularly underground water and soil, its consequence is very serious
When no reductive agent, the aqueous solution of sodium dichromate 99 contains the hexavalent chromium of severe toxicity, and the air storage of chromium slag is drenched by sleet and soaked, and contained sexavalent chrome is dissolved and permeates the ground water or enter in river, the lake contaminate environment.In the severe contamination band in the water content of 6-valence Cr ions can be up to every liter tens of milligrams, surpass the drinking water standard several times.Sexavalent chrome, chromium cpd and chromium cpd aerosol etc. simultaneously can also endanger human and livestock health in a variety of forms, so the storing up the field and must take anti-the blending of floor file to add the canopy cover of chromium slag.
In order to prevent the harm of chromium slag, common way is that it is carried out pyroprocessing, eliminates its toxicity.Having under the acidic conditions of reductive agent in addition, or under the alkaline condition that alkali metalsulphide, sulfohydrate are arranged, or under the high temperature that has sulphur, carbon and carbide to exist, anoxia condition, sexavalent chrome is all reducible to be the less trivalent chromium of toxicity.At present, the utilization of chromium slag mainly contains the following aspects:
1. produced sintering brick: with chromium slag drying, pulverizing, press the mixed batching of chromium ground-slag 40% and clay 60%, make adobe, kiln-firing.In high temperature and strong reducing property environment, hexavalent chrome reduction is water-fast chromium sesquioxide, eliminates severe toxicity, and prepared brick material can reach building requirements.
2. make high-strength chromium barium brick: with 5 parts of chromium slags and 3 parts of barium carbonate slag mixing and water addings 40%, wet-milling in ball mill.Sexavalent chrome in the chromium slag becomes water-fast baryta yellow, and a part changes into trivalent chromium; By 3 parts of chromium barium slag slurries and 2 parts of cinder batchings,, make adobe through rolling and boiling in a covered pot over a slow fire material; Through intensification, constant temperature, cooling respectively 2 hours, under 8 barometric points, carry out autoclave curing then, make chromium barium brick.Contain more magnesium oxide in the chromium slag, volume can expand, and need deposit for some time, uses after the volume stability.
3. make the cast stone of chromium slag: with 30% chromium slag, 25% silicate and 45% cinder batching, mix 3~5% ferric oxide again, through fusion-cast, recrystallization annealing temperature, make ultimate compression strength and be 4800~5500 kilogram forces/centimetre high strength, wear-resistant, etch-proof cast stone.
4. make cement: press ordinary Portland cement with raw materials such as chromium slag, Wingdale, clays and prepare burden, can calcining cement clinker, be used for making cement; Utilize chromium slag after the carbon reduction with granulated blast-furnace slag, bessemer furnace slag and Portland clinker, add 5% left and right sides gypsum, also can make few grog iron and steel slag cement.
In addition, the chromium slag also can replace chromite ore fine, as the emerald green tinting material of glass; Shrend chromium slag also can be used as cement additive, mineral wool raw materials, heat-resistant adhesive gel material, fused cement raw material etc.In the chromium slag of Japan after removing poison, add reductive agents such as ferrous sulfate, iron protoxide, make the plasticity-solidification material or make the gypsum sheet material stopping composition.
Though the chromium slag can both be to a certain degree disposed in above-mentioned these utilizations, because the chromium slag has toxicity, be difficult to transportation, its utilization does not open up new prospect as yet; When the chromium slag is handled, be confined to eliminate its toxicity and do not make full use of element that it contained, valuable; At present chromium slag also of no use prepares the relevant report of the method for chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate.
Summary of the invention
The invention provides and a kind ofly prepare the method for chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate with the chromium slag, this method not only technology is simple, and can also make multiple value product when can effectively handle waste residue.
To achieve the above object, technical scheme of the present invention is:
A kind ofly prepare the method for chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate, comprise being prepared as follows step with the chromium slag:
Steps A, the chromium slag packed into fully stir in first corrosion-resistant reactor that fills hydrochloric acid, wherein said chromium slag carries out acidolysis reaction with pure chromium sesquioxide and the hydrochloric acid of converting according to pure mass ratio at 1: 0.47, and reaction obtains the mixture I of chromium chloride, calcium chloride, magnesium chloride, aluminum chloride;
Step B, gained mixture I in the steps A is filtered with first strainer;
Step C, send to deep processing separately with filtering the gained filter cake among the step B;
Step D, be sent to slurry tank, toward slurry tank in, add entry again, make the mixtures II of chromium chloride hydrolysis formation trivalent chromium hydroxide precipitation and calcium chloride, magnesium chloride, aluminum chloride filtering gained filtrate among the step B; Get final product according to calculating an amount of water of adding, can not add excessive water, be mixed in the residual residue in order to avoid cause the chromium chloride premature hydrolysis to form tervalent chromium hydroxide;
Step e, gained mixtures II among the step D is filtered with second strainer;
Step F, with gained filter cake in the step e successively with first water cooler, first washing and spin-drying machine, first moisture eliminator, first pulverizer cool off, wash drying, dry and pulverize after check the weight and be packaged to be the chromium hydroxide product;
Step G, gained filtrate in the step e is reacted in second corrosion-resistant reactor by pure mass ratio in pure calcium chloride and salt of wormwood at 1: 1.24, under stirring slowly, carry out chemical reaction, the mixtures III of reaction generation Repone K and lime carbonate, magnesiumcarbonate, aluminium carbonate;
Step H, with gained mixtures III among the step G with the 3rd strainer;
