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190results about How to "Reduce fluorine content" patented technology

Process and apparatus for treating a substrate

To produce a desirable amount of desirable radical and / or ion in treating a substrate such as etching the substrate, depositing a thin film on the substrate and the like by using plasma and the like. As a treating gas, a gas such as CFmIn and the like containing both a strongly bonded halogen element (F etc.) and weakly bonded halogen element (I etc.) is used. A substrate is treated by active species produced by exciting the treating gas by an excitation means capable of providing an energy which cannot dissociate the strong bond but can dissociate the weak bond. Preferable excitation means is capable of emitting a monochromatic irradiation, having a single value of excitation energy, such as electron beam, light etc., or otherwise capable of providing plasma, having a peak energy value of electrons and sharp electron energy distribution, such as UHF plasma etc.
Owner:NEC CORP

High-sodium low-fluorine continuous casting mould fluxes and preparation method thereof

InactiveCN101406939ASatisfy heat transfeFulfil requirementsHigh sodiumManganese
The invention relates to high-sodium low-fluorine covering slag, which is prepared from raw materials of wollastonite, limestone, quartz sand, fluorite, bauxite, manganese carbonate, magnesia, hydrous borax, industrial soda, lithium carbonate, and carbonaceous materials, and the chemical components of the covering slag meets the following weight percentage: more than 30 and less than 34 percent of CaO, more than 30 and less than 38 percent of SiO2, more than 12 and less than 25 percent of Na2O, less than 4 percent of MgO, less than 8 percent of MnO, less than 4 percent of B2O3, less than 1.5 percent of Li2O, less than 4 percent of Al2O3, less than 2 percent of F, more than 4 percent and less than 10 percent of C, and the balance being impurities. In the covering slag, the ratio of sigma CaO to the SiO2 is controlled to between 0.8 and 1.15 to ensure that the fused mass of the covering slag does not separate out crystals at high temperature and liquid slag in a slag film can lubricate a casting blank. Aiming at that the content of fluorine has adverse influence on environment and equipment, the invention adopts high-sodium low-fluorine continuous casting covering slag which not only can meet the requirement of coordinated control of heat transfer and lubrification of a continuous casting covering slag for crack sensitive steel to cast casting blank with good surface quality, but also can reduce the fluorine content in air and secondary cooling water, thus the air pollution is reduced and the corrosion of fluorine-contained water to equipment is reduced.
Owner:CHONGQING UNIV

Thermoplastic fluorinated polyurethane elastomer and preparation method thereof

InactiveCN103242505AExcellent surface and mechanicsThe preparation process is convenient and quickIsocyanatePerfluoropolyether
The invention discloses a thermoplastic fluorinated polyurethane elastomer and a preparation method thereof. The thermoplastic fluorinated polyurethane elastomer is composed of non-fluorinated macromolecular polyols, perfluor polyether glycol, a micromolecular chain extender and polyisocyanates; and the preparation method comprises the following steps of: adding perfluor polyether glycol and non-fluorinated macromolecular polyols into a container; after the obtained fluorinated composite resin is stirred for 10-20 minutes at a speed of 2000-3000 r / min, carrying out vacuum dehydration on the obtained fluorinated composite resin; sequentially adding polyisocyanates and the micromolecular chain extender into the obtained product; continuing to stir the obtained mixture for 3-5 minutes, and pouring the obtained mixture in a preheated die; and after the obtained mixture is subjected to curing forming for 2-4 hours at a controlled temperature of 15-30 DEG C, respectively carrying out vacuum curing on the obtained product for 1-2 hours at a temperature of 50-80 DEG C, carrying out vacuum curing on the obtained product for 1-2 hours at a temperature of 90-110 DEG C, and carrying out vacuum curing on the obtained product for 15-24 hours at a temperature of 120-140 DEG C, thereby obtaining the thermoplastic fluorinated polyurethane elastomer with a low fluoride content and excellent surface and mechanical properties.
Owner:SHANGHAI INSTITUTE OF TECHNOLOGY

Method for treating high-concentration acidic wastewater containing phosphorus and fluorine

The invention discloses a method for treating acidic wastewater containing phosphorus and fluorine, which comprises the following steps: (1) firstly, adding calcium hydroxide into the acidic wastewater containing phosphorus and fluorine, and controlling the pH value of the system at 12-14 to obtain a precipitate-containing reaction system which is marked as a reaction system 1; (2) removing the precipitate in the reaction system 1, adding sulfuric acid into the residual liquid to regulate the pH value to 9-11, and then, adding aluminum sulfate to regulate the pH value to 6-7, thereby obtaining a precipitate-containing reaction system 2; and (3) settling down the precipitate in the reaction system 2, and removing the precipitate to obtain the treated wastewater. In the wastewater treated by the method disclosed by the invention, the content of fluorine is lower than 10 mg / L, the content of phosphorus is lower than 0.5 mg / L, and the pH value is 6-7, thus the treated wastewater achieves the Discharge Standard of Water Pollutants for Phosphate Fertilizer Industry (GB 15580-95). In the whole technological process, water overflows under the action of the gravity without an external energy supply, thereby saving the energy.
Owner:湖北大峪口化工有限责任公司

