IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0671720
(2000-09-27)
|
우선권정보 |
GB-19980007071 (1998-04-01); GB-19980017295 (1998-08-07) |
발명자
/ 주소 |
|
출원인 / 주소 |
- Alcan International Limited
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대리인 / 주소 |
|
인용정보 |
피인용 횟수 :
16 인용 특허 :
5 |
초록
▼
A water treatment product which is a particulate material having a specific surface area of at least 1.0 m2/g, or an artefact formed by bonding together such particulate material, and having an insoluble ferric iron coating. Perferably, the particulate material is an alumina-based material. The prod
A water treatment product which is a particulate material having a specific surface area of at least 1.0 m2/g, or an artefact formed by bonding together such particulate material, and having an insoluble ferric iron coating. Perferably, the particulate material is an alumina-based material. The product is useful in the treatment of water to remove organic materials, cations or anions, and more particularly heavy metals, As, Se or F. Methods of making the water product are also provided.
대표청구항
▼
1. A water treatment method, which method comprises providing a water treatment product, said product being a particulate material having a mean particle size of at least 5 μm and a specific surface area of at least 10 m2/g, or an artefact formed by bonding together such particulate material, and ha
1. A water treatment method, which method comprises providing a water treatment product, said product being a particulate material having a mean particle size of at least 5 μm and a specific surface area of at least 10 m2/g, or an artefact formed by bonding together such particulate material, and having an insoluble hydrated ferric iron oxide coating, contacting water to be treated with said water treatment product, and thereafter recovering treated water containing a reduced As concentration of not more than 10 μg/l. 2. The water treatment method of claim 1, wherein the particulate material has a mean particle size of 100 μm to 5000 μm. 3. The water treatment method of claim 1, wherein the particulate material is an alumina-based material. 4. The water treatment method of claim 3, wherein the alumina-based material is selected from bauxite, alumina trihydrate and alumina. 5. The water treatment method of claim 3, wherein the alumina-based material is activated alumina or activated bauxite. 6. The water treatment method of claim 1, wherein the particulate material has a specific surface area of at least 100 m2/g. 7. The water treatment method of claim 1, which is a ferruginous ore having a precipitated ferric iron coating on its surface. 8. The water treatment method of claim 7, wherein the ore is bauxite. 9. The water treatment method of claim 8, wherein the bauxite is activated bauxite. 10. A water treatment product, said product being a particulate alumina-based material having a mean particle size of at least 5 μm and a specific surface area of at least 10 m2/g, or an artefact formed by bonding together such particulate alumina-based material, and having an insoluble hydrated ferric iron oxide coating, wherein said product has a capacity for adsorbing inorganic contaminants from water to be treated. 11. A method of making a water treatment product, said product being a particulate alumina-based material having a mean particle size of at least 5 μm and a specific surface area of at least 10 m2/g, or an artefact formed by bonding together such particulate alumina-based material, and having an insoluble hydrated ferric iron oxide coating, which method comprises soaking the particulate alumina-based material or an artefact formed from the particulate alumina-based material in a ferric solution, and recovering and drying the coated particulate alumina-based material or artefact, wherein said product has a capacity for adsorbing inorganic contaminants from water to be treated. 12. A method of making a water treatment product as claimed in claim 11, said method comprising treating a ferruginous ore with acid liquid so as to leach out iron from the ore, and then raising the pH of the liquid so as to form a precipitated ferric iron coating on the surface of the ore.
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