IP Library Granted Patent US 12,017,956
Granted Patent B1
US 12,017,956 · App. 18/585,108 · Granted Jun 25, 2024

Method for preparing bittern-carbonization synergistic reinforced recycled aggregate

Inventors: Changjiang Kou (Jiangsu, CN); Jiyang Sun (Jiangsu, CN); Zhiwei Sun (Jiangsu, CN); Yu Lu (Jiangsu, CN); Rongxue Fan (Jiangsu, CN); Peng Xiao (Jiangsu, CN); Aihong Kang (Jiangsu, CN); Zhengguang Wu (Jiangsu, CN)
Assignee: Yangzhou University
C04B20/1066C04B18/167
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Quick Facts
Patent No.
US 12,017,956
App. No.
18/585,108
Granted
Jun 25, 2024
Kind
B1
Abstract

Disclosed is a method for preparing bittern-carbonization synergistic reinforced recycled aggregate, including the following steps: spray pretreatment: performing alternate spraying on recycled aggregate with bittern and lime milk at intervals for many times at 4-70° C. and a pressure of 0.05-0.6 MPa; carbonization reinforcement: introducing waste gas containing carbon dioxide for a retention time of 4-8 h after the recycled aggregate is allowed to stand for 2-4 h; and rinsing and air drying: removing soluble impurities on a surface of the recycled aggregate by rinsing in water, and performing air-drying on the recycled aggregate to obtain bittern-carbonization synergistic reinforced recycled aggregate. According to the present disclosure, the effective reinforcement of recycled aggregate at normal temperature and pressure in a short time is realized, and the method is simple in process and is convenient in operation.

Claims (12)

1. A method for preparing bittern-carbonization synergistic reinforced recycled aggregate, comprising the following steps:

(1) performing alternate spraying on recycled aggregate with bittern and lime milk at intervals for many times at 4-70° C. and a pressure of 0.05-0.6 MPa until a surface of the recycled aggregate is wet;

(2) introducing waste gas containing carbon dioxide for a retention time of 4-8 h after the recycled aggregate is allowed to stand for 2-4 h, a volume fraction of carbon dioxide in the waste gas being 10-20%; and

(3) removing soluble impurities on the surface of the recycled aggregate by rinsing in water, and performing air-drying on the recycled aggregate to obtain bittern-carbonization synergistic reinforced recycled aggregate.

2. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 1 , wherein in step (1), the recycled aggregate is a low-quality recycled coarse aggregate with a water-cement ratio of primary concrete of 0.3-0.45 and a particle size of 5-20 mm.

3. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 1 , wherein in step (1), a concentration of magnesium ions in bittern is ≥2.3 mol/L.

4. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 3 , wherein in step (1), a concentration of magnesium ions in bittern is 2.9-3.5 mol/L.

5. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 1 , wherein in step (1), the lime milk is a calcium hydroxide suspension, a mass percentage of calcium hydroxide being 40%-60%.

6. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 1 , wherein in step (1), a volume ratio of bittern to lime milk is 25:1-35:1, and the lime milk is sprayed at intervals of 10-30 min after the bittern is sprayed every time.

7. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 1 , wherein in step (1), the alternate spraying is performed at intervals of 1-4 h for 2-4 times.

8. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 1 , wherein in step (2), a volume fraction of carbon dioxide in the waste gas is 15-20%.

9. The method for preparing bittern-carbonization synergistic reinforced recycled aggregate according to claim 1 , wherein in step (3), the rinsing is performed for 30 min-1 h.

Priority Claims (1)
CN 202310442902.X · Apr 23, 2023 · national