Utilization of ferrochrome wastes such as ferrochrome ash and ferrochrome slag in concrete manufacturing
PK Acharya, SK Patro - Waste Management & Research, 2016 - journals.sagepub.com
Waste Management & Research, 2016•journals.sagepub.com
Solid waste management is one of the subjects essentially addressing the current interest
today. Due to the scarcity of land filling area, utilization of wastes in the construction sector
has become an attractive proposition for disposal. Ferrochrome ash (FA) is a dust obtained
as a waste material from the gas cleaning plant of Ferro alloy industries. It possesses the
chemical requirements of granulated slag material used for the manufacture of Portland
cement. Ferrochrome slag (FS) is another residue that is obtained as a solid waste by the …
today. Due to the scarcity of land filling area, utilization of wastes in the construction sector
has become an attractive proposition for disposal. Ferrochrome ash (FA) is a dust obtained
as a waste material from the gas cleaning plant of Ferro alloy industries. It possesses the
chemical requirements of granulated slag material used for the manufacture of Portland
cement. Ferrochrome slag (FS) is another residue that is obtained as a solid waste by the …
Solid waste management is one of the subjects essentially addressing the current interest today. Due to the scarcity of land filling area, utilization of wastes in the construction sector has become an attractive proposition for disposal. Ferrochrome ash (FA) is a dust obtained as a waste material from the gas cleaning plant of Ferro alloy industries. It possesses the chemical requirements of granulated slag material used for the manufacture of Portland cement. Ferrochrome slag (FS) is another residue that is obtained as a solid waste by the smelting process during the production of stainless steel in Ferroalloy industries. FS possesses the required engineering properties of coarse aggregates. The possibility of using FA with lime for partial replacement of ordinary Portland cement (OPC) and FS for total replacement of natural coarse aggregates is explored in this research. The combined effect of FA with lime and FS-addition on the properties of concrete, such as workability, compressive strength, flexural strength, splitting tensile strength and sorptivity, were studied. Results of investigation revealed improvement in strength and durability properties of concrete on inclusion of FA and FS. Concrete mix containing 40% FA with 7% lime (replacing 47% OPC) and100% of FS (replacing 100% natural coarse aggregate) achieved the properties of normal concrete or even better properties at all ages. The results were confirmed by microscopic study such as X-ray diffraction and petrography examination. Environmental compatibility of concrete containing FA and FS was verified by the toxicity characteristic leaching procedure test.
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