A method and system for deep removal of total nitrogen in sewage

A sewage and deep technology, applied in the direction of water/sewage treatment, chemical instruments and methods, multi-stage water/sewage treatment, etc. Nitrogen effect is good, easy to transform, and the effect of simple process

Active Publication Date: 2021-03-30
LVYUAN BEIJING ENVIRONMENTAL EQUIP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The above-mentioned prior art scheme has the following defects: in order to achieve deep denitrification in this process, firstly, the sewage needs to enter the SBR reactor for organic matter removal, and adopt an anaerobic / aerobic alternate operation process for treatment; then the SBR reactor for organic matter removal The effluent enters the short-cut nitrification / anammox granular sludge UASB reactor, and is treated by short-cut nitrification and anaerobic ammonium oxidation processes; finally, the effluent from the short-cut nitrification / anammox granular sludge UASB reactor enters short-cut denitrification / In the anaerobic ammonium oxidation UASB reactor, the process of short-range denitrification and anaerobic ammonium oxidation is used for treatment
In the existing technology, the way to achieve deep denitrification is relatively cumbersome and the process flow is relatively long, which is not easy to control, and it is not easy to modify in the limited space of the existing sewage treatment plant

Method used

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  • A method and system for deep removal of total nitrogen in sewage

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0050] NO 3 - NH 4 + The sewage comes from the sewage water pipe, at this time, the concrete is placed in the concrete 11, and the unit per l is invested, and 15 mg of a coagulant is added, 10 min, at this time, the sewage is adsorbed to the coagulant. The coagulant captures the active sludge, forms the suspended sludge layer 131 (DO 2 The concentration ratio of COD / nitrate nitrogen in the sewage in the biologically active sand filter 2 is 1: 2, and the sewage stays in the biologically active sand filter 2 for 0.8 h, and finally the water pipe is exported from the water.

[0051] Table 1 Water quality detection form in Embodiment 1

[0052] Water sample SS (mg / L) COD (mg / L) TN (mg / L) TP (mg / L) Sewage water pipe water quality 40-50 60-75 20 1 Deprecated water quality / / 15 / Water supply 10 25 6 0.2

Embodiment 2

[0054] NO 3 - NH 4 + The sewage passes from the sewage water pipe, at this time, the concrete is placed in the coagulation area 11, and the unit is invested per L water, add 10 mg of coagulant, reaction for 5 min, and then the flocculation area 12 is propelled, and the unit per l Inlet, 3 mg flocculant reaction 10min, at this time, the sewage is adsorbed to the concrete and flocculant, the coagulant and the flocculant capture the active sludge, forming a suspended sludge layer 131 (suspended stain) The DO 2 ), The concentration ratio of COD / nitrate nitrogen in the sewage into the biologically active sand filter 2 is 1.5: 2, and the sewage stays 1.5 h in the biologically active sand filter 2, and finally the water pipe is exported from water.

[0055] Table 2 Water test form in Example 2

[0056] Water sample SS (mg / L) COD (mg / L) TN (mg / L) TP (mg / L) Sewage water pipe water quality 40-50 60-75 20 1 Deprecated water quality / / 12 / ...

Embodiment 3

[0058] NO 3 - NH 4 + The sewage comes from the sewage water pipe, at this time, the coagulant is placed in the coagulation area 11, and the unit is invested, and 12 mg of coagulant is added, 8 min, then the flocculation area 12 is propeling the flocculant, and the unit per l Inlet, it is administered for 5 min, at which time, the sewage is adsorbed to the concreant and the flocculant, the condenser and the flocculant capture the active sludge, form a suspended sludge layer 131 (suspended stain) The DO 2 ), The concentration ratio of COD / nitrate nitrogen in the sewage into the biologically active sand filter 2 is 1: 2, and the sewage stays 1 h in the biologically active sand filter 2, and finally the water pipe is wet from the water.

[0059] Table 3 Water test form in Example 3

[0060] Water sample SS (mg / L) COD (mg / L) TN (mg / L) TP (mg / L) Sewage water pipe water quality 40-50 60-75 20 1 Deprecated water quality / / 12 / Water su...

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Abstract

The invention discloses a method and a system for deeply removing total nitrogen in sewage, and relates to the technical field of sewage treatment. The method comprises the following steps: adding a carbon source into sewage containing NO3 <-> and NH4 < + >, wherein the concentration ratio of COD to nitrate nitrogen in the sewage is (2.7-3.5): 1; enabling the sewage carrying the carbon source toenter a reactor with a suspended sludge layer, penetrate through the suspended sludge layer and enter an anaerobic environment containing anaerobic bacteria, wherein the concentration ratio of COD tonitrate nitrogen in the sewage is (1-1.5): 2; and finally discharging water. The method is good in deep decarburization effect, and the process for realizing deep denitrification is simple, easy to control and easy to transform. The system comprises the reactor with the suspended sludge layer and an anaerobic reaction unit, the reactor is communicated with the anaerobic reaction unit, the reactoris provided with a sewage inlet end for sewage to enter, and the anaerobic reaction unit is provided with a clear water outlet end; the system is simple in structure, easy to implement and suitable for upgrading and reconstructing an existing sewage treatment plant.

Description

Technical field [0001] The present invention relates to the field of sewage treatment, and more specifically, it relates to a method and system for depth removal of total nitrogen in sewage. Background technique [0002] In order to make the sewage reach a water quality required to discharge into a water or the water quality required to use it, it is called sewage treatment. At present, after urban sewage is treated, the water pollutant content is often difficult to meet the primary A discharge standard, especially nitrogen, phosphorus indicators, urban sewage after secondary treatment, ammonia nitrogen content is 0.5-7.5mg / L, nitrate nitrogen 1.5- 20 mg / L, jam nitrogen nitrogen 0.005-0.02 mg / L, although the contaminant content is different from the region, sewage type and treatment, it is inevitable to exceed the emission standard. If the standard sewage is discharged directly, the natural water cannot be dispelled with excess nitrogen elements, and the long-term contamina...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F9/14C02F101/30C02F101/16
CPCC02F1/5245C02F1/56C02F3/28C02F3/34C02F2101/16C02F2101/163C02F2101/30C02F2209/16C02F2305/06
Inventor 方芳潘潇涵马晓力曹新鹏
Owner LVYUAN BEIJING ENVIRONMENTAL EQUIP
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