An ai-based wind energy and biomass hydrogen co-ordinated zero-carbon intelligent smelting system and method

The AI-based wind power and biomass hydrogen co-processing zero-carbon intelligent smelting system solves the problems of high energy consumption, high pollution and poor flexibility in the traditional smelting industry, and achieves zero-carbon, low-cost and high-stability smelting production.

CN122405979APending Publication Date: 2026-07-17

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Filing Date
2026-06-01
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The traditional metal smelting industry relies on fossil fuels, resulting in high energy consumption, heavy pollutant emissions, poor process flexibility, and inability to adapt to intermittent renewable energy sources such as distributed wind, solar, and biomass. Existing low-carbon smelting technologies have failed to meet the production requirements of zero carbon, low cost, and high stability.

Method used

The system employs an AI-based wind energy and biomass hydrogen co-processing zero-carbon intelligent smelting system, which includes modules such as wind energy capture, biomass pretreatment and pyrolysis gasification, water electrolysis hydrogen production, intelligent reducing agent compounding, AI smelting perception and control, zero-carbon smelting reaction, in-situ pollutant purification, and fully automated post-treatment, to achieve closed-loop control and resource utilization.

Benefits of technology

It has achieved zero carbon emissions, reduced energy consumption by more than 60%, generated no solid waste, increased metal recycling rate by 10 percentage points, and achieved zero wind and solar curtailment rate, enabling safe, environmentally friendly, and unattended production.

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Abstract

本发明公开了一种基于AI的风能和生物质氢气协同零碳智能冶炼系统及方法,属于零碳冶金技术领域。本发明针对现有分布式风能、光能、生物质能无法协同储能放热、无法相互转化、无法精准适配矿物冶炼的技术痛点,构建全链条一体化调配体系:以风能发电驱动电解水制氢,耦合生物质热解产气制备复合还原剂,通过AI机器人集群实时感知矿物元素组成、冶炼温度、压力、流量、质量及排放参数,动态调整能源供给比例与还原剂配比,自动确定金属提取顺序,全流程无人干预完成温控、净化、包装及入库。本发明确保冶炼过程无碳排放、无工业固废排放,产品能耗较传统冶炼下降60%以上,彻底规避人员伤亡与环境污染风险,实现了可再生能源与冶金工艺的深度协同。
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