CN211260824U - System for sludge and hazardous waste co-dispose - Google Patents

System for sludge and hazardous waste co-dispose Download PDF

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CN211260824U
CN211260824U CN201921889076.9U CN201921889076U CN211260824U CN 211260824 U CN211260824 U CN 211260824U CN 201921889076 U CN201921889076 U CN 201921889076U CN 211260824 U CN211260824 U CN 211260824U
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inlet
sludge
outlet
flue gas
incineration
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唐续龙
石姗姗
姚建明
李兴杰
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China ENFI Engrinering Corp
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China ENFI Engrinering Corp
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Abstract

The utility model discloses a system that mud and hazardous waste dispose in coordination, include: sludge drying device, rotary kiln burns burning furnace, second combustion chamber and waste heat recovery device, sludge drying device has wet sludge inlet and dry sludge outlet, rotary kiln burns burning furnace and has dry sludge inlet, hazardous waste entry, the inlet of once wind, burn sediment export and burning gas outlet, second combustion chamber has and burns the gas inlet, overgrate air inlet and burning gas outlet, second combustion chamber burns the gas inlet and burns the gas outlet with the rotary kiln and links to each other, waste heat recovery device has boiler feedwater entry, burning gas inlet, low pressure steam outlet and heat transfer gas outlet, boiler burning gas inlet links to each other with second combustion chamber burning gas outlet, low pressure steam outlet links to each other with drying device. By adopting the system, the sludge and the hazardous waste can be simultaneously treated, the heat value of the rotary kiln incinerator in the incineration process is reduced, the phenomenon of overheating in the incinerator is avoided, and the purpose of treating waste by waste is realized.

Description

System for sludge and hazardous waste co-dispose
Technical Field
The utility model belongs to the technical field of solid useless utilization, concretely relates to system that mud and hazardous waste dealt with in coordination.
Background
Along with the rapid development of social economy and urbanization, the discharge amount and the treatment amount of municipal sewage in cities are continuously increased, and a large amount of sludge generated by municipal sewage treatment brings new challenges to the environmental management of the cities. Municipal sludge contains a large amount of various impurities such as bacteria, viruses, worm eggs, heavy metals and the like, and can be discharged after the municipal sludge is treated to reach the standard. The common harmless treatment technologies in the prior art include a pyrohydrolysis-anaerobic digestion treatment technology, a drying-direct incineration technology, a drying-garbage incinerator co-combustion technology and the like. The thermal hydrolysis-anaerobic digestion treatment technology has extremely high energy consumption and large investment, additional fuel needs to be supplemented, the disposal cost is high, and the product direction is also a difficult problem; the drying-direct incineration technology has high energy consumption and high disposal cost; although the drying-garbage incinerator co-combustion technology can utilize the excess heat energy of a garbage power plant, the co-combustion of sludge brings many adverse factors to an incineration system, such as the increase of fly ash amount, the blockage of a boiler superheater and the like, and the domestic garbage treatment capacity of the incineration system is reduced.
Hazardous waste refers to waste that is toxic, flammable, explosive, corrosive, chemically reactive, and/or infectious, and poses a serious hazard to the ecological environment and human health, and is currently disposed of primarily by landfill or incineration processes. With the development of domestic technology and economy, the heat value range of the incineration raw materials is increased at present, the average heat value is increased from 3000kcal/kg to 4000-4500 kcal/kg, and even the heat value of part of the raw materials exceeds 5000 kcal/kg. The domestic hazardous waste incineration mostly adopts a rotary kiln downstream technology, the adaptable calorific value range of the technology is about 3500kcal/kg, after the calorific value range exceeds the calorific value range, the incineration system is seriously overheated, the incineration slag is melted and bonded, and the normal production is influenced. The system of burning of new design prevents the system overheated through blowing into surplus air, can lead to whole flue gas volume to increase like this on the one hand, and investment and treatment cost increase, and on the other hand is too high because of oxygen content in the flue gas, and dioxin and nitrogen oxide in the flue gas also can correspondingly improve, have increased the processing degree of difficulty.
Therefore, how to effectively treat the sludge and the hazardous waste needs to be solved urgently.
