CN104725011A - Ardealite-based imitation pinewood structure building material and preparation method thereof - Google Patents

Ardealite-based imitation pinewood structure building material and preparation method thereof Download PDF

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Publication number
CN104725011A
CN104725011A CN201510104479.8A CN201510104479A CN104725011A CN 104725011 A CN104725011 A CN 104725011A CN 201510104479 A CN201510104479 A CN 201510104479A CN 104725011 A CN104725011 A CN 104725011A
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phosphogypsum
building material
phosphogypsum base
pine
structural building
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杨步雷
杨永彬
向前勇
王伟
刘小成
胡新菊
李泽钢
李显权
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Guizhou Kailin Group Co Ltd
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Guizhou Kailin Group Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/91Use of waste materials as fillers for mortars or concrete

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Abstract

The invention discloses an ardealite-based imitation pinewood structure building material and a preparation method thereof. The ardealite-based imitation pinewood structure building material is prepared from the following raw materials in parts by weight: 90-180 parts of ardealite, 70-110 parts of electrolysis yellow phosphorus slag and 5-10 parts of quick lime. The preparation method of the building material comprises the following steps: proportioning raw materials; aging; forming; carrying out autoclaved curing; preparing a ardealite substrate; drying; and spraying, thereby obtaining a finished product. The ardealite-based imitation pinewood structure building material has the characteristics of simple construction process, light weight, good waterproof and fireproof performances, high compressive strength, high breaking strength and good weather fastness; as a weather fastness building material, the ardealite-based imitation pinewood structure building material has good decoration effect; in addition, lots of ardealite is consumed and exploitation of natural wood is reduced; therefore, the ardealite-based imitation pinewood structure building material and the preparation method thereof have very important significance for environment protection and realization of sustainable development.

Description

Pine structural building material and preparation method thereof imitated by a kind of phosphogypsum base
Technical field
The present invention relates to chemical building material field, be specifically related to a kind of phosphogypsum base and imitate pine structural building material and preparation method thereof.
Background technology
Phosphogypsum Shi Lin compound fertilizer enterprise with phosphorus ore and sulfuric acid for major industry by product during raw material production phosphoric acid, wet method phosphoric acid manufacture process is all produce extraction slurry by sulfuric acid decomposition ground phosphate rock, then filter obtained phosphoric acid, in the process of filtration washing, produce phosphogypsum waste.
Along with the industry of phosphorus ammonium and the development of high-concentration phosphate compound fertilizers, the quantity discharged of phosphogypsum increases year by year, and the whole world increases phosphogypsum quantity discharged every year newly and reaches 2.8 hundred million tons at present, and about 5,000 ten thousand tons, China, accounts for 20% of world's phosphogypsum annual emissions.A large amount of phosphogypsums is stacked, not only land occupation resource, tremendous economic burden is increased to enterprise, but also certain pollution can be caused to environment, China's phosphogypsum is not applied very well for a long time, and utilization ratio is only 10%, year utilization is only 400-500 ten thousand tons, the emission problem of phosphogypsum has become the important factor of restriction production of phosphate fertilizer, and therefore, the phosphogypsum comprehensive utilization technique developing a kind of practicality has great importance.
In the face of the needs of urgent phosphogypsum resource utilization recycling, many technology preparing material of construction based on phosphogypsum are just corresponding and go out.
The patent document being CN103274616 A as publication number discloses a kind of method that phosphorus plaster of Paris produced by phosphogypsum, that industrial residue phosphogypsum is less than 5% through pneumatic drier oven dry to water ratio, send in vapor stream mill again, industrial residue phosphogypsum is ground by vapor stream abrasive dust, after dehydration, accept through dust-precipitator, cooling, i.e. obtained phosphorus plaster of Paris, the method with industrial waste phosphogypsum for starting material, the vapor stream that the superheated vapour utilizing industrial exhaust heat to produce is power grinds standby phosphorus plaster of Paris, there are starting material extensive, production unit is simple, output is high, cost is low, production is tending towards the features such as large-scale, obtained phosphorus plaster of Paris can be used for preparation building function mortar, also can be used for producing gypsum sheet material and building block, practical.
