一种基于废弃红层就地再生混凝土的双智能制备系统及方法

By utilizing a dual-intelligent preparation system for waste red soil, which incorporates an intelligent mixing subsystem and a full-process energy efficiency evaluation subsystem, the system addresses the issues of low local integration and insufficient intelligence in traditional concrete recycling systems, thereby achieving efficient resource utilization and low-carbon emission concrete production.

CN121572446BActive Publication Date: 2026-07-17KUNMING UNIV OF SCI & TECH

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
KUNMING UNIV OF SCI & TECH
Filing Date
2025-11-05
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional concrete recycling systems and methods have low local integration, fail to build a full-chain intelligent system, have low intelligence levels, and are difficult to achieve efficient resource utilization and low carbon emissions.

Method used

A dual-intelligent preparation system based on waste red soil is adopted, including an intelligent mixing subsystem and a full-process energy efficiency evaluation subsystem. Through a PLC control system, experimental ratio database and energy consumption sensors, the waste red soil is utilized and efficiently mixed. Combined with calcination and activation process, it is transformed into active cementitious material, and the production process is monitored and optimized in real time.

Benefits of technology

It achieves efficient resource utilization, significantly reduces carbon emissions and production energy consumption, improves the level of intelligence and quality stability of concrete preparation, has self-diagnosis and continuous optimization capabilities, and provides reliable green construction data support.

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Abstract

本发明涉及混凝土再生制备技术领域,且公开了一种基于废弃红层就地再生混凝土的双智能制备系统及方法,包括智能拌合子系统和全过程能效评价子系统。该系统通过智能拌合子系统匹配最优配比并下达生产指令,提升混凝土制备的智能化水平与质量稳定性,就地取材废弃红层,经过破碎、筛分和煅烧活化工艺,转化为可高比例替代水泥的活性胶凝材料,在生产过程中具备自我诊断和持续优化的能力,就地取材资源利用率高,全过程能效评价子系统对智能拌合子系统的运行效益进行监测与评估,计算出混凝土制备全流程的减碳量、能耗减少量、经济效益及综合评价值,并将评价结果实时反馈至PLC控制系统,构建反馈闭环,低碳排放环保价值高。
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