SUMMERY OF THE UTILITY MODEL
The present invention aims at solving at least one of the technical problems in the related art to a certain extent. Therefore, an object of the utility model is to provide a system that mud and hazardous waste dealt with in coordination, adopt this system can handle mud and hazardous waste simultaneously to reduced the rotary kiln and burnt burning furnace incineration income stove calorific value, avoided the interior overheat phenomenon of stove, realized the purpose of treating waste with useless, accord with the attack and customs development direction of national environmental protection technology, had good market perspective.
In one aspect of the present invention, the present invention provides a system for disposing sludge and hazardous waste in coordination. According to the utility model discloses an embodiment, the system includes:
a drying device having a wet sludge inlet and a dry sludge outlet;
the rotary kiln incinerator is provided with a dry sludge inlet, a hazardous waste inlet, a primary air inlet, an incineration residue outlet and an incineration flue gas outlet, and the dry sludge inlet is connected with the dry sludge outlet;
the secondary combustion chamber is provided with an incineration flue gas inlet, a secondary air inlet and a combustion flue gas outlet, and the incineration flue gas inlet is connected with the incineration flue gas outlet;
the waste heat recovery device is provided with a condensate water inlet, a combustion flue gas inlet, a low-pressure steam outlet and a heat exchange flue gas outlet, the combustion flue gas inlet is connected with the combustion flue gas outlet, and the low-pressure steam outlet is connected with the drying device.
According to the system for sludge and hazardous waste cooperative disposal provided by the embodiment of the utility model, sludge is dried and then is supplied to the rotary kiln incinerator together with the hazardous waste with high calorific value for incineration, on one hand, the heat value of the incinerator can be obviously reduced, and the overheating phenomenon in the incinerator is avoided, so that the effective treatment of the hazardous waste can be realized on the basis of not needing to replace equipment, on the other hand, sludge and hazardous waste are effectively treated simultaneously, the purpose of treating waste by waste is realized, the system accords with the attack and development direction of the national environmental protection technology, has good market application prospect, then incineration flue gas generated in the incineration process is supplied to a secondary combustion chamber for secondary combustion, dioxin and organic matters in the flue gas are further combusted and decomposed, the incineration flue gas is supplied to a waste heat recovery device for heat exchange, and low-pressure steam obtained after heat exchange is returned to a drying medium in the left and right sludge drying processes, thereby reducing the water content in the sludge and improving the heat value of the sludge. Therefore, the system can simultaneously treat the sludge and the hazardous waste and realize the reduction and harmless treatment of the waste.
In addition, the system for the cooperative disposal of sludge and hazardous waste according to the above embodiment of the present invention may further have the following additional technical features:
preferably, the system for the co-disposal of the sludge and the hazardous waste further comprises: the melting device is provided with an incineration residue inlet, a calcium additive inlet and a harmless residue outlet, and the incineration residue inlet is connected with the incineration residue outlet through a scraper plate. Thereby, the harmless treatment of the waste is realized.
Preferably, the system for the co-disposal of the sludge and the hazardous waste further comprises: the purification device is provided with a heat exchange smoke inlet and a purification smoke outlet, and the heat exchange smoke inlet is connected with the heat exchange smoke outlet. Therefore, the standard emission of the flue gas is realized.
Preferably, purifier includes deacidification device, active carbon adsorption equipment and denitrification facility that links to each other in proper order. Therefore, the standard emission of the flue gas is realized.
Preferably, the drying device is a horizontal disc dryer, a paddle dryer or a belt dryer. This improves the efficiency of sludge drying.
Additional aspects and advantages of the invention will be set forth in part in the description which follows and, in part, will be obvious from the description, or may be learned by practice of the invention.
Drawings
The above and/or additional aspects and advantages of the present invention will become apparent and readily appreciated from the following description of the embodiments, taken in conjunction with the accompanying drawings of which:
FIG. 1 is a schematic diagram of a system for co-processing sludge and hazardous waste according to an embodiment of the present invention;
FIG. 2 is a schematic diagram of a system for co-processing sludge and hazardous waste according to yet another embodiment of the present invention;
FIG. 3 is a schematic flow diagram of a method for co-disposing sludge and hazardous waste according to an embodiment of the present invention;
fig. 4 is a schematic flow chart of a method for implementing the cooperative disposal of sludge and hazardous waste by the system for the cooperative disposal of sludge and hazardous waste according to still another embodiment of the present invention.
