Preprint

·2021 OPEN ACCESS

Carbon-Negative Cement Manufacturing from Seawater-Derived Magnesium Feedstocks

Palash Badjatya , Abdullah Huzeyfe Akca YTU , Daniela Fraga Alvarez , Baoqi Chang , Siwei Ma , Xueqi Pang , Emily Wang , Quinten van Hinsberg , Daniel V. Esposito , Shiho Kawashima

Abstract

This study describes and demonstrates a carbon-negative process for manufacturing cement from widely abundant seawater-derived magnesium (Mg) feedstocks. In contrast to conventional Portland cement, which starts with carbon-containing limestone as the source material, the proposed process uses membrane-free electrolyzers to facilitate the conversion of carbon-free magnesium ions (Mg2+) in seawater into magnesium hydroxide (Mg(OH)2) precursors for the production of Mg-based cement. After a low-temperature carbonation curing step converts Mg(OH)2 into magnesium carbonates through reaction with carbon dioxide (CO2), the resulting Mg-based binders can exhibit compressive strength comparable to that achieved by Portland cement after curing for only two days. Although the proposed “cement-from-seawater” process requires similar energy use per ton of cement as existing processes, its potential to achieve a carbon-negative footprint makes it highly attractive to decarbonize one of the most carbon intensive industries.

Keywords

Cement Carbonation Seawater Magnesium Portland cement Curing (chemistry) Materials science Carbon footprint Compressive strength Pulp and paper industry Carbon dioxide Carbon fibers Waste management Environmental science Chemical engineering Chemistry Metallurgy Composite material Organic chemistry Greenhouse gas Engineering

Subject Areas

Magnesium Oxide Properties and Applications ·Materials Chemistry ·Physical Sciences
Layered Double Hydroxides Synthesis and Applications ·Materials Chemistry ·Physical Sciences
Bone Tissue Engineering Materials ·Biomedical Engineering ·Physical Sciences

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