Step I, with gained filter cake among the step H successively with second water cooler, second washing and spin-drying machine, second moisture eliminator, second pulverizer cool off, wash drying, dry and pulverize after check the weight and be packaged to be calcium, magnesium, aluminium mixed carbonic acid product salt;
Step J, gained filtrate among the step H is sent in the corrosion resistant underpressure distillation device, carry out underpressure distillation, when the zero pour that reaches Repone K is separated out potassium chloride, with the 3rd water cooler potassium chloride is carried out constant temperature cooling 30~50 minutes again, obtain the Repone K crude product;
Step K, resulting Repone K crude product among the step J is carried out rectifying with smart distiller, obtain the Repone K product.
Preferably, employed hydrochloric acid is that concentration of volume percent is 60%~75% hydrochloric acid soln among the described step C.
Reaction principle of the present invention is:
Chromic reaction: Cr 2O 3+ 6HCl=====2CrCl 3+ 3H 2O
CrCl 3+3H 2O=====Cr(OH) 3+3HCl
Chromic reaction: 2CrO 3+ 12HCl=====2CrCl 3+ 3Cl 2+ 6H 2O
CrCl 3+3H 2O=====Cr(OH) 3+3HCl
The reaction of calcium, magnesium, aluminium:
CaO+2HCl=====CaCl 2+H 2O
CaCl 2+K 2CO 3=====2KCl+CaCO 3
MgO+2HCl=====MgCl 2+H 2O
3MgCl 2+K 2CO 3=====2KCl+Mg?CO 3
Al 2O 3+3HCl=====AlCl 3+3H 2O
2AlCl 3+3K 2CO 3=====6KCl+Al 2(CO 3) 3
The present invention carries out the acidolysis after-filtration with the chromium hydrochloric acid for dreg earlier, filtrate is carried out sedimentation again, behind the separate and subside liquid, filter cake obtains the chromium hydroxide product after washing drying, drying and crushing, after filtrate and the salt of wormwood reaction, filter once more, filter cake processing makes calcium, magnesium, aluminium mixed carbonate and filtrate and makes the Repone K product at last through underpressure distillation; The present invention can as clean as a pennyly gulp down waste residue, alleviates the pollution of waste residue to environment; Can make valuable chromium hydroxide and Repone K and calcium, magnesium, aluminium mixed carbonate again, not only have remarkable social benefit and economic benefit, and technology and production unit are simple, be a kind of relatively actual processing and utilize method.
Description of drawings
Fig. 1 is the process flow sheet for preparing the method for chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate with the chromium slag;
Wherein:
1-first corrosion-resistant reactor, 2-first strainer, 3-slurry tank, 4-second strainer, 5-first water cooler, 6-first washing and spin-drying machine, 7-first moisture eliminator, 8-first pulverizer, 9-chromium hydroxide product, 10-second corrosion-resistant reactor, 11-the 3rd strainer, 12-second water cooler, 13-second washing and spin-drying machine, 14-second moisture eliminator, 15-second pulverizer, 16-calcium, magnesium, aluminium mixed carbonic acid product salt, 17-underpressure distillation device, 18-the 3rd water cooler, 19-Repone K crude product, the smart distiller of 20-, 21-Repone K product.
Concrete embodiment
A kind ofly prepare the method for chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate, comprise being prepared as follows step with the chromium slag:
Steps A, (wherein with chromium slag 1000Kg, trivalent chromium is 30Kg, sexavalent chrome is 10Kg, calcium oxide is 300Kg, magnesium oxide is 250Kg, aluminum oxide is 60Kg) 1 li of first corrosion-resistant reactor that fills hydrochloric acid of packing into fully stirs, and wherein said chromium slag carries out acidolysis reaction with pure chromium sesquioxide and the hydrochloric acid of converting according to pure mass ratio at 1: 0.47, reacts the mixture I that obtains chromium chloride, calcium chloride, magnesium chloride, aluminum chloride; Hydrochloric acid is that concentration of volume percent is 75% hydrochloric acid soln; Wherein, the hydrochloric acid concentration of volume percent can be obtained between 60%~75% than good yield;
Step B, gained mixture I in the steps A is filtered with first strainer 2;
Step C, send to deep processing separately with filtering the gained filter cake among the step B;
Step D, be sent to slurry tank 3, toward slurry tank 3 in, add entry again, make the mixtures II of chromium chloride hydrolysis formation trivalent chromium hydroxide precipitation and calcium chloride, magnesium chloride, aluminum chloride filtering gained filtrate among the step B;
Step e, gained mixtures II among the step D is filtered with second strainer 4;
Step F, with gained filter cake in the step e successively with first water cooler 5, first washing and spin-drying machine 6, first moisture eliminator 7, first pulverizer 8 cool off, wash drying, dry and pulverize after check the weight and be packaged to be 15.49Kg chromium hydroxide product 9, (that wherein trivalent chromium produced is 13.24Kg, and that sexavalent chrome produced is 2.21Kg);
Step G, gained filtrate in the step e is reacted on 10 li of second corrosion-resistant reactors in pure calcium chloride and salt of wormwood by pure mass ratio at 1: 1.24, under stirring slowly, carry out chemical reaction, the mixtures III of reaction generation Repone K and lime carbonate, magnesiumcarbonate, aluminium carbonate;
Step H, with gained mixtures III among the step G with the 3rd strainer 11;
Step I, with gained filter cake among the step H successively with second water cooler 12, second washing and spin-drying machine 13, second moisture eliminator 14, second pulverizer 15 cool off, wash drying, dry and pulverize after check the weight and be packaged to be 345.95Kg calcium, magnesium, aluminium mixed carbonic acid product salt 16, (wherein, lime carbonate is 193.59Kg, magnesiumcarbonate is 135.91Kg, and aluminium carbonate is 16.45Kg);
Step J, gained filtrate among the step H is sent into 17 li of corrosion resistant underpressure distillation devices, carry out underpressure distillation, when the zero pour that reaches Repone K is separated out potassium chloride, carry out constant temperature cooling 30~50 minutes with 18 pairs of potassium chlorides of the 3rd water cooler again, obtain Repone K crude product 19;
Step K, the smart distiller 20 of resulting Repone K crude product 19 usefulness among the step J is carried out rectifying, obtain 560.42Kg Repone K product 21.
The foregoing description is preferred embodiment of the present invention, is not to be used for limiting the scope of the present invention, so all equivalences of being done with described feature of claim of the present invention and principle change or modify, all should be included within the claim scope of the present invention.

