欢迎访问《昆明冶金职业大学学报》,

昆明冶金职业大学学报 ›› 2026, Vol. 42 ›› Issue (3): 18-.DOI: 10.3969/j.issn.1009-0479.2026.03.003

• 环境保护与化工技术 • 上一篇    下一篇

中国丘陵山区土地平整耦合增强岩石风化去除CO₂ #br#

  

  1. (1.昆明冶金职业大学艺术设计学院,云南昆明650033;2.中国地质调查局昆明自然资源综合调查中心,云南昆明650100)

  • 出版日期:2026-08-31 发布日期:2026-09-01
  • 作者简介:李静婷(1994-),女,云南曲靖人,讲师,理学硕士,主要从事矿物与宝玉石鉴定教育与研究。
  • 基金资助:
    云南省教育厅科学研究基金项目“地质高Cd区利用方解石-铁-碳耦合治理土壤酸化与固碳机制研究”
    (2025J1397)。

Coupling of Land Leveling and Enhanced Rock Weathering for CO₂ Removal in Hilly and Mountainous Areas of China

  1. (1.FacultyofArtandDesign,KunmingMetallurgyUniversity,Kunming650033,China;2.KunmingGeneralSurveyofNaturalResourcesCenter,ChinaGeologicalSurvey,Kunming650100,China)
  • Online:2026-08-31 Published:2026-09-01

摘要: 为应对气候变化并助力实现 “双碳” 目标,本研究提出将增强岩石风化(enhanced rock weathering,ERW)技术与土地平整工程结合,通过就地粉碎砾石实现 CO₂封存与耕地改良。该技术可补充我国耕地,并利用硅酸盐和碳酸盐矿物风化固定 CO₂,同时缓慢释放钾、磷、镁、钙等养分改良土壤,使土壤 pH 提升 0.2~2,作物增产 12%~42%,并与梯田水土保持功能协同增效。该模式将大幅降低 ERW 固碳成本,初步估算显示:中国境内的年固碳潜力可达 3.98~63.68 亿 t(保守至乐观估计)。其中,保守估计值相当于森林碳汇量的 48%;若能实现规模化应用并提升固碳效率,乐观估计该数值更可覆盖全国年度碳排放量的 60%以上。该技术可实现 “以废治碳”,为土地平整与碳中和提供创新方案。未来需开展更多田间实验,优化实施工艺并评估长期生态效应。

关键词: 增强岩石风化, 土地平整, 碳封存, 补充耕地, 碳中和路径

Abstract: To address climate change and contribute to achieving the “Dual Carbon” goal, this study proposes integrating Enhanced Rock Weathering (ERW) technology with land leveling projects, by utilizing on‑site crushing of gravel to realize CO₂ sequestration and betterment of land. This technology utilizes silicate and carbonate minerals to fix CO₂ through weathering, thereby helping to replenish China's farmland resources. Simultaneously, it gradually releases essential nutrients such as potassium, phosphorus, magnesium, and calcium to improve soil conditions, increasing the soil pH by 0.2 to 2 units and boosting crop yields by 12% to 42%. Additionally, it synergistically strengthens the water and soil conservation capabilities of terraces. This model exhibits the potential to substantially reduce the carbon sequestration costs associated with ERW. The preliminary estimation indicates an annual carbon sequestration potential ranging from 398 million to 6.368 billion tons within China (conservative to optimistic estimates). The conservative estimation corresponds to approximately 48% of the current sink capacity of forest ecosystems, if the technology can be applied on a large scale and improve the carbon sequestration efficiency, the optimistic estimate suggests that it could cover more than 60% of the national annual carbon emissions. This technology can achieve “Treating Carbon with Waste”, providing an innovative solution for land leveling and carbon neutrality. In the future, more field experiments need to be conducted to optimize the implementation process and assess the long‑term ecological effects.

Key words: enhanced rock weathering, land leveling, Carbon sequestration, supplementary cultivated land, Carbon neutrality pathway

中图分类号: