Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Clinker-Free Cement: A New Reality

View through CrossRef
The search for binders with a lower environmental impact has grown, especially for those with reduced clinker content or even for formulations not used due to the high CO2 emissions associated with their production. In this context, the steel industry, which generates a significant amount of waste and co-products, especially steel aggregates, such as blast furnace slag and basic oxygen slag, can be a source of raw materials for cement plants. For this reason, in search of an innovative alternative with low environmental impact, in this work, a clinker-free cement was developed by mixing waste from steel and civil construction. The results of this study demonstrated the possibility of producing a Portland clinker-free cement, using only solid waste, through a mixture of steel slag from blast furnaces, basic oxygen slag and gypsum residue from civil construction, presenting hydraulic properties compatible with national cement CPIII-32 and CPII E-32, and the European cement CSS 32.5 N. The cement mixtures were also characterized as resistant to sulfate attack. It was found that the basic oxygen slag acted as an alkaline activator, thus enhancing the hydration process of the mixture of blast furnace slag and gypsum.
Title: Clinker-Free Cement: A New Reality
Description:
The search for binders with a lower environmental impact has grown, especially for those with reduced clinker content or even for formulations not used due to the high CO2 emissions associated with their production.
In this context, the steel industry, which generates a significant amount of waste and co-products, especially steel aggregates, such as blast furnace slag and basic oxygen slag, can be a source of raw materials for cement plants.
For this reason, in search of an innovative alternative with low environmental impact, in this work, a clinker-free cement was developed by mixing waste from steel and civil construction.
The results of this study demonstrated the possibility of producing a Portland clinker-free cement, using only solid waste, through a mixture of steel slag from blast furnaces, basic oxygen slag and gypsum residue from civil construction, presenting hydraulic properties compatible with national cement CPIII-32 and CPII E-32, and the European cement CSS 32.
5 N.
The cement mixtures were also characterized as resistant to sulfate attack.
It was found that the basic oxygen slag acted as an alkaline activator, thus enhancing the hydration process of the mixture of blast furnace slag and gypsum.

Related Results

The cement-bone bond is weaker than cement-cement bond in cement-in-cement revision arthroplasty. A comparative biomechanical study
The cement-bone bond is weaker than cement-cement bond in cement-in-cement revision arthroplasty. A comparative biomechanical study
This study compares the strength of the native bone-cement bond and the old-new cement bond under cyclic loading, using third generation cementing technique, rasping and contaminat...
Peculiarities of Portland Cement Clinker Synthesis in the Presence of a Significant Amount of SO3 in a Raw Mix
Peculiarities of Portland Cement Clinker Synthesis in the Presence of a Significant Amount of SO3 in a Raw Mix
Due to the depletion of the raw material base and a technogenic materials addition into a raw mix for the Portland cement clinker synthesis, sulfur and its oxides amount in a raw m...
Real-Time Distributed Fiber Optic Sensing for Cement Sheath Integrity Monitoring
Real-Time Distributed Fiber Optic Sensing for Cement Sheath Integrity Monitoring
ABSTRACT: The integrity of cement sheath is critical to oil and gas effective extraction, in which the cement displacement efficiency and solidify quality are the...
FLY ASH FOUNDATION REINFORCED BY CEMENT–SOIL MIXING PILES
FLY ASH FOUNDATION REINFORCED BY CEMENT–SOIL MIXING PILES
Cement-soil mixing piles have been commonly used to enhance the bearing capacity of fly ash stratum and mitigate the settlement damage to the surrounding environment. However, only...
Behavior of Nano Calcium Carbonate Modified Smart Cement Contaminated with Oil Based Drilling Mud
Behavior of Nano Calcium Carbonate Modified Smart Cement Contaminated with Oil Based Drilling Mud
Abstract As oil and gas exploration and production expands around the world, there are unique challenges in well construction beginning at the seafloor. There are se...
Expanding Cements for Primary Cementing
Expanding Cements for Primary Cementing
Abstract The expansion of cement and the effect of various expansive aids upon oil well cementing compositions have been investigated to determine the amount of e...
An alternative raw material for Portland cement clinker preparation: Meta-schist
An alternative raw material for Portland cement clinker preparation: Meta-schist
Abstract This study investigates the use of meta-schist as an alternative base material to cement clay in clinker production. First, the mineralogical differences between t...
OPTIMASI ENERGI PADA CLINKER GRATE COOLER DI INDUSTRI SEMEN
OPTIMASI ENERGI PADA CLINKER GRATE COOLER DI INDUSTRI SEMEN
The clinker cooling process within the cement cooler is a highly significant aspect of cement production. It not only impacts the quality of clinker but also plays a role in heat r...

Back to Top