Advanced treatment method of fluoride-containing wastewater

The invention discloses an advanced treatment method of fluoride-containing wastewater. The method comprises steps as follows: S1, precipitation: the fluoride-containing wastewater is collected and sent into an adjusting tank, calcium hydroxide slurry is added to the adjusting tank, the pH value of the adjusting tank is controlled to range from 4 to 6 after even mixing, and the mixture is left to stand for precipitation; S2, flocculation: the wastewater subjected to precipitation treatment is introduced into a reaction tank, a PAC and PAM combined flocculating agent is added, and the mixture is stirred and left to stand; S3, electrocoagulation: the wastewater subjected to flocculation treatment is introduced into an electrolytic bath, an electrolyte is added, electrocoagulation treatment is performed after energization, the mixture is left to stand, drained water enters a water outlet tank, a base is added, the pH is adjusted to range from 9 to 11, activated carbon powder is added, and the mixture is evenly stirred; S4, adsorption: the wastewater subjected to microfiltration treatment is introduced into an adsorption tank, the pH of the wastewater is adjusted to range from 4 to 6, a modification adsorbent is added, and the mixture is left to stand after being evenly mixed. With the adoption of the treatment technology, the content of fluoride in the wastewater is reduced to be lower than 1.0 mg/L, and the whole treatment technology is simple, mature, practical, economical and reasonable.
Owner:ANHUI JINYANG FLUORINE CHEM

Mineral separation method for recycling iron, rare earth, fluorite and niobium from iron tailings of associated multi-metal minerals

ActiveCN108480037ALess amount of reducing agentReduce the amount of fluorite flotationWet separationLower intensityHigh intensity
The invention relates to a mineral separation method for recycling iron, rare earth, fluorite and niobium from iron tailings of associated multi-metal minerals, and belongs to the fields of mineral process engineering and comprehensive recycling of resources. The mineral separation method for recycling iron, rare earth, fluorite and niobium from iron tailings of associated multi-metal minerals comprises the following steps: carrying out low intensity magnetic separation and high intensity magnetic separation pre-concentration by taking bayan obo tailings as raw materials, then carrying out fluid bed roasting on obtained pre-concentrated concentrates, and carrying out low intensity magnetic separation operation on roasted minerals obtained by roasting so as to obtain weak-magnetism concentrates and rare-earth-containing weak-magnetism tailings; and carrying out rare earth flotation operation on the weak-magnetism tailings to obtain rare earth flotation concentrates and rare earth flotation tailings finally, then carrying out acid leaching process on the rare earth flotation tailings to obtain niobium-enriched slag and acid pickling tailings, and meanwhile, carrying out fluorite flotation operation on pre-concentrated strong-magnetism tailings to obtain fluorite flotation concentrates and fluorite flotation tailings. By the method, fluorite concentrates, iron core concentrates, rare earth concentrates and the niobium-enriched slag are obtained finally, and thus, the bayan obo tailings are utilized comprehensively.
Owner:NORTHEASTERN UNIV

Fluorinated polyoxyalkylene glycol diester surfactants

A fluorinated polyoxyalkylene glycol diester surfactant of formula 1B—X—COCH2O—[—CpH2pO—]n—CH2CO—X—Ra   (1)whereinB is M or Ra,M is an ionizable hydrogen, ammonium, alkali metal, or alkaline earth metal,p is from about 2 to about 4,n is from about 5 to about 43,X is O, S, or SCH2CH2O,Ra is Rf(CH2CF2)d—(CgH2g)—; Rf[OCF2CF2]r(CgH2g)—;Rf(CH2)h[(CF2CF2)i(CH2CH2)j]k—; or RfOY—;Y is CFHCF2O(CH2CH2O)v—(CgH2g)—; CFHCF2O(CwH2w)—; orCF(CF3)CONH—(CgH2g)—;each Rf is independently CcF(2c+1) wherein c is 1 to about 6;d is 1 to about 3; g is 1 to about 4; s is 0 or 1; r is 1 to about 4; h is 1 to about 6; i, j, and k are each independently 1, 2, or 3, or a mixture thereof;provided that the total number of carbon atoms in Rf(CH2)h[(CF2CF2)i(CH2CH2)j]k—is from about 8 to about 22; v is 1 to about 4;and w is from about 2 to about 12.
Owner:EI DU PONT DE NEMOURS & CO

Wax-containing water-and-oil repellent agent and preparation method, textile

The invention provides a wax-containing water-and-oil repellent agent, preparation technology and application, wherein the wax-containing water-and-oil repellent agent comprises the following components in percentage by mass: fluoropolymer 20%-30%, (modified) polyethylene wax emulsion 3%-40%, surfactant 1-5%, hydrophilic solvent 4-20%, PH adjustment auxiliary agent 0.001-3% and water. The water-and-oil repellent agent provided by the invention has an excellent water-and-oil repelling effect, and an environmental protection property. In-situ polymerization technology is adopted in the invention; compared with prior art, the fluorine-containing material can play a better role of water-and-oil repelling, and the content of elemental fluorine in the decrease the water-and-oil repellent agent can be reduced.
Owner:福建省晋江新德美化工有限公司