Detailed Description
Reference will now be made in detail to embodiments of the present invention, examples of which are illustrated in the accompanying drawings, wherein like reference numerals refer to the same or similar elements or elements having the same or similar function throughout. The embodiments described below with reference to the drawings are exemplary and intended to be used for explaining the present invention, and should not be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", and the like, indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for convenience of description and simplicity of description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
In the present invention, unless otherwise expressly stated or limited, the terms "mounted," "connected," and "fixed" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally formed; can be mechanically or electrically connected; they may be directly connected or indirectly connected through intervening media, or they may be connected internally or in any other suitable relationship, unless expressly stated otherwise. The specific meaning of the above terms in the present invention can be understood according to specific situations by those skilled in the art.
In the present application, unless expressly stated or limited otherwise, the first feature may be directly on or directly under the second feature or indirectly via intermediate members. Also, a first feature "on," "over," and "above" a second feature may be directly or diagonally above the second feature, or may simply indicate that the first feature is at a higher level than the second feature. A first feature being "under," "below," and "beneath" a second feature may be directly under or obliquely under the first feature, or may simply mean that the first feature is at a lesser elevation than the second feature.
In one aspect of the present invention, the present invention provides a system for disposing sludge and hazardous waste in coordination. According to an embodiment of the present invention, referring to fig. 1-2, the system comprises: a drying device 100, a rotary kiln incinerator 200, a secondary combustion chamber 300 and a waste heat recovery device 400.
According to an embodiment of the present invention, the drying device 100 has a wet sludge inlet 101 and a dry sludge outlet 102, and is adapted to dry wet sludge, resulting in dry sludge. Specifically, the wet sludge is municipal sludge and/or low-calorific-value oil sludge and/or chemical sludge and/or sludge after sewage treatment and the like, the wet basis of the wet sludge basically has no calorific value due to high water content, the water content of the wet basis is reduced to not higher than 45% after drying, the calorific value of the dry sludge can reach 1350Kcal/kg, and the dry sludge still cannot be incinerated for self-heating. Preferably, the drying device can be a horizontal disc dryer, a paddle type dryer or a belt type dryer, and the drying medium is low-pressure steam, the temperature of the low-pressure steam is 150-200 ℃, and the pressure of the low-pressure steam is 0.4-0.8 Mpa, so that the drying efficiency of the sludge is improved.
According to the embodiment of the utility model, rotary kiln incinerator 200 has dry sludge inlet 201, hazardous waste entry 202, a wind entry 203, burn sediment export 204 and burn flue gas outlet 205, dry sludge inlet 201 links to each other with dry sludge outlet 102, and be suitable for supplying to rotary kiln incinerator with the dry sludge that the aforesaid obtained and mix burning with hazardous waste, mud and hazardous waste experience dry dehydration, pyrolysis and burning stage in the rotary kiln, wherein the organic matter in mud and the hazardous waste is most changed into CO2And H2O, CO and CH with small part decomposed into small molecules4And the like, and part of organic matters are not sufficiently combusted to generate dioxin, while inorganic matters in the sludge and hazardous wastes are changed into kiln slag, so that incineration slag containing heavy metals and incineration flue gas containing dioxin, small molecular organic matters, carbon dioxide, carbon monoxide, methane, water and the like are obtained. The inventor finds that after the sludge is dried, the sludge and the high-heat-value dangerous waste are supplied to the rotary kiln incinerator together for incineration, on one hand, the heat value of the incinerator entering the incinerator can be obviously reduced, and the overheating phenomenon in the incinerator is avoided, so that the effective treatment of the dangerous waste can be realized on the basis of not needing to replace equipment, on the other hand, the sludge and the dangerous waste are effectively treated, the purpose of treating the waste by the waste is realized, the national environmental protection technology attack development direction is met, and the rotary kiln incinerator has a good market application prospect. Specifically, the rotary kiln incinerator can be concurrent incineration or countercurrent incineration, and the average calorific value of the treated hazardous waste is not less than 4000kcal/kg, and can be HW02 (medical waste), HW04 (pesticide waste), HW08 (waste mineral oil), HW11 (distillation residue), HW13 (organic resin waste) and the like, thereby mixing the dry sludge, not only realizing the incineration of the sludge, but also ensuring that the heat value of the mixed waste is not higher than the range of the heat value born in the rotary kiln incinerator and avoiding the melting and adhesion of the incineration slag in the incinerator.