And for example publication number is that the patent document of CN1872765A discloses a kind of method utilizing producing building powdered gypsum by using phosphogypsum, its technological process is: calcine sending in continuous efficient calcining kiln behind pre-for phosphogypsum slag all stockyards, kiln discharge, 100-200 order powder is worn under field conditions (factors) after Chen Hua 7-15 days, the method has broken away from the old road will utilized after phosphogypsum washing in traditional technology, avoid the secondary pollution of environment and water, saving water resource, and the terra alba meeting national standard can be produced.
Also there is the technology utilizing phosphogypsum to prepare building thermal insulation material to occur simultaneously, but but do not see and to occur for the technical scheme of imitated pine structure about utilizing phosphogypsum to prepare in material of construction process.
Therefore the present inventor is by large quantifier elimination and experiment, utilize phosphogypsum for main raw material, by after processing at its surface spraying paint similar to pine lines or coating, produce material of construction identical with pine in appearance, alternatively a kind of material of construction of pine.
Summary of the invention
For solving the above-mentioned technical problem existed in prior art, the invention provides a kind of phosphogypsum base and imitating pine structural building material and preparation method thereof.
The present invention is achieved by the following technical programs:
Pine structural building material imitated by a kind of phosphogypsum base, and it is made up of following raw material: phosphogypsum 90-180 part, electrolysis yellow phosphorus furnace slag 70-110 part, unslaked lime 5-10 part.
Described phosphogypsum base is imitated pine structural building material and is made up of following raw material: phosphogypsum 110-160 part, electrolysis yellow phosphorus furnace slag 80-100 part, unslaked lime part 6-9.
Described phosphogypsum base is imitated pine structural building material and is made up of following raw material: phosphogypsum 135 parts, electrolysis yellow phosphorus furnace slag 90 parts, unslaked lime 7.5 parts.
Described phosphogypsum base to be imitated in pine structural building material also containing by ripe brown 18 parts, raw brown 18 parts, the coating with pine wood grain color that forms of He Shi 15 parts, 18 parts, gasoline, alkyd varnish 19 parts.
CaSO in described phosphogypsum 42H 2o content>=93%.
P in described phosphogypsum 2o 5content≤1%.
Present invention also offers the preparation method that pine structural building material imitated by above-mentioned phosphogypsum base, the method comprises the following steps:
(1) prepare burden: get after phosphogypsum and unslaked lime is the ratio neutralizing treatment 1min of 18:1 according to mass ratio, put into stirrer and stir 30s, then stirrer is opened, add electrolysis yellow phosphorus furnace slag to continue to stir 60s, obtain mixture, after again mixture being dried to free-water≤1%, put into ball mill grinding 40-50min;
(2) ageing: the mixture in step (1) after ball milling is carried out ageing after the temperature lower calcination 3-4h of 140-160 DEG C, digestion time is 24-36h;
(3) shaping: the material after ageing is put into vibrating forming machine, shaping according to required shaped vibration;
(4) steam press maintenance: after the material natural curing 7-9d of vibratory compaction, carry out steam press maintenance, adopt heat-up rate to be 20 DEG C/h, control temperature is 120-180 DEG C, and pressure is 0.2-0.8MPa, and curing time is 5-8h;
(5) phosphogypsum base material: take out the material through steam press maintenance, namely obtains phosphogypsum base material after naturally cooling cooling;
(6) dry: phosphogypsum base material to be put into drying machine and is dried to water content≤8%;
(7) spray: get the coating with pine wood grain color, uniformly spray on phosphogypsum base material, altogether spraying twice;
(8) finished product: by the phosphogypsum base material sprayed, puts into the kiln that temperature is 25 DEG C, namely obtains phosphogypsum base and imitate pine structural building material finished product after dry 12-24h.