Claims (2)

1. prepare the method for chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate with the chromium slag, it is characterized in that, comprise being prepared as follows step:
Steps A, chromium slag first corrosion-resistant reactor (1) lining that fills hydrochloric acid of packing into is fully stirred, wherein said chromium slag carries out acidolysis reaction with pure chromium sesquioxide and the hydrochloric acid of converting according to pure mass ratio at 1: 0.47, and reaction obtains the mixture I of chromium chloride, calcium chloride, magnesium chloride, aluminum chloride;
Step B, gained mixture I in the steps A is filtered with first strainer (2);
Step C, send to deep processing separately with filtering the gained filter cake among the step B;
Step D, be sent to slurry tank (3), toward slurry tank (3) in, add entry again, make the mixtures II of chromium chloride hydrolysis formation trivalent chromium hydroxide precipitation and calcium chloride, magnesium chloride, aluminum chloride filtering gained filtrate among the step B;
Step e, gained mixtures II among the step D is filtered with second strainer (4);
Step F, with gained filter cake in the step e use successively first water cooler (5), first washing and spin-drying machine (6), first moisture eliminator (7), first pulverizer (8) cool off, wash drying, dry and pulverize after check the weight and be packaged to be chromium hydroxide product (9);
Step G, gained filtrate in the step e is reacted on second corrosion-resistant reactor (10) lining in pure calcium chloride and salt of wormwood by pure mass ratio at 1: 1.24, under stirring slowly, carry out chemical reaction, the mixtures III of reaction generation Repone K and lime carbonate, magnesiumcarbonate, aluminium carbonate;
Step H, with gained mixtures III among the step G with the 3rd strainer (11);
Step I, with gained filter cake among the step H use successively second water cooler (12), second washing and spin-drying machine (13), second moisture eliminator (14), second pulverizer (15) cool off, wash drying, dry and pulverize after check the weight and be packaged to be calcium, magnesium, aluminium mixed carbonic acid product salt (16);
Step J, gained filtrate among the step H is sent into corrosion resistant underpressure distillation device (17) lining, carry out underpressure distillation, when the zero pour that reaches Repone K is separated out potassium chloride, use the 3rd water cooler (18) that potassium chloride is carried out constant temperature cooling 30~50 minutes again, obtain Repone K crude product (19);
Step K, resulting Repone K crude product (19) among the step J is carried out rectifying with smart distiller (20), obtain Repone K product (21).
2. prepare the method for chromium hydroxide coproduction Repone K and calcium, magnesium, aluminium mixed carbonate according to claim 1 is described with the chromium slag, it is characterized in that employed hydrochloric acid is that concentration of volume percent is 60%~75% hydrochloric acid soln among the described step C.
CN2010105981509A 2010-12-21 2010-12-21 Method for preparing chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue Pending CN102249325A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010105981509A CN102249325A (en) 2010-12-21 2010-12-21 Method for preparing chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010105981509A CN102249325A (en) 2010-12-21 2010-12-21 Method for preparing chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue

