Suspended-matter removing method utilizing biofilm and suspended-matter removing apparatus utilizing biofilm

US10308525B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10308525-B2
Application numberUS-201515551470-A
CountryUS
Kind codeB2
Filing dateFeb 20, 2015
Priority dateFeb 20, 2015
Publication dateJun 4, 2019
Grant dateJun 4, 2019

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A suspended-matter removing method and a suspended-matter removing apparatus are disclosed that require no sludge treatment facility, and inexpensively provide filtrate satisfying a water quality standard. The suspended-matter removing method includes: feeding a protrusion element to a filter layer formed by filling a solid filter material, adding a protrusion to a surface of the solid filter material; after feeding protrusion element, determining whether a protrusion has been added to the surface of the solid filter material, and when it is determined that the protrusion has been added, reducing a feeding amount of the protrusion element as compared with when adding the protrusion; forming a biofilm on the surface of the solid filter material; and passing water to be treated containing suspended matters through the filter layer having the solid filter material added with the protrusion in a state in which the feeding amount of the protrusion element is reduced.

First claim

Opening claim text (preview).

The invention claimed is: 1. A suspended-matter removing method utilizing a biofilm, comprising the steps of: feeding a protrusion element to a filter layer formed of a solid filter material, thereby adding a protrusion to a surface of the solid filter material; determining whether or not a protrusion satisfying a preset standard has been added to the surface of the solid filter material; when it is determined that the protrusion has been added, reducing a feeding amount of the protrusion element as compared with when adding the protrusion; forming a biofilm on the surface of the solid filter material; and passing water to be treated including suspended matters through the filter layer having the solid filter material added with the protrusion in a state in which the feeding amount of the protrusion element is reduced. 2. The suspended-matter removing method according to claim 1 , wherein the feeding of the protrusion element is stopped, in the step of reducing the feeding amount of the protrusion element. 3. The suspended-matter removing method according to claim 1 , further comprising a step of passing the water to be treated through the filter layer at the same time as the step of adding a protrusion. 4. The suspended-matter removing method according to claim 1 , wherein in determining whether or not a protrusion satisfying the preset standard has been added to the surface of the solid filter material, further comprising a step of inspecting water quality of the filtrate that has come out from the filter layer, wherein when an inspection value of the filtrate exceeds a preset threshold value, it is determined that the protrusion satisfying the preset standard has not been formed on the surface of the solid filter material, and the step of adding a protrusion is performed; and when the inspection value of the filtrate is equal to or less than the preset threshold value, it is determined that the protrusion satisfying the preset standard has been added to the surface of the solid filter material, and the feeding amount of the protrusion element is reduced as compared with when the protrusion is added. 5. The suspended-matter removing method according to claim 1 , wherein in determining whether or not a protrusion satisfying the preset standard has been added to the surface of the solid filter material, further comprising a step of measuring a differential pressure between a first side of the filter layer and a second side of the filter layer, wherein the protrusion element is fed within a range in which the measured differential pressure is less than a predetermined value, in the step of adding a protrusion. 6. The suspended-matter removing method according to claim 1 , wherein in determining whether or not a protrusion satisfying the preset standard has been added to the surface of the solid filter material, further comprising a step of directly or indirectly measuring an amount of the protrusion element contained in filtrate that has come out from the filter layer in the step of adding the protrusion, wherein it is determined that the protrusion satisfying the preset standard has been added to the surface of the solid filter material when the measured amount of the protrusion element becomes equal to or less than a preset threshold value. 7. The suspended-matter removing method according to claim 1 , wherein in determining whether or not a protrusion satisfying the preset standard has been added to the surface of the solid filter material, a total feeding amount of the protrusion element to the filter layer in the step of adding a protrusion is counted, and it is determined that the protrusion satisfying the preset standard has been added to the surface of the solid filter material when the counted total feeding amount reaches a preset threshold value. 