Further, the mass ratio of the dry sludge to the hazardous waste is 0.05-0.3. The inventor finds that the mixing ratio of the sludge and the hazardous wastes is too low, and the effect of reducing the incineration temperature is not obvious; and dry sludge and hazardous waste mix proportion are too high, can show the burning operating mode of influence, can maintain this burning temperature at the mixing proportion within range of this application from this and be between 850 ~ 1000 ℃, have both avoided burning incompletely, also prevent that the interior high temperature of stove from producing the bonding.
According to the embodiment of the utility model, the second combustion chamber 300 has incineration flue gas entry 301, overgrate air entry 302 and burning exhanst gas outlet 303, and incineration flue gas entry 301 links to each other with incineration flue gas outlet 205, and is suitable for carrying out the postcombustion with the incineration flue gas that contains dioxin and micromolecule organic matter and carbon dioxide, carbon monoxide, methane and water etc. that the aforesaid obtained for further burning such as dioxin and micromolecule organic matter decomposes, obtains the burning flue gas. Specifically, the temperature of the secondary combustion is 1100-1200 ℃.
According to the utility model discloses an embodiment, waste heat recovery device 400 has comdenstion water entry 401, burning flue gas entry 402, low pressure steam outlet 403 and heat transfer exhanst gas outlet 404, and burning flue gas entry 402 links to each other with burning exhanst gas outlet 303, and low pressure steam outlet 403 links to each other with drying device 100, and is suitable for to carry out the heat transfer with the burning flue gas that the aforesaid obtained and comdenstion water, obtains low pressure steam and heat transfer flue gas to return low pressure steam to drying device 100 in as drying medium and use. From this, not only realized the make full use of burning flue gas waste heat, supplied with the low pressure steam that obtains after the heat transfer to drying device in addition and dried mud, reduced drying device and relied on to the external world. Specifically, the temperature of the low-pressure steam is 150-200 ℃, and the pressure is 0.4-0.8 Mpa.
According to the system for sludge and hazardous waste cooperative disposal provided by the embodiment of the utility model, sludge is dried and then is supplied to the rotary kiln incinerator together with the hazardous waste with high calorific value for incineration, on one hand, the heat value of the incinerator can be obviously reduced, and the overheating phenomenon in the incinerator is avoided, so that the effective treatment of the hazardous waste can be realized on the basis of not needing to replace equipment, on the other hand, sludge and hazardous waste are effectively treated simultaneously, the purpose of treating waste by waste is realized, the system accords with the attack and development direction of the national environmental protection technology, has good market application prospect, then incineration flue gas generated in the incineration process is supplied to a secondary combustion chamber for secondary combustion, dioxin and organic matters in the flue gas are further combusted and decomposed, the incineration flue gas is supplied to a waste heat recovery device for heat exchange, and low-pressure steam obtained after heat exchange is returned to a drying medium in the left and right sludge drying processes, thereby reducing the water content in the sludge and improving the heat value of the sludge. Therefore, the system can simultaneously treat the sludge and the hazardous waste and realize the reduction and harmless treatment of the waste.
Further, referring to fig. 2, the system for the cooperative disposal of the sludge and the hazardous waste further includes: a melting apparatus 500 and a purification apparatus 600.