Publications (1)

Publication Number Publication Date
CN102249325A true CN102249325A (en) 2011-11-23

Family

ID=44976961

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010105981509A Pending CN102249325A (en) 2010-12-21 2010-12-21 Method for preparing chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue

Country Status (1)

Country Link
CN (1) CN102249325A (en)

Similar Documents

Publication Publication Date Title
CN101837435B (en) Method for preparing casting covering slag by utilizing stainless steel cold-rolling pickling wastewater
CN102515280B (en) Method for separation of aluminum and iron from acid leaching solution of coal gangue with high iron content
CN105502974B (en) A kind of processing of nickel minerals metallurgical slag and Application way
CN102311136A (en) Method for producing low iron aluminum sulfate by utilization of coal gangue
JP6585747B2 (en) Titanium-containing aggregate, production method thereof and use thereof
WO2020206833A1 (en) Method of vortex melting, reducing, dealkalization, iron extraction and direct cement production of high-iron red mud
WO2020206831A1 (en) Calcified-carbonized high-iron red mud recycling iron and tailings cementation method
CN102249316A (en) Method for preparing chromium hydroxide and co-producing iron chloride and calcium, magnesium and aluminum mixed hydroxide by using chromium residues
CN105217825B (en) A kind of segment processing method of fluorine-containing heavy metal wastewater thereby
CN102115828B (en) Method for preparing iron and aluminum and coproducing sodium sulfate from red mud produced by bayer process
CN109913604B (en) Method for extracting iron from high-iron red mud and directly cementing
CN115159875B (en) Method for preparing composite cementing material by utilizing tail slag after multi-element solid waste iron extraction
Parlikar et al. Technological options for effective utilization of bauxite residue (Red mud)—a review
CN108950212B (en) Method for comprehensively recovering sodium, aluminum and iron from red mud
CN110066922A (en) The method of the high titanium red mud production ferro-titanium by-product cement clinker of high-speed rail
CN102259918A (en) Method for preparing chromic hydroxide with joint products of potassium chloride and calcium, magnesium and aluminum mixed hydroxide from chromium residues
CN102259915A (en) Method for preparing chromium hydroxide and co-producing manganese chloride and mixture of calcium hydroxide, magnesium hydroxide and aluminium hydroxide by using chromium residues
CN102259923A (en) Method for preparing chromic hydroxide with joint products of calcium chloride, magnesium chloride and aluminum chloride from chromium residues
CN102249325A (en) Method for preparing chromium hydroxide and coproducing potassium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residue
CN102259920A (en) Method for preparing chromium hydroxide and co-producing barium chloride and calcium, magnesium and aluminum mixed carbonate by using chromium residues
CN102259921A (en) Method for utilizing chromium slag in combined productions of chromic hydroxide, strontium chloride, and mixed carbonate of calcium, magnesium and aluminum
CN102249323A (en) Method for preparing chromium hydroxide and coproducing zinc chloride and calcium, magnesium and aluminum mixed phosphate by using chromium residue
CN102259916A (en) Method for preparing chromium hydroxide and coproducing barium chloride and calcium, magnesium and aluminum mixed hydroxide by using chromium slag
CN102259917A (en) Method for preparing chromium hydroxide with coproduction of titanium chloride and Ca, Mg, Al mixed hydroxide by using chromium residues
CN102249324A (en) Method for preparing chromium hydroxide and co-producing potassium chloride, calcium carbonate, magnesium carbonate, and aluminum carbonate by using chromium residue

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C53 Correction of patent for invention or patent application
CB02 Change of applicant information

Address after: 523000, room five, building 508, Jinhai building, Dongcheng District Tong Road, Dongguan, Guangdong

Applicant after: Wang Jiaxing

Address before: Wushi Village Primary School in Dongguan city of Dongcheng District province Guangdong road 523000 Lane 1 No. 6 main mountain

Applicant before: Wang Jiaxing

C02 Deemed withdrawal of patent application after publication (patent law 2001)
WD01 Invention patent application deemed withdrawn after publication

Application publication date: 20111123