8. The suspended-matter removing method according to claim 1 , wherein in the step of passing the water to be treated, the water to be treated is passed through a coarse-particle separation part to make the water to be treated into primarily treated water by mainly separating suspended matters larger than 10 μm contained in the water to be treated, and then the water to be primarily treated is passed through the filter layer to removed suspended matters having a size of 0.1 μm or more to 10 μm or less. 9. The suspended-matter removing method according to claim 1 , wherein sodium hydrogen sulfite is added to the water to be treated, and then the water to be treated is passed through the filter layer. 10. The suspended-matter removing method according to claim 1 , wherein a height of the protrusion is 4 μm or more. 11. The suspended-matter removing method according to claim 1 , wherein an average particle diameter of the solid filter material is 300 μm or more to 2500 μm or less. 12. The suspended-matter removing method according to claim 1 , wherein the protrusion element is made of kaolin. 13. The suspended-matter removing method according to claim 1 , wherein the protrusion element is made of iron chloride. 14. The suspended-matter removing method according to claim 13 , wherein, in the step of reducing the feeding amount of the protrusion element, the feeding amount of the protrusion element is reduced such that content of the protrusion element becomes less than 0.5 ppm as iron in solution that passes the filter layer. 15. The suspended-matter removing method according to claim 1 , wherein the protrusion element is made of high-molecular polymer. 16. The suspended-matter removing method according to claim 1 , further comprising a step of backwashing the filter layer by passing washing liquid through the filter layer in a direction opposite to a passing direction of the water to be treated such that the protrusion is retained on the surface of the solid filter material. 17. The suspended-matter removing method according to claim 16 , wherein, in the step of backwashing the filter layer, a passing speed of the washing liquid is controlled so as to suppress a developing rate of the solid filter material to retain the protrusion on the surface of the solid filter material. 18. The suspended-matter removing method according to claim 17 , wherein the washing liquid is passed through the filter layer without a step of air washing that backwashes the filter layer by introducing air. 19. The suspended-matter removing method according to claim 16 , wherein, in the step of backwashing the filter layer, a developing rate of the filter layer is obtained and the developing rate of the filter layer is made to become more than 0% less than 30%. 20. The suspended-matter removing method according to claim 1 , further comprising the steps of: backwashing the filter layer by passing washing liquid to the filter layer in a direction opposite to a passing direction of water to be treated; collecting backwash filtrate generated by the backwashing; and passing the backwash filtrate through the filter layer toward the passing direction of the water to be treated, and reforming a protrusion on the surface of the solid filter material. 21. The suspended-matter removing method according to claim 1 , further comprising the steps of: backwashing the filter layer by passing washing liquid to the filter layer in a direction opposite to a passing direction of the water to be treated; collecting backwash filtrate generated by the backwashing; and passing the backwash filtrate through the filter layer toward the passing direction of the water to be treated, and reform

Assignees

Inventors

Classifications

  • Separation of coarse particles, e.g. by using sieves or screens · CPC title

  • with halogens or compounds of halogens {(C02F1/4674 takes precedence)} · CPC title

  • Precoating the filter medium; Addition of filter aids to the liquid being filtered {(devices for feeding reagents C02F1/685 and sub-groups; filter aids)} · CPC title

  • Reverse osmosis; Hyperfiltration · CPC title

  • electrodialysis · CPC title

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What does patent US10308525B2 cover?
A suspended-matter removing method and a suspended-matter removing apparatus are disclosed that require no sludge treatment facility, and inexpensively provide filtrate satisfying a water quality standard. The suspended-matter removing method includes: feeding a protrusion element to a filter layer formed by filling a solid filter material, adding a protrusion to a surface of the solid filter m…
Who is the assignee on this patent?
Mitsubishi Heavy Ind Ltd, Mitsubishi Heavy Ind Eng Ltd
What technology area does this patent fall under?
Primary CPC classification C02F1/001. Mapped technology areas include Chemistry & Metallurgy.
When was this patent published?
Publication date Tue Jun 04 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).