According to the embodiment of the utility model, melting device 500 has incineration slag entry 501, calcium system additive entry 502 and harmless sediment export 503, incineration slag entry 501 links to each other through scraper blade (not shown) with incineration slag export 204, and be suitable for the incineration slag that obtains above-mentioned and calcium system additive mix and carry out melting process, wherein, calcium system additive is heated up to more than 1150 ℃ under the electric heat condition, alkaline metal oxide such as Ca, Mg, Na among the calcium system additive produces slagging reaction with acid oxide such as Si in the incineration slag, Al, form low melting point liquid slag, heavy metal element is solidified in the Si-O tetrahedron structure in the slag, realized the innocent treatment of sediment. Specifically, the calcium additive is steelmaking converter slag, limestone and the like. The melting treatment temperature is 1120 +/-50 ℃, the use amounts of the incineration slag and the calcium additives are controlled according to the condition that the alkalinity in the harmless slag is controlled to be 0.6-0.8 (namely the mass sum of the alkaline oxides is divided by the mass sum of the acidic oxides), and the inventor finds that if the alkalinity is too high, the viscosity of the harmless slag is low, crystals are easily separated out in the water crushing process, and the leaching toxicity is possibly out of standard; if the alkalinity is too low, the viscosity of the harmless slag is too high, the discharge is not facilitated, and the glass fiber can come out in the water-crushing process, so that the subsequent recycling effect is reduced. Therefore, the alkalinity in the harmless slag is controlled to be 0.6-0.8, so that the resource utilization of waste can be realized, and the toxic standard exceeding of the harmless slag in the water quenching process can be avoided.
According to the utility model discloses an embodiment, purifier 600 has heat transfer flue gas entry 601 and purification exhanst gas outlet 602, and heat transfer flue gas entry 601 links to each other with heat transfer exhanst gas outlet 404, and is suitable for the heat transfer flue gas that obtains to the aforesaid to carry out purification treatment for purify flue gas emission up to standard. Specifically, purifier includes consecutive deacidification device, active carbon adsorption device and denitrification facility, and it needs to explain that deacidification device, active carbon adsorption device and denitrification facility are the routine operation in this field, and the skilled person in this field can select according to actual need, and this is no longer repeated here.
For ease of understanding, the method of implementing the above system for co-disposal of sludge and hazardous waste is described in detail below with reference to fig. 3-4. According to the utility model discloses an embodiment, this method includes:
s100: the wet sludge is supplied to a drying device for drying treatment
In this step, the wet sludge is supplied to a drying apparatus and dried to obtain dry sludge. Specifically, the wet sludge is municipal sludge and/or low-calorific-value oil sludge and/or chemical sludge and/or sludge after sewage treatment and the like, the wet basis of the wet sludge basically has no calorific value due to high water content, the water content of the wet basis is reduced to not higher than 45% after drying, the calorific value of the dry sludge can reach 1350Kcal/kg, and the dry sludge still cannot be incinerated for self-heating. Preferably, the drying device can be a horizontal disc dryer, a paddle type dryer or a belt type dryer, and the drying medium is low-pressure steam, the temperature of the low-pressure steam is 150-200 ℃, and the pressure of the low-pressure steam is 0.4-0.8 Mpa, so that the drying efficiency of the sludge is improved.
S200: dry sludge and dangerous waste are supplied to a rotary kiln incinerator to be mixed with primary air for incineration
In this step, the obtained dry sludge is suppliedMixing the sludge and the hazardous waste with primary air and burning the mixture in a rotary kiln incinerator, and subjecting the sludge and the hazardous waste to drying dehydration, pyrolysis and combustion stages in a rotary kiln, wherein most of organic matters in the sludge and the hazardous waste are converted into CO2And H2O, CO and CH with small part decomposed into small molecules4And the like, and part of organic matters are not sufficiently combusted to generate dioxin, while inorganic matters in the sludge and hazardous wastes are changed into kiln slag, so that incineration slag containing heavy metals and incineration flue gas containing dioxin, small molecular organic matters, carbon dioxide, carbon monoxide, methane, water and the like are obtained. The inventor finds that after the sludge is dried, the sludge and the high-heat-value dangerous waste are supplied to the rotary kiln incinerator together for incineration, on one hand, the heat value of the incinerator entering the incinerator can be obviously reduced, and the overheating phenomenon in the incinerator is avoided, so that the effective treatment of the dangerous waste can be realized on the basis of not needing to replace equipment, on the other hand, the sludge and the dangerous waste are effectively treated, the purpose of treating the waste by the waste is realized, the national environmental protection technology attack development direction is met, and the rotary kiln incinerator has a good market application prospect. Specifically, the rotary kiln incinerator can be concurrent incineration or countercurrent incineration, and the average calorific value of the treated hazardous waste is not lower than 4000Kcal/kg, and for example, the hazardous waste can be HW02 (medical waste), HW04 (pesticide waste), HW08 (waste mineral oil), HW11 (distillation residue), HW13 (organic resin waste) and the like, so that the hazardous waste is mixed with dry sludge, not only is the sludge incineration realized, but also the calorific value of the mixed hazardous waste is not higher than the range of the calorific value born in the rotary kiln incinerator, and the melting adhesion of the incineration slag in the incinerator is avoided.
