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◆ Waste management (New York, N.Y.)2026-08-14

Novel process for valorising excavated clay to produce light weight aggregates by addition of carbonaceous residue, cement and CO2 curing.

Mohamad Hanafi, Umer Majid, Bhaskar Pratim Das, Hossein Baniasadi, Sanandam Bordoloi

原始摘要(英文原文)· Original abstract
This study explores the potential of valorising excavated soft clay as a construction material through the development of novel soft clay aggregates (SCCAs) by the incorporation of a suitable side stream carbonaceous residue from methane pyrolysis. The SCCAs were developed by mixing clay, the carbonaceous residue, and cement at a ratio of 3:1:1 through a cold-bonded aggregate pelletisation process. Furthermore, SCCAs were cured under a 100% CO2 atmosphere for 8 h to precipitate mineralized CaCO3. The analytical investigation revealed that the carbonaceous residue constituted fibrous nanotube-like structures that facilitated an increase in CaCO3 precipitation by 70% with respect to the carbonated aggregates not containing the carbonaceous residue. This calcite precipitation and densification resulted in a point load compressive strength (1.3 MPa) of medium-sized (≥15 mm) SCCAs, equivalent to those of commercially used expanded glass foam aggregates. A proof-of-concept investigation of the cast concrete blocks in which SCCAs replaced 20 vol% of the natural aggregate showed a 7-day compressive strength exceeding 22 MPa, indicating their potential for use in masonry construction in accordance with Eurocode 6. Carbon footprint analysis highlighted that even considering the additional emissions related to the manufacturing steps, concrete manufactured using the aggregate formulation proposed in this study would present a 15% lower footprint, due to the carbon sequestered in the carbonaceous residue. The results of the study hence show the potential application of SCCAs as backfill materials or even for the manufacturing of medium-strength concrete products.
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Novel process for valorising excavated clay to produce light weight aggregates by addition of carbonaceous residue, cement and CO2 curing. — 科研速览 Science Skim