Abstract:
Despite extensive research demonstrating the technical feasibility of incorporating
waste materials as partial replacements in concrete production, real-world implementation
remains significantly limited. Studies have identified successful applications
of tire rubber as coarse and fine aggregate replacement up to 10%, crushed
glass particles as sand and cement replacement up to 10–15%, and concrete demolition
waste as coarse aggregate replacement up to 30%. This study addresses
the critical research-to-practice gap by exploring multifaceted barriers preventing
engineers and clients from adopting these sustainable alternatives—a novel
contribution that systematically investigates implementation barriers within the
construction industry in Sri Lanka. Key barrier categories were identified through
a comprehensive literature review and stakeholder consultations specific to the
construction industry. Economic feasibility concerns, supply chain infrastructure
deficiencies, technical performance uncertainties, awareness gaps, and reluctance
to adopt new technologies were recognized as primary barriers. Experts identified
the following main concerns: direct costs and initial processing expenses often
outweigh indirect benefits like carbon footprint reduction; maintaining reliable
supplies of recycled materials for large-scale projects presents significant supply
chain challenges; lack of building code compliance, insufficient technical knowledge,
and inadequate guidelines hinder adoption among professionals; and cultural
resistance may prevent acceptance beyond technical considerations. These findings
are context-specific to the construction industry in Sri Lanka, with limited
generalizability to other regions without comparable conditions. These concerns
must be studied thoroughly within the legal, economic, environmental, and social
conditions of the country to motivate adoption. This requires quantitative
data collection and analysis, outlining clear pathways for developing practical
strategies: regulatory framework development, financial incentive mechanisms,
quality-controlled supply chains, and professional training programs tailored to
the construction landscape. These evidence-based efforts facilitate sustainable
construction practices and ensure valuable research transitions from academic inquiry
to practical implementation, benefiting future generations.