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Life Cycle Assessment of Ordinary Portland Cement (OPC) Using both Problem Oriented (Midpoint) Approach and Damage Oriented Approach (Endpoint)

Busola Dorcas Olagunju, Oludolapo Akanni Olanrewaju

2021IntechOpen eBooks22 citationsDOIOpen Access PDF

Abstract

The concern for environmental related impacts of the cement industry is fast growing in recent times. The industry is challenged with high environmental impact which spans through the entire production process. Life cycle assessment (LCA) evaluates the environmental impact of product or process throughout the cycle of production. This can be done using either or both midpoint (process-oriented) and endpoint (damage-oriented) approaches of life cycle impact assessment (LCIA). This study assessed the environmental impact of 1 kg Ordinary Portland Cement (OPC) using both approaches of LCIA. This analysis was carried out using a data modeled after the rest of the world other than China, India, Europe, US and Switzerland. The dataset was taken from Ecoinvent database incorporated in the SimaPro 9.0.49 software. The result of the analysis showed that clinker production phase produced the highest impact and CO2 is the highest pollutant emitter at both endpoint and midpoint approaches. This is responsible for global warming known to affect both human health and the ecosystem. Also, toxicity in form of emission of high copper affects the ecosystem as well as humans. In addition, high fossil resources (crude oil) are consumed and pose the possibility for scarcity.

Topics & Concepts

Portland cementLife-cycle assessmentClinker (cement)Environmental scienceFossil fuelEnvironmental impact assessmentEngineeringWaste managementProduction (economics)CementMaterials scienceEcologyMetallurgyBiologyEconomicsMacroeconomicsEnvironmental Impact and SustainabilitySustainable Building Design and AssessmentRecycled Aggregate Concrete Performance
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