Renato Baciocchi, Giulia Costa
Accelerated carbonation presents a viable carbon utilization option for manufacturing useful products from CO2-concentrated or diluted emission sources and waste streams. This article reviews the primary mineral carbonation pathways developed to date, especially those designed for generating valuable products from various alkaline feedstocks. It discusses the environmental advantages of replacing virgin raw materials and storing CO2 permanently in the form of Ca and/or Mg carbonates, thereby aiding in climate change mitigation. By examining the current state of mineral carbonation technology, this perspective piece highlights the critical issues and challenges that need to be addressed to enhance the feasibility of mineral carbonation as a part of carbon capture, utilization, and storage (CCUS). Furthermore, it identifies research needs and opportunities essential for the advancement of this field, emphasizing a collaborative approach towards achieving sustainable circular economy practices while effectively contributing to global climate goals.
@article{f97ff37c-dc66-422b-8b15-8cadbb52d267,
title={CO2 Utilization and Long Term Storage in},
author={Renato Baciocchi and Giulia Costa},
year={2026},
language={en}
}TY - JOUR TI - CO2 Utilization and Long Term Storage in AU - Renato Baciocchi AU - Giulia Costa PY - 2026 LA - en ER -
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This chapter discusses metal casting processes, highlighting the diversity and common characteristics among them. The objective is to elucidate the fu
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