Tower type air stripping defluorination method for phosphoric acid

ActiveCN104176719AReduce fluorine contentThe fluorine content is lower thanPhosphorus compoundsO-Phosphoric AcidPhysical chemistry
The invention discloses a tower type air stripping defluorination method for phosphoric acid. The method includes: firstly mixing the raw material fluorine-containing phosphoric acid, a defluorination agent and defluorinated phosphoric acid flowing out of the bottom of a defluorination tower to obtain low fluorine phosphoric acid, then heating the low fluorine phosphoric acid to 90-105DEG C, and leading it into the defluorination tower; spraying the low fluorine phosphoric acid in the tower through at least one layer of nozzles at the upper part inside the defluorination tower, introducing air from the lower part of the defluorination tower to make the low fluorine phosphoric acid and air fully contact to complete defluorination; discharging the fluorine-containing exhaust gas generated during defluorination from the top of the defluorination tower, mixing part or all of the defluorinated phosphoric acid generated at the bottom of a defluorination tower with the fluorine-containing phosphoric acid and the defluorination agent to obtain the low fluorine phosphoric acid to carry out defluorination circulation, and leading the other part of the defluorinated phosphoric acid out of the defluorination tower to obtain a finished phosphoric acid product. The process provided by the invention can reduce the fluorine content of phosphoric acid to a phosphorus-fluorine ratio (P2O5/F) of greater than or equal to 260, and compared with the prior art, the fluorine content of the phosphoric acid is significantly reduced.
Owner:SINOPEC NANJING ENG & CONSTR +1

Recovery method for front-section defluorination of waste lithium ion battery

The invention relates to a recovery method for front-section defluorination of a waste lithium ion battery and a defluorination treatment method for the recovery front-section of the waste lithium ionbattery. The defluorination treatment method comprises the following steps of mixing the fluorine-containing battery powder with a fluorine dissolving aid solution, heating, stirring and filtering toobtain the defluorinated battery powder and the fluorine-containing washing liquor; adding a lithium precipitation agent into the fluorine-containing washing liquid, heating, stirring and filtering to obtain the lithium-containing slag and the lithium-removed liquid; adding a fluorine removal agent into the lithium-removed solution, stirring and filtering to obtain the fluorine-containing slag and the fluorine-removed solution; and preparing the defluorinated solution into a fluorine-dissolving auxiliary solution, and repeating the steps. By adopting the method disclosed by the invention, thefluorine content of the waste lithium ion battery can be reduced to be less than 0.11% before the waste lithium ion battery enters a recovery process, the fluorine removal rate is up to 90%, a seriesof problems caused by fluorine in a battery recovery process can be favorably solved. The method has high cyclic utilization rate of a washing liquid, great reduces the use amount of water, saves thecost, and has the great application prospect.
Owner:HUNAN BRUNP RECYCLING TECH +2

Process of preparing filter material for reducing fluoride content and improving water quality

The present invention is process of preparing filter material for reducing fluoride content and improving water quality, and the filter material has the advantages of simple preparation process, simple use, low cost, high fluoride content reducing effect and other advantages. The process includes the following steps: sorting natural zeolite material and crushing to 5-8 mesh; high temperature roasting at 900-1000 deg.c for 3-4 hr; cooling and treating in 30 % concentration hydrochloric acid for 18-24 hr; washing and soaking in inorganic salt solution for 12-24 hr; flushing and soaking in sodium health solution for 10-30 hr; flushing and soaking in 1-5 % concentration alum solution for 10-16 hr to activate; acid-alkali balancing; drying and water maintaining treatment to obtain the product.
Owner:山东乾天工贸有限公司 +1

Systems and method for hazardous waste incineration

InactiveCN111006221AConforms to emptying standardsAvoid pollutionIncinerator apparatusCooling towerCombustion chamber
The invention provides a system and a method for hazardous waste incineration. The system comprises a feeding system, an incineration system, a cooling system and a flue gas treatment system which aresequentially arranged; the feeding system comprises an elevator and an SMP system which are arranged in sequence; the incineration system comprises a rotary kiln and a secondary combustion chamber which are sequentially communicated, and is used for sequentially pyrolyzing fed materials twice until the fed materials are completely pyrolyzed to obtain double-pyrolyzed flue gas; the cooling systemcomprises a cooling tower and is used for cooling the double-pyrolyzed flue gas to obtain cooled flue gas; the flue gas treatment system comprises a quench tower, a first-stage dry deacidification tower, a first-stage bag-type dust collector, a second-stage dry deacidification tower, a second-stage bag-type dust collector, a wet deacidification tower, a flue gas heater, a chimney and a first-stageactivated carbon spraying device which are connected in sequence, and further comprises a first-stage activated carbon spray device used for carrying out a series of treatments on the cooled flue gasand completely discharging the treated flue gas. The method uses the system to incinerate hazardous wastes. The system and the method can be used for incinerating hazardous wastes with high sulfur, chlorine and fluorine contents.
Owner:CECEP CLEAN TECH DEV CO LTD
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