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Updated: July 8th, 2008 05:26 PM GMT-05:00

CERATECH High Performance Green Cement Technology Unveiled For Masonry and General Construction Projects


CERATECH, Inc.

BALTIMORE, MD - On the heels of its success with green sustainable, rapid concrete repair products used by the U.S. Military, State DOT's, Municipalities, and Aviation & Port Authorities throughout the United States, CERATECH, Inc. now offers "extreme green cement technology," engineered specifically for masonry and new construction projects. CERATECH's new "green cement building technology" will be showcased at the Construct Show in Las Vegas, Booth No. 113, June 4th-6th.

The launch of the Fortress Extreme GREEN Masonry System & RediMAX Cement Technology is expected to impact the architectural, engineering, building and manufacturing industries by allowing companies to specify green, high performance block, mortar, grout and concrete made from CERATECH's green sustainable cement binder technology.

Highlighting this technology from CERATECH is the Fortress Extreme GREEN Masonry System, a block, mortar, grout and structural parging system that incorporates CERATECH's ultra-high strength green cement technology to produce structures with superior strengths compared to traditional masonry products and in a condensed timeframe.

Complementing the Fortress Extreme GREEN Masonry System is RediMAX, an ultra-high performance cement binder technology, which serves as an alternative to traditional Portland "Ready Mix" concrete, and consists of 95% "green sustainable," recycled waste materials.

RediMAX is designed for use in all typical construction projects, including footings, foundation walls, retaining walls, elevated slabs, roadways, caissons, columns and more. This green cement technology possesses unmatched performance characteristics, including high early strengths of 3,000 PSI in just 6 hours and 28 day strengths near 10,000 PSI, for increased construction efficiency. Moreover, RediMAX can be effectively placed in ambient temperatures ranging from 30º to 120ºF without the need to follow traditional post hydration curing practices.

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