Further, the mass ratio of the dry sludge to the hazardous waste is 0.05-0.3. The inventor finds that the mixing ratio of the sludge and the hazardous wastes is too low, and the effect of reducing the incineration temperature is not obvious; and dry sludge and hazardous waste mix proportion are too high, can show the burning operating mode of influence, can maintain this burning temperature at the mixing proportion within range of this application from this and be between 850 ~ 1000 ℃, have both avoided burning incompletely, also prevent that the interior high temperature of stove from producing the bonding.
S300: supplying the incineration flue gas to a secondary combustion chamber and carrying out secondary combustion with secondary air
In the step, the obtained incineration flue gas containing the dioxin and the small molecular organic matters is subjected to secondary combustion, so that the dioxin, the small molecular organic matters, carbon dioxide, carbon monoxide, methane, water and the like are further combusted and decomposed, and combustion flue gas is obtained. Specifically, the temperature of the secondary combustion is 1100-1200 ℃.
S400: supplying the combustion flue gas to a waste heat recovery device for heat exchange with condensed water, and returning the low-pressure steam to the step S100
In this step, the obtained combustion flue gas is supplied to a waste heat recovery device to exchange heat with condensed water, so as to obtain low-pressure steam and heat exchange flue gas, and the low-pressure steam is returned to the drying device 100 to be used as a drying medium. From this, not only realized the make full use of burning flue gas waste heat, supplied with the low pressure steam that obtains after the heat transfer to drying device in addition and dried mud, reduced drying device and relied on to the external world. Specifically, the temperature of the low-pressure steam is 150-200 ℃, and the pressure is 0.4-0.8 Mpa.
According to the method for sludge and hazardous waste cooperative disposal provided by the embodiment of the utility model, sludge is dried and then is supplied to the rotary kiln incinerator together with the hazardous waste with high calorific value for incineration, on one hand, the heat value of the incinerator can be obviously reduced, and the overheating phenomenon in the incinerator is avoided, so that the effective treatment of the hazardous waste can be realized on the basis of not needing to replace equipment, on the other hand, sludge and hazardous waste are effectively treated simultaneously, the purpose of treating waste by waste is realized, the method accords with the attack and development direction of the national environmental protection technology, has good market application prospect, then incineration flue gas generated in the incineration process is supplied to a secondary combustion chamber for secondary combustion, dioxin and organic matters in the flue gas are further combusted and decomposed, the incineration flue gas is supplied to a waste heat recovery device for heat exchange, and low-pressure steam obtained after heat exchange is returned to a drying medium in the left and right sludge drying processes, thereby reducing the water content in the sludge and improving the heat value of the sludge. Therefore, the method can simultaneously treat the sludge and the hazardous waste and realize the reduction and harmless treatment of the waste.