It is 275-280m that described mixture is milled to specific surface area 2/ kg.
Temperature in described drying process controls as 50-70 DEG C.
The coating thickness of described coating is 0.2-3.2mm.
Compared with prior art, the technique effect of technical scheme of the present invention is embodied in:
1. owing to containing much impurity and objectionable impurities in phosphogypsum, therefore the acidic substance of the present invention by adding in unslaked lime and in phosphogypsum, phosphogypsum is made to become neutrality, the various impurity in phosphogypsum are made to remove and reduce the content of objectionable impurities, become the secondary resource that can use, ball milling is carried out after mixing with electrolysis yellow phosphorus furnace slag again, by ball milling, the plate morphology of the dihydrate gypsum crystal rule in phosphogypsum and uniform scaling are destroyed, its granule-morphology is made to be column, tabular, granular variation such as grade, the grain composition improving phosphogypsum with this is normal distribution.
2. high-temperature calcination is carried out by through neutralization and the material of ball-milling processing, can effectively by P wherein 2o 5resolve into gas or be partially converted to stable insoluble phosphate compounds, do not need washing, avoid the problem of water pollutions, rear side which fits ageing makes its physicals be further improved.
3. frost resistance, the splitting resistance that steam press maintenance can improve material is carried out to the material after shaping, after its maintenance completes, carry out being drying to obtain high-level phosphogypsum base material.
4. carry out attached look by the mode of spraying, the decorative effect that the phosphogypsum base prepared can be made to imitate pine structural building material obtains huge raising, adopts twice spraying, makes the outward appearance of material more evenly exquisite, and is not easy to fade and fades.
This phosphogypsum base is imitated pine structural building material and is had that construction technology is simple, lightweight, waterproof fireproofing are good, ultimate compression strength is high in a word; the feature that High anti bending strength, weathering resistance are strong; and as upholstery building materials, there is good decorative effect; also consume a large amount of phosphogypsum simultaneously, reduce the exploitation of natural timber, to protection of the environment, realize Sustainable development tool and be of great significance.
Accompanying drawing explanation
Fig. 1 is present invention process schema.
Fig. 2 is that calcining temperature affects schematic diagram to phosphogypsum intensity
Fig. 3 is that calcining temperature affects schematic diagram to phosphogypsum coefficient of softening
Embodiment
Below in conjunction with drawings and Examples, technical scheme of the present invention is further described, but described in claimed scope is not limited to.
Embodiment one
Formula: phosphogypsum 90kg, electrolysis yellow phosphorus furnace slag 70kg, unslaked lime 5kg, ripe brown 18kg, raw brown 18kg, He Shi 15kg, gasoline 18kg, alkyd varnish 19kg.
Preparation method:
Get after phosphogypsum and unslaked lime is the ratio neutralizing treatment 1min of 18:1 according to mass ratio, put into stirrer and stir 30s, then stirrer is opened, add electrolysis yellow phosphorus furnace slag to continue to stir 60s, obtain mixture, after again mixture being dried to free-water≤1%, put into ball mill grinding 40min, being milled to specific surface area is 275m 2/ kg; Mixture after ball milling is carried out ageing after the temperature lower calcination 3h of 140 DEG C, and digestion time is 24h; Material after ageing is put into vibrating forming machine, shaping according to required shaped vibration; After the material natural curing 7d of vibratory compaction, carry out steam press maintenance, adopt heat-up rate to be 20 DEG C/h, control temperature is 120 DEG C, and pressure is 0.2MPa, and curing time is 5h; Take out the material through steam press maintenance, after naturally cooling cooling, namely obtain phosphogypsum base material; Phosphogypsum base material is put into drying machine, and control temperature is 50 DEG C and is dried to water content≤8%; Get ripe brown, raw brown, He Shi and add gasoline again after mixing, alkyd varnish carries out diluting the coating obtaining having pine wood grain color, is uniformly sprayed by this coating on phosphogypsum base material, spraying twice altogether, and coating thickness is 0.2mm; By the phosphogypsum base material sprayed, put into the kiln that temperature is 25 DEG C, namely obtain phosphogypsum base after dry 12h and imitate pine structural building material finished product.
