US2016176726A1PendingUtilityA1

Method for purification of substances contaminated with organic chemicals

Assignee: UNIV OSAKAPriority: Dec 28, 2005Filed: Feb 29, 2016Published: Jun 23, 2016
Est. expiryDec 28, 2025(expired)· nominal 20-yr term from priority
A62D 2101/28C07B 63/04B09C 1/08C02F 2101/305A62D 3/176C02F 2101/345C02F 2101/36C07B 37/06A62D 2101/20C02F 2101/30A62D 2101/22C07D 319/24C02F 1/32A62D 2101/08C02F 2305/10Y02W10/37
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Claims

Abstract

The present invention provides a method for purifying organic chemical-containing contaminated substances by which various organic chemicals (contaminants) can be readily and sufficiently decomposed in a short time, the method comprising the steps of adding a metal salt and a transition metal ionic compound to water or soil that contains organic chemicals, decomposing the organic chemicals by irradiating with light, and separating/collecting the detoxified organic chemicals.

Claims

exact text as granted — not AI-modified
1 - 18 . (canceled) 
     
     
         19 . A method for purifying an aromatic compound-containing contaminated substance comprising:
 a first step of irradiating the aromatic compound-containing contaminated substance with light in the presence of (i) at least one water-soluble alkali metal compound and/or at least one water-soluble alkaline-earth metal compound selected from the group consisting of calcium compounds, magnesium compounds, potassium compounds, and sodium compounds, and (ii) iron compound, whereby the aromatic compound is polymerized, wherein iron becomes ions in an aqueous solution, and   a second step of collecting the polymerized aromatic compound that is generated in the first step.   
     
     
         20 . The method according to claim  1 , wherein the first step comprises the steps of:
 (1) a step of adding the compound (i), and the compound (ii); and   (2) a step of irradiating a mixture obtained in the first step with light.   
     
     
         21 . The method according to claim  1 , wherein the method further comprises a step of separating the polymerized aromatic compound between the first step and the second step. 
     
     
         22 . The method according to claim  1 , wherein at least one of the compounds (i) and (ii) is adhered to a carrier. 
     
     
         23 . The method according to claim  1 , wherein a compound comprising the compound (ii) adhered to the compound (i) is used as compounds (i) and (ii). 
     
     
         24 . The method according to claim  1 , wherein the compound (i) is dolomite. 
     
     
         25 . The method according to claim  1 , wherein the compound (i) is at least one member selected from the group consisting of dolomite, water-soluble compounds of hydroxides, inorganic-acid salts, organic acid salts and oxides of calcium, magnesium, potassium, and sodium. 
     
     
         26 . The method according to claim  1 , wherein the transition metal ionic compound is at least one compound selected from the group consisting of ferric chloride, iron nitrate, iron hydroxide, iron phosphate, iron ethylenediaminetetraacetate, and iron sulfate. 
     
     
         27 . The method according to claim  1 , wherein the aromatic compound is at least one member selected from the group consisting of a polychlorinated biphenyl (PCB), dioxin, o-chlorophenol, p-chlorophenol, 2,4-dichlorophenol, p-tert-butylphenol, 1-naphthol, 3,5-xylenol, carbendazim, 17[beta]-estradiol, and bisphenol A. 
     
     
         28 . The method according to claim  1 , wherein the light used for light irradiation is ultraviolet. 
     
     
         29 . The method according to claim  1 , wherein the aromatic compound-containing contaminated substance is at least one member selected from the group consisting of factory effluents, agricultural effluents, domestic drainage, sewage, leachate from waste disposal sites, exhaust gases, contaminated soil, sludge, and incinerated ash. 
     
     
         30 . A method for purifying an aromatic compound-containing contaminated substance wherein the method comprises the steps of:
 (I) irradiating the aromatic compound-containing contaminated substance with light in the presence of (i) at least one water-soluble alkali metal compound and/or at least one water-soluble alkaline-earth metal compound selected from the group consisting of calcium compounds, magnesium compounds, potassium compounds, and sodium compounds; and then   (II) adding (ii) iron compounds, whereby the aromatic compound is polymerized, wherein iron becomes ions in an aqueous solution, and   (III) collecting the polymerized aromatic compound that is generated in step (II).   
     
     
         31 . The method according to claim  12 , wherein the method further comprises (IV) separating the polymerized aromatic compound contained in contaminated substance between (II) and (III). 
     
     
         32 . The method according to claim  12 , wherein at least one of the compounds (i) and (ii) is adhered to a carrier. 
     
     
         33 . The method according to claim  12 , wherein the compound (i) is dolomite. 
     
     
         34 . The method according to claim  12 , wherein the compound (i) is at least one member selected from the group consisting of dolomite, water-soluble compounds of hydroxides, inorganic-acid salts, organic acid salts and oxides of calcium, magnesium, potassium, and sodium. 
     
     
         35 . The method according to claim  12 , wherein the transition metal ionic compound is at least one compound selected from the group consisting of ferric chloride, iron nitrate, iron hydroxide, iron phosphate, iron ethylenediaminetetraacetate, and iron sulfate. 
     
     
         36 . The method according to claim  12 , wherein the aromatic compound is at least one member selected from the group consisting of a polychlorinated biphenyl (PCB), dioxin, o-chlorophenol, p-chlorophenol, 2,4-dichlorophenol, p-tert-butylphenol, 1-naphthol, 3,5-xylenol, carbendazim, 17[beta]-estradiol, and bisphenol A. 
     
     
         37 . The method according to claim  12 , wherein the light used for light irradiation is ultraviolet.

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