Environmental Impact Assessment of Natural Aggregate Extraction and Advanced Pathways for Impact Reduction

Natural aggregates are essential constituents of concrete, asphalt, railway ballast, drainage systems, and geotechnical structures. However, their extraction and processing generate environmental burdens associated with land transformation,biodiversity loss, depletion of mineral resources, blasting vibration, noise, particulate emissions, diesel consumption, electricity demand, water use, waste generation, and greenhouse-gas emissions.This paper develops an advanced framework for assessing and reducing the environmental impact of natural aggregate extraction. The framework combines life-cycleassessment, thermodynamics, fracture mechanics, transport phenomena, environmental fluid mechanics, acoustic propagation, optimization theory, and emerging digital-quarry technologies. A functional unit of one tonne of marketable aggregate is adopted, while the system boundary includes drilling, blasting, excavation, hauling,crushing, screening, washing, stockpiling, and internal transportation.The main mathematical formulations describe energy consumption, greenhousegas emissions, comminution, dust dispersion, blasting vibration, noise propagation,water consumption, land disturbance, and multi-objective environmental optimization. Advanced mitigation approaches include electric equipment, renewable-poweredprocessing plants, conveyor transport, sensor-based crushing, machine-learning control, digital twins, construction-and-demolition waste recycling, closed-loop watersystems, and carbonated recycled aggregates.The proposed approach transforms environmental assessment from a descriptiveprocedure into a predictive engineering-control system capable of minimizing environmental impact while maintaining aggregate quality and production requirements.

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-09-14
DOI
https://doi.org/10.5281/zenodo.22749419
Primary Topic
Recycled Aggregate Concrete Performance
Type
article
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Environmental Impact Assessment of Natural Aggregate Extraction and Advanced Pathways for Impact Reduction

Khaled Aldhufri
Zenodo (CERN European Organization for Nuclear Research)
Recycled Aggregate Concrete Performance
article

Environmental Impact Assessment of Natural Aggregate Extraction and Advanced Pathways for Impact Reduction

Khaled Aldhufri
article en

Abstract

Natural aggregates are essential constituents of concrete, asphalt, railway ballast, drainage systems, and geotechnical structures. However, their extraction and processing generate environmental burdens associated with land transformation,biodiversity loss, depletion of mineral resources, blasting vibration, noise, particulate emissions, diesel consumption, electricity demand, water use, waste generation, and greenhouse-gas emissions.This paper develops an advanced framework for assessing and reducing the environmental impact of natural aggregate extraction. The framework combines life-cycleassessment, thermodynamics, fracture mechanics, transport phenomena, environmental fluid mechanics, acoustic propagation, optimization theory, and emerging digital-quarry technologies. A functional unit of one tonne of marketable aggregate is adopted, while the system boundary includes drilling, blasting, excavation, hauling,crushing, screening, washing, stockpiling, and internal transportation.The main mathematical formulations describe energy consumption, greenhousegas emissions, comminution, dust dispersion, blasting vibration, noise propagation,water consumption, land disturbance, and multi-objective environmental optimization. Advanced mitigation approaches include electric equipment, renewable-poweredprocessing plants, conveyor transport, sensor-based crushing, machine-learning control, digital twins, construction-and-demolition waste recycling, closed-loop watersystems, and carbonated recycled aggregates.The proposed approach transforms environmental assessment from a descriptiveprocedure into a predictive engineering-control system capable of minimizing environmental impact while maintaining aggregate quality and production requirements.

Zenodo (CERN European Organization for Nuclear Research)
Responsible consumption and production
Openalex Percentile: Top 14%
Recycled Aggregate Concrete Performance
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Environmental Impact Assessment of Natural Aggregate Extraction and Advanced Pathways for Impact Reduction — Khaled Aldhufri · Zenodo (CERN European Organization for Nuclear Research) (2026) | TGRS Research Map | TGRS