Embodiment two
Formula: phosphogypsum 180kg, electrolysis yellow phosphorus furnace slag 110kg, unslaked lime 10kg, ripe brown 18kg, raw brown 18kg, He Shi 15kg, gasoline 18kg, alkyd varnish 19kg.
Preparation method:
Get after phosphogypsum and unslaked lime is the ratio neutralizing treatment 1min of 18:1 according to mass ratio, put into stirrer and stir 30s, then stirrer is opened, add electrolysis yellow phosphorus furnace slag to continue to stir 60s, obtain mixture, after again mixture being dried to free-water≤1%, put into ball mill grinding 42min, being milled to specific surface area is 275m 2/ kg; Mixture after ball milling is carried out ageing after the temperature lower calcination 3h of 142 DEG C, and digestion time is 26h; Material after ageing is put into vibrating forming machine, shaping according to required shaped vibration; After the material natural curing 7d of vibratory compaction, carry out steam press maintenance, adopt heat-up rate to be 20 DEG C/h, control temperature is 130 DEG C, and pressure is 0.2MPa, and curing time is 5h; Take out the material through steam press maintenance, after naturally cooling cooling, namely obtain phosphogypsum base material; Phosphogypsum base material is put into drying machine, and control temperature is 54 DEG C and is dried to water content≤8%; Get ripe brown, raw brown, He Shi and add gasoline again after mixing, alkyd varnish carries out diluting the coating obtaining having pine wood grain color, is uniformly sprayed by this coating on phosphogypsum base material, spraying twice altogether, and coating thickness is 0.6mm; By the phosphogypsum base material sprayed, put into the kiln that temperature is 25 DEG C, namely obtain phosphogypsum base after dry 14h and imitate pine structural building material finished product.
Embodiment three
Formula: phosphogypsum 110kg, electrolysis yellow phosphorus furnace slag 80kg, unslaked lime part 6kg, ripe brown 18kg, raw brown 18kg, He Shi 15kg, gasoline 18kg, alkyd varnish 19kg.
Preparation method:
Get after phosphogypsum and unslaked lime is the ratio neutralizing treatment 1min of 18:1 according to mass ratio, put into stirrer and stir 30s, then stirrer is opened, add electrolysis yellow phosphorus furnace slag to continue to stir 60s, obtain mixture, mixture is put into ball mill grinding 47min again, being milled to specific surface area is 277m 2/ kg; Mixture after ball milling is carried out ageing after the temperature lower calcination 4h of 148 DEG C, and digestion time is 32h; Material after ageing is put into vibrating forming machine, shaping according to required shaped vibration; After the material natural curing 9d of vibratory compaction, carry out steam press maintenance, adopt heat-up rate to be 20 DEG C/h, control temperature is 170 DEG C, and pressure is 0.4MPa, and curing time is 8h; Take out the material through steam press maintenance, after naturally cooling cooling, namely obtain phosphogypsum base material; Phosphogypsum base material is put into drying machine, and control temperature is 62 DEG C and is dried to water content≤8%; Get ripe brown, raw brown, He Shi and add gasoline again after mixing, alkyd varnish carries out diluting the coating obtaining having pine wood grain color, is uniformly sprayed by this coating on phosphogypsum base material, spraying twice altogether, and coating thickness is 1.8mm; By the phosphogypsum base material sprayed, put into the kiln that temperature is 25 DEG C, namely obtain phosphogypsum base after dry 20h and imitate pine structural building material finished product.
Embodiment four
Formula: phosphogypsum 160kg, electrolysis yellow phosphorus furnace slag 100kg, unslaked lime part 9kg, ripe brown 18kg, raw brown 18kg, He Shi 15kg, gasoline 18kg, alkyd varnish 19kg.
