Ireland: Researchers from Trinity College Dublin’s School of Engineering have developed a 3D printed cement-free geopolymer made with a bauxite refining residue that contains over 30% industrial waste. The material is 3D printed, meaning that typical projects can be completed in weeks rather than months, avoiding the need for traditional moulds and formwork, and reducing waste. Construction is also automated and can print complex curves that may be impossible or too expensive to build traditionally, according to Trinity College Dublin. In the trial, conducted at Harcourt Technologies, the team demonstrated how the red-brown material could be mixed, pumped, extruded and printed. According to preliminary assessments, the material could reduce embodied CO₂ emissions by approximately 70% compared to ordinary Portland cement.

Professor Sara Pavia from Trinity College said “This successful trial demonstrates how local industrial residues can be transformed into functional, adaptable and visually distinctive construction materials. The material and method of production and printing essentially delivers two environmental benefits: it reduces dependence on carbon-intensive cements, and creates a high-value use for industrial residues. The significance of the material itself extends beyond cement replacement. It is a flexible binder platform whose composition, rheology, setting behaviour and early-age performance can be tailored to different manufacturing processes and construction applications.”

This work has its roots in a wider research project funded by Research Ireland, SISK, FLI Precast Solutions, McGrath Quarries, Techcrete and Roadstone. The industries bring together their expertise in material development, concrete production, precast manufacturing, construction delivery and digital fabrication. The next challenge is scaling the material from laboratory batches to the quantities and consistency required for industrial equipment. The next steps will focus on mechanical performance, durability, reinforcement, long-term stability, process control and regulatory compliance.

Zimbabwe: China-based Shuntai Investments has reportedly made ‘significant’ progress on its US$200m plant in Chegutu, Mashonaland West Province, and will begin operations in September 2026. The plant itself cost around US$120m, with the rest invested in ‘complementary infrastructure,’ according to The Herald Zimbabwe. This includes a 50MW solar power plant, a packaging facility and a fleet of electric vehicles.

The plant will produce 6000t/day of cement, both bulk and bagged, under the Shuntai brand. Around 400 people will be employed alongside Chinese technical personnel during the initial phase, with total employment expected to reach 1500+ jobs. Shuntai administrator Jack Zhang said that the plant would improve the availability and affordability of cement.

US: Total shipments of Portland and blended cement in the US and Puerto Rico rose by 4% year-on-year to an estimated 5.97Mt in January 2026, according to the latest data from the US Geological Survey. Clinker production, excluding Puerto Rico, rose by 11% year-on-year to an estimated 4.71Mt. Imports of cement and clinker, including Puerto Rico, rose by 19% year-on-year to 1.80Mt. The leading producing states in January 2026 were Alabama, California, Florida, Missouri and Texas. The leading consuming states — Alabama, Arizona, California, Florida and Georgia — received 49% of shipments.

Türkiye: Çimsa has commissioned its new calcium aluminate cement (CAC) production line at its Mersin plant. The investment was US$31.8m and the line has a production capacity of 66,000t/yr. This has increased Çimsa’s CAC production capacity from 131,000t/yr to 197,000t/yr. In February 2024, it increased its CAC capacity from 65,000t/yr to 131,000t/yr.

The company said that it can now meet around 20% of global consumption in markets excluding China.

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