IP Library Granted Patent US 10,001,044
Granted Patent B2
US 10,001,044 · App. 15/107,284 · Granted Jun 19, 2018

Exhaust gas post-processing apparatus and control method therefor

Inventors: Ji Seok Kim (Incheon, KR); Seung Eun Moon (Incheon, KR); Tae Hyung Kim (Incheon, KR); Nam Il Choi (Incheon, KR)
Assignee: DOOSAN INFRACORE CO., LTD.
F01N9/002F01N3/0885F01N3/208F01N9/00F01N2260/04F01N2430/00F01N2560/026F01N2560/06F01N2560/08F01N2560/14F01N2610/02F01N2900/0416F01N2900/1404F01N2900/1406F01N2900/1621Y02T10/24Y02T10/47
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Quick Facts
Patent No.
US 10,001,044
App. No.
15/107,284
Granted
Jun 19, 2018
Kind
B2
Abstract

The present disclosure relates to an exhaust gas post-processing apparatus and a control method therefore. The exhaust gas post-processing apparatus and the control method therefore according to the present disclosure are provided with a pressure sensor on an exhaust gas line and a sensor on front/rear ends of the exhaust gas post-processing apparatus which can measure the concentration and the quantity of nitrogen oxides. Consequently, forced regeneration of the exhaust gas post-processing apparatus can be performed by determining whether the back pressure is increased or whether the reduction efficiency of nitrogen oxides becomes poor.

Claims (22)

1. An exhaust gas post-processing apparatus comprising:

a selective catalyst reduction device provided in an exhaust gas line;

a diesel oxidation catalyst device disposed at an upper stream than the selective catalyst reduction device;

a first sensor provided at an upstream of the diesel oxidation catalyst device to measure nitrogen oxides contained in the exhaust gas;

a second sensor provided at a rear end of the selective catalyst reduction device to measure nitrogen oxides contained in the exhaust gas;

a third sensor provided at the upstream of the diesel oxidation catalyst device to measure a back pressure value of the exhaust gas;

a fourth sensor which detects a temperature of the exhaust gas at the upstream of the diesel oxidation catalyst device; and

a control unit is configured to:

calculate a reduction efficiency of nitrogen oxides by comparing a difference between a concentration of the nitrogen oxides detected in the first sensor and a concentration of the nitrogen oxides detected in the second sensor;

control an engine to increase the temperature of the exhaust gas when the reduction efficiency is lower than a predetermined reduction efficiency;

return to calculate the reduction efficiency of nitrogen oxides by comparing the difference between a concentration of the nitrogen oxides detected in the first sensor and the concentration of the nitrogen oxides detected in the second sensor when the temperature of the exhaust gas at the upstream of the diesel oxidation catalyst device reaches a predetermined target temperature through the controlling the engine; and

determine whether the back pressure of the exhaust gas measured at the upstream of the diesel oxidation catalyst device in the exhaust gas line reaches a predetermined back pressure and further control the engine to increase the temperature of the exhaust gas when the back pressure reaches the predetermined back pressure when the reduction efficiency of the nitrogen oxides does not reach the predetermined reduction efficiency.

2. The apparatus of claim 1 , wherein the control unit is configured to control the engine to increase the temperature of the exhaust gas during a predetermined time.

3. The apparatus of claim 1 , wherein the control unit is further configured to increase the temperature of the exhaust gas in accordance with a reduction efficiency of the nitrogen oxides when the third sensor is not normally operated.

4. A control method for an exhaust gas post-processing apparatus, the method comprising:

measuring a concentration of nitrogen oxides at an upstream of a diesel oxidation catalyst device and a rear end of a selective catalyst reduction device, wherein the diesel oxidation catalyst device is disposed at an upper stream than the selective catalyst reduction device, and calculating a difference of the concentrations of nitrogen oxides at the upstream of the diesel oxidation catalyst device and the rear end of the selective catalyst reduction device to calculate a reduction efficiency of nitrogen oxides;

comparing the calculated reduction efficiency of nitrogen oxides with a predetermined reduction efficiency; and

controlling an engine to increase a temperature of the exhaust gas when the reduction efficiency of nitrogen oxides is lower than the predetermined reduction efficiency;

returning to the measuring the concentration of nitrogen oxides and the calculating the difference of the concentrations of nitrogen oxides at the upstream of the diesel oxidation catalyst device and the rear end of the selective catalyst reduction device when the temperature of the exhaust gas at the upstream of the diesel oxidation catalyst device reaches a predetermined target temperature through the controlling the engine; and

determining whether a back pressure of the exhaust gas measured at the upstream of the diesel oxidation catalyst device in the exhaust gas line reaches a predetermined back pressure and further controlling the engine to increase the temperature of the exhaust gas when the back pressure reaches the predetermined back pressure when the reduction efficiency of the nitrogen oxides does not reach the predetermined reduction efficiency.

5. The method of claim 4 , wherein the returning to the measuring the concentration of nitrogen oxides at a predetermined time when the temperature of the exhaust gas of the upstream of the diesel oxidation catalyst device does not reach the predetermined target temperature in the controlling the engine to increase the temperature of the exhaust gas when the reduction efficiency of nitrogen oxides is lower than the predetermined reduction efficiency.

6. The method of claim 4 , wherein the back pressure of the exhaust gas is measured by a pressure sensor, and the method further comprising controlling the engine to increase the temperature of the exhaust gas in accordance with a reduction efficiency of the nitrogen oxides when the pressure sensor is not normally operated.

Assignments (3)
CHANGE OF NAME Recorded Dec 4, 2023
From: DOOSAN INFRACORE CO., LTD.
To: HYUNDAI DOOSAN INFRACORE CO., LTD.
Reel/Frame 065761/0942 →
CHANGE OF NAME Recorded Dec 4, 2023
From: HYUNDAI DOOSAN INFRACORE CO., LTD.
To: HD HYUNDAI INFRACORE CO., LTD.
Reel/Frame 065761/0957 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2016
From: KIM, JI SEOK; MOON, SEUNG EUN; KIM, TAE HYUNG; CHOI, NAM IL
To: DOOSAN INFRACORE CO., LTD.
Reel/Frame 039856/0264 →
Priority Claims (1)
KR 10-2013-0162756 · Dec 24, 2013 · national
Continuity (1)
Related Publication 20160369682A1 · Dec 22, 2016