Preparation method:
Get after phosphogypsum and unslaked lime is the ratio neutralizing treatment 1min of 18:1 according to mass ratio, put into stirrer and stir 30s, then stirrer is opened, add electrolysis yellow phosphorus furnace slag to continue to stir 60s, obtain mixture, after again mixture being dried to free-water≤1%, put into ball mill grinding 48min, being milled to specific surface area is 277m 2/ kg; Mixture after ball milling is carried out ageing after the temperature lower calcination 4h of 152 DEG C, and digestion time is 31h; Material after ageing is put into vibrating forming machine, shaping according to required shaped vibration; After the material natural curing 9d of vibratory compaction, carry out steam press maintenance, adopt heat-up rate to be 20 DEG C/h, control temperature is 180 DEG C, and pressure is 0.6MPa, and curing time is 8h; Take out the material through steam press maintenance, after naturally cooling cooling, namely obtain phosphogypsum base material; Phosphogypsum base material is put into drying machine, and control temperature is 64 DEG C and is dried to water content≤8%; Get ripe brown, raw brown, He Shi and add gasoline again after mixing, alkyd varnish carries out diluting the coating obtaining having pine wood grain color, is uniformly sprayed by this coating on phosphogypsum base material, spraying twice altogether, and coating thickness is 2.4mm; By the phosphogypsum base material sprayed, put into the kiln that temperature is 25 DEG C, namely obtain phosphogypsum base after dry 21h and imitate pine structural building material finished product.
Embodiment five
Formula: phosphogypsum 135kg, electrolysis yellow phosphorus furnace slag 90kg, unslaked lime 7.5kg, ripe brown 18kg, raw brown 18kg, He Shi 15kg, gasoline 18kg, alkyd varnish 19kg.
Preparation method:
Get after phosphogypsum and unslaked lime is the ratio neutralizing treatment 1min of 18:1 according to mass ratio, put into stirrer and stir 30s, then stirrer is opened, add electrolysis yellow phosphorus furnace slag to continue to stir 60s, obtain mixture, after again mixture being dried to free-water≤1%, put into ball mill grinding 45min, being milled to specific surface area is 280m 2/ kg; Mixture after ball milling is carried out ageing after the temperature lower calcination 3.5h of 150 DEG C, and digestion time is 30h; Material after ageing is put into vibrating forming machine, shaping according to required shaped vibration; After the material natural curing 8d of vibratory compaction, carry out steam press maintenance, adopt heat-up rate to be 20 DEG C/h, control temperature is 150 DEG C, and pressure is 0.5MPa, and curing time is 5-8h; Take out the material through steam press maintenance, after naturally cooling cooling, namely obtain phosphogypsum base material; Phosphogypsum base material is put into drying machine, and control temperature is 60 DEG C and is dried to water content≤8%; Get ripe brown, raw brown, He Shi and add gasoline again after mixing, alkyd varnish carries out diluting the coating obtaining having pine wood grain color, is uniformly sprayed by this coating on phosphogypsum base material, spraying twice altogether, and coating thickness is 1.7mm; By the phosphogypsum base material sprayed, put into the kiln that temperature is 25 DEG C, namely obtain phosphogypsum base after dry 18h and imitate pine structural building material finished product.
Below in conjunction with specific experiment example, product effect of the present invention is described further
Carry out radio-activity testing according to GB6566-2001 " radioactive material radionuclides limitation " to the phosphogypsum base material prepared in the present invention, its test result is as shown in table 1:
Table 1 phosphogypsum base material radio-activity testing result
External Exposure Index: I ra=CRa/200
Outreach services: Ir=CRa/370+CTh/260+CK/4200
Standard specifies, the radioactive activity of Natural Radionuclides of Building Materials radium-226, thorium-232, kalium-40 meets I simultaneously ra≤ 1.0 and Ir≤1.0, its production and marketing and use range unrestricted, the phosphogypsum base material in the present invention meets within the scope that GB allows.