Further, referring to fig. 4, the method for the cooperative disposal of the sludge and the hazardous waste further includes:
s500: the incineration slag obtained in the step S200 is supplied to a melting device and is melted with a calcium additive
In this step, the incineration slag obtained in the step S200 is supplied to a melting device and mixed with a calcium additive to be melted, the temperature of the calcium additive is raised to 1150 ℃ or higher under an electrothermal condition, alkaline metal oxides such as Ca, Mg, Na in the calcium additive and acidic oxides such as Si, Al in the incineration slag generate a slagging reaction to form low-melting-point liquid slag, and heavy metal elements are solidified in a Si — O tetrahedral structure in the slag, thereby realizing harmless treatment of the slag. Specifically, the calcium additives are steelmaking converter slag, limestone and the like, the melting treatment temperature is 1120 +/-50 ℃, the use amounts of the incineration slag and the calcium additives are controlled according to the condition that the alkalinity in harmless slag is controlled to be 0.6-0.8 (namely the mass sum of alkaline oxides is divided by the mass sum of acidic oxides), and the inventor finds that if the alkalinity is too high, the viscosity of the harmless slag is low, crystals are easily separated out in the water crushing process, and the leaching toxicity is possibly over-standard; if the alkalinity is too low, the viscosity of the harmless slag is too high, the discharge is not facilitated, and the glass fiber can come out in the water-crushing process, so that the subsequent recycling effect is reduced. Therefore, the alkalinity in the harmless slag is controlled to be 0.6-0.8, so that the resource utilization of waste can be realized, and the toxic standard exceeding of the harmless slag in the water quenching process can be avoided.
S600: the heat exchange flue gas obtained in the step S400 is supplied to a purification device for purification treatment
In this step, the heat exchange flue gas obtained in the step S400 is supplied to a purification device for purification treatment, so that the purified flue gas reaches the emission standard. Specifically, purifier includes consecutive deacidification device, active carbon adsorption device and denitrification facility, and it needs to explain that deacidification device, active carbon adsorption device and denitrification facility are the routine operation in this field, and the skilled person in this field can select according to actual need, and this is no longer repeated here.
In the description herein, references to the description of the term "one embodiment," "some embodiments," "an example," "a specific example," or "some examples," etc., mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the invention. In this specification, the schematic representations of the terms used above are not necessarily intended to refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples. Furthermore, various embodiments or examples and features of different embodiments or examples described in this specification can be combined and combined by one skilled in the art without contradiction.
Although embodiments of the present invention have been shown and described, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention, and that variations, modifications, substitutions and alterations can be made to the above embodiments by those of ordinary skill in the art without departing from the scope of the present invention.

Claims (5)

1. A system for co-disposal of sludge and hazardous waste, comprising:
the drying device adopts incineration low-pressure boiler steam as a heat source and is provided with a wet sludge inlet and a dry sludge outlet;
the rotary kiln incinerator is provided with a dry sludge inlet, a hazardous waste inlet, a primary air inlet, an incineration residue outlet and an incineration flue gas outlet, and the dry sludge inlet is connected with the dry sludge outlet;
the secondary combustion chamber is provided with an incineration flue gas inlet, a secondary air inlet and a combustion flue gas outlet, and the incineration flue gas inlet is connected with the incineration flue gas outlet;
the waste heat recovery device is provided with a condensate water inlet, a combustion flue gas inlet, a low-pressure steam outlet and a heat exchange flue gas outlet, the combustion flue gas inlet is connected with the combustion flue gas outlet, and the low-pressure steam outlet is connected with the drying device.
2. The system of claim 1, further comprising:
the melting device is provided with an incineration residue inlet, a calcium additive inlet and a harmless residue outlet, and the incineration residue inlet is connected with the incineration residue outlet through a scraper plate.
3. The system of claim 1 or 2, further comprising:
the purification device is provided with a heat exchange smoke inlet and a purification smoke outlet, and the heat exchange smoke inlet is connected with the heat exchange smoke outlet.
4. The system of claim 3, wherein the purification device comprises a deacidification device, an activated carbon adsorption device and a denitration device which are connected in sequence.
5. The system of claim 1, wherein the drying device is a horizontal disc dryer, a paddle dryer, or a belt dryer.
CN201921889076.9U 2019-11-04 2019-11-04 System for sludge and hazardous waste co-dispose Active CN211260824U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117534291A (en) * 2023-11-20 2024-02-09 浙江省环保集团北仑尚科环保科技有限公司 A constant temperature equipment for melting sediment handles mud

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117534291A (en) * 2023-11-20 2024-02-09 浙江省环保集团北仑尚科环保科技有限公司 A constant temperature equipment for melting sediment handles mud

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