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An ex-situ active magnesium oxide carbonization and solidification sludge treatment system

A technology of activated magnesium oxide and solidified sludge, which is used in fixed/solidified sludge treatment, sludge treatment, water/sludge/sewage treatment, etc. , not suitable for high moisture content and other problems, to achieve the effect of high efficiency, environmental protection and sustainability, reducing economic costs and shortening processing time

Active Publication Date: 2018-11-09
SOUTHEAST UNIV
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  • Summary
  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0007] The present invention is aimed at the problems of poor carbonization uniformity, serious waste of carbon dioxide, and inadaptability to sludge with high water content in the existing carbonization reinforcement technology, and provides an ex-situ active magnesium oxide carbonization solidification sludge treatment system, which includes: pretreatment device, curing agent supply device, homogenizing device, granulation device, carbonization device and collection device, through the sequential operation of the above devices, complete mixing of sludge and curing agent and rapid carbonization of magnesium oxide solidified sludge particles, thus solving high Water content, low permeability silt / sludge soil is difficult to carbonize and strengthen; multiple sensors specially designed for the system can be used together to adjust the supply of curing agent by measuring the water content, and adjust the particle size and carbon dioxide pressure according to the soil properties. The working efficiency is greatly improved, and the whole device is more systematic and streamlined. During the use of the device, it can absorb dust and carbon dioxide, avoiding secondary pollution. The sludge carbonized particles produced after the operation of the device have high hardness and high shear strength, which can be used as Filling materials such as roadbeds, airport runways, and engineering backfills have great engineering construction significance for the reuse of silt / sludge and carbon dioxide in engineering

Method used

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  • An ex-situ active magnesium oxide carbonization and solidification sludge treatment system
  • An ex-situ active magnesium oxide carbonization and solidification sludge treatment system
  • An ex-situ active magnesium oxide carbonization and solidification sludge treatment system

Examples

Experimental program
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Effect test

experiment example 1

[0053] If the clay content of the pretreated silt soil is less than 20%, the moisture content is 30%-40%, and the target strength is 0.6MPa, the first curing agent is not selected during the curing agent homogenization process, and the second curing agent content is adjusted to 10%. The granulation process adjusts the maximum particle size to 7cm, the carbonization process controls the ventilation pressure to 200kPa, and the carbonization time to 1.5h.

experiment example 2

[0055] If the clay content of the pretreated silt soil is 20%-30%, the moisture content is less than 45%, and the target strength is 0.6MPa, the curing agent uniform mixing process adjusts the first curing agent to 5%, and adjusts the second curing agent The content is 10%, the maximum particle size is adjusted to 6cm during the granulation process, the aeration pressure is controlled to 200kPa during the carbonization process, and the carbonization time is 1.5h.

experiment example 3

[0057] If the clay content of the pretreated silt soil is less than 20%, the moisture content is 30%-40%, and the target strength is 0.8MPa, the first curing agent is not selected in the curing agent homogenization process, and the second curing agent content is adjusted to 15%. The granulation process adjusts the maximum particle size to 6cm, the carbonization process controls the ventilation pressure to 200kPa, and the carbonization time to 3.0h.

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Abstract

The invention discloses a treatment system for carbonizing and curing silt soil by heterotopic active magnesium oxide. The system comprises a pretreatment device, a curing agent supply device, a uniform mixing device, a granulation device, a carbonization device and a collection device. Through the sequential working of the devices, the sufficient blending of silt and a curing and the quick carbonization of a magnesium oxide cured silt granule are completed; thus, the problems of the difficult carbonization and curing of high-water-content and low-permeability silt / sludge soil are solved; multiple sensors particularly arranged in the system are cooperatively used; the supply quantity of the curing agent can be regulated through actually measuring a water content; the particle size of the granule and the pressure of carbon dioxide are regulated according to the property of the soil; the work efficiency is greatly improved; all the devices are more systematized and process-oriented; milldust and the carbon dioxide can be absorbed in the use process of the devices; the secondary pollution is avoided; the carbonized granule of the silt, generated after the devices finish working, is high in hardness and high in shear strength, and can be used as a filling material for a roadbed, an airport runway, engineering backfilling and the like, and the treatment system has great engineeringconstruction significance for the reutilization of silt / sludge in engineering.

Description

[0001] Field [0002] The invention relates to an ex-situ activated magnesia carbonization and solidification sludge treatment system, which belongs to the reinforcement field of civil engineering rock soil or municipal engineering special soil. Background technique [0003] my country has a vast territory, numerous rivers and lakes, and the rapid development of civil engineering construction. During the dredging and dredging of rivers and lakes and the construction of civil and water conservancy projects, a large amount of silt will be produced. These silts have high moisture content, high clay content, poor water permeability, physical The mechanical index is poor. Some river and lake silts even contain a large amount of organic matter and harmful heavy metals. It is difficult to directly use them as filling materials in engineering. A series of social problems such as source pollution. For weak silt foundations, methods such as vacuum preloading and dewatering, heat treatmen...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C02F11/00
CPCC02F11/008
Inventor 蔡光华刘松玉王亮秦川
Owner SOUTHEAST UNIV
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