Experimental example two
Test the phosphogypsum base material prepared by phosphogypsum, electrolysis yellow phosphorus furnace slag, unslaked lime, compare intensity and the water resistance of phosphogypsum base material, its result is as shown in table 2:
The performance of phosphogypsum base material prepared by the raw material of table 2 different-grain diameter
Numbering W/C Folding strength/MPa Ultimate compression strength/MPa Coefficient of softening Water-intake rate
1 0.25 3.5 15.6 0.67 0.18
2 0.26 3.9 17.4 0.75 0.17
3 0.26 4.1 17.5 0.78 0.16
4 0.27 3.7 18.3 0.71 0.17
5 0.28 3.4 20.9 0.83 0.16
As can be seen from Table 2 along with the reduction of the raw material particle size of phosphogypsum base material, each hardenite ultimate compression strength is significantly in increasing trend, illustrate that the size of feed particles affects the mechanical property of phosphogypsum base material significantly, the ultimate compression strength of No. 1 sample is 15.6MPa, and No. 5 samples under identical shaping and conservation system, the ultimate compression strength in the identical length of time exceeds 5.3MPa than No. 1 sample, and folding strength change is little, all fluctuate at about 3.7MPa, and contrast water-intake rate variation tendency, find water-intake rate only slight fluctuations about 17%, and not with the associating of raw material particle size Formation rule, and coefficient of softening is along with the reduction of raw material particle size is in ascendant trend slowly, therefore phosphogypsum base material is prepared by the raw material after ball-milling processing, ultimate compression strength has further lifting.
Experimental example three
Difference for the Feedstock treating mode preparing phosphogypsum base material does Effect on Mechanical Properties experiment, and its result is as shown in table 3:
The different Feedstock treating mode of table 3 is on the impact preparing phosphogypsum substrate performance
Processing mode W/C Folding strength/MPa Ultimate compression strength/MPa
Original state does not neutralize in advance 0.26 2.2 11.5
Ball milling does not neutralize in advance 0.29 2.6 14.9
Original state neutralizes 0.25 3.5 15.6
Limestone vegetation adds ball milling 0.28 4.2 20.9
Compare known to above-mentioned Different treatments gained intensity results, original state does not neutralize in advance compared with original state neutralizing treatment, that ultimate compression strength or folding strength the latter are apparently higher than the former, ball milling in advance neutralization and limestone vegetation add ball milling and can both improve its mechanical property significantly, and raw material coordinates ball milling to be improve its mechanical property best mode by limestone vegetation process again.
Experimental example four
The formula chosen in the present invention calcines 4h respectively at different temperatures, ageing, and after shaping again after steam press maintenance, test its physical and mechanical property, its result as shown in Figure 2 and Figure 3.
As can be seen from Fig. 2, Fig. 3, along with calcining temperature be increased to 150 DEG C time, its intensity and coefficient of softening in rising trend, illustrate when calcining temperature is 150 DEG C, its over-all properties is better, can ensure that conversion product major part can ensure again conversion rate faster for semi-hydrated gypsum, and as can be seen from the figure calcining temperature because of better lower than 180 DEG C.
In sum, phosphogypsum base of the present invention is imitated pine structural building material indices and is all reached criterion of acceptability and be much better than criterion of acceptability, is a kind of excellent material of construction.

Claims (10)

1. a pine structural building material imitated by phosphogypsum base, it is characterized in that: it is made up of following raw material: phosphogypsum 90-180 part, electrolysis yellow phosphorus furnace slag 70-110 part, unslaked lime 5-10 part.
2. pine structural building material imitated by phosphogypsum base according to claim 1, it is characterized in that: described phosphogypsum base is imitated pine structural building material and is made up of following raw material: phosphogypsum 110-160 part, electrolysis yellow phosphorus furnace slag 80-100 part, unslaked lime part 6-9.
3. pine structural building material imitated by phosphogypsum base according to claim 1, it is characterized in that: described phosphogypsum base is imitated pine structural building material and is made up of following raw material: phosphogypsum 135 parts, electrolysis yellow phosphorus furnace slag 90 parts, unslaked lime 7.5 parts.
4. imitate pine structural building material according to the arbitrary described phosphogypsum base of claim 1-3, it is characterized in that: described phosphogypsum base to be imitated in pine structural building material also containing by ripe brown 18 parts, raw brown 18 parts, the coating with pine wood grain color that forms of He Shi 15 parts, 18 parts, gasoline, alkyd varnish 19 parts.
5. imitate pine structural building material according to the arbitrary described phosphogypsum base of claim 1-3, it is characterized in that: CaSO in described phosphogypsum 42H 2o content>=93%.
6. imitate pine structural building material according to the arbitrary described phosphogypsum base of claim 1-3, it is characterized in that: P in described phosphogypsum 2o 5content≤1%.
7. a preparation method for pine structural building material imitated by the phosphogypsum base as described in as arbitrary in claim 1-3, it is characterized in that: the method comprises the following steps:
(1) prepare burden: get after phosphogypsum and unslaked lime is the ratio neutralizing treatment 1min of 18:1 according to mass ratio, put into stirrer and stir 30s, then stirrer is opened, add electrolysis yellow phosphorus furnace slag to continue to stir 60s, obtain mixture, after again mixture being dried to free-water≤1%, put into ball mill grinding 40-50min;
(2) ageing: the mixture in step (1) after ball milling is carried out ageing after the temperature lower calcination 3-4h of 140-160 DEG C, digestion time is 24-36h;
(3) shaping: the material after ageing is put into vibrating forming machine, shaping according to required shaped vibration;
(4) steam press maintenance: after the material natural curing 7-9d of vibratory compaction, carry out steam press maintenance, adopt heat-up rate to be 20 DEG C/h, control temperature is 120-180 DEG C, and pressure is 0.2-0.8MPa, and curing time is 5-8h;
(5) phosphogypsum base material: take out the material through steam press maintenance, namely obtains phosphogypsum base material after naturally cooling cooling;
(6) dry: phosphogypsum base material to be put into drying machine and is dried to water content≤8%;
(7) spray: get the coating with pine wood grain color, uniformly spray on phosphogypsum base material, altogether spraying twice;
(8) finished product: by the phosphogypsum base material sprayed, puts into the kiln that temperature is 25 DEG C, namely obtains phosphogypsum base and imitate pine structural building material finished product after dry 12-24h.
8. the preparation method of pine structural building material imitated by phosphogypsum base according to claim 6, it is characterized in that: it is 275-280m2/kg that described mixture is milled to specific surface area.
9. the preparation method of pine structural building material imitated by phosphogypsum base according to claim 6, it is characterized in that: the temperature in described drying process controls as 50-70 DEG C.
10. the preparation method of pine structural building material imitated by phosphogypsum base according to claim 6, it is characterized in that: the coating thickness of described coating is 0.2-3.2mm.
CN201510104479.8A 2015-02-04 2015-03-10 Ardealite-based imitation pinewood structure building material and preparation method thereof Pending CN104725011A (en)

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FR2729657A1 (en) * 1995-01-25 1996-07-26 Francois Jose Hydraulic binder esp. for road construction and radioactive or toxic waste confinement
CN1566186A (en) * 2003-07-06 2005-01-19 任兆磊 Simulated wood materials and method for producing the same
CN101219881A (en) * 2007-01-08 2008-07-16 任兆磊 Phosphogypsum composite material
CN101492275A (en) * 2009-03-06 2009-07-29 瓮福(集团)有限责任公司 Method for producing high-admixture water resistant phosphogypsum product
CN103626462A (en) * 2013-11-01 2014-03-12 贵州开磷(集团)有限责任公司 Autoclaved yellow phosphorus slag pavement brick and making method thereof

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2729657A1 (en) * 1995-01-25 1996-07-26 Francois Jose Hydraulic binder esp. for road construction and radioactive or toxic waste confinement
CN1566186A (en) * 2003-07-06 2005-01-19 任兆磊 Simulated wood materials and method for producing the same
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