How Much Material Does Egypt's Construction Industry Actually Waste? We Went Looking for Real Numbers
Published in Earth & Environment and Civil Engineering
A number everyone quotes, but almost no one has actually measured
Ask anyone in construction how much material gets wasted on a typical project, and you'll get a confident answer — often a round number like "10%" or "15%." What you rarely get is a number backed by measurement. In our earlier study on Egypt's construction sector, we mapped out why waste happens — the human, managerial, and site-level causes. But that left an obvious follow-up question unanswered: how much material is actually being lost, material by material, and can we trust what practitioners tell us against what actually happens on real sites?
Building in a reality check
This time, we didn't just ask 113 professionals to estimate waste rates across 14 commonly used materials — from ready-mix concrete and steel reinforcement to sand, mortar, tiles, and paints. We also went and got the receipts. Working with a first-grade contractor, we pulled actual procurement and quantity-surveyor records from three live projects — two bridges and one commercial building in Cairo — and compared what the survey respondents believed was being wasted against what the paperwork actually showed.
That's a step a lot of construction-waste research skips, understandably, because it's slow and depends on contractors being willing to open their books. We also ran the questionnaire itself through a validation process most survey-based studies don't bother with — pilot testing with ten professionals, expert review, and Cronbach's alpha reliability checks — before sending it out to 250 professionals.
What the numbers actually showed
The headline result: estimated waste across materials clustered between 5% and 9% — moderate, not dramatic, but financially real given how much of a project's budget goes into materials. Sand came out worst at 8.56% average waste, followed closely by mortar (8.13%) and masonry (7.94%). On the other end, reinforcement steel was the best-controlled material at just 5.15% — likely because it's expensive enough, and easy enough to track by weight, that sites already treat it carefully.
The part we found most reassuring — and slightly humbling — was the validation step. When we compared survey estimates against the real project data, the two datasets showed a moderate positive correlation (r = 0.62). They didn't match perfectly (there's real variation between, say, a bridge project's deep-foundation concrete waste and a commercial building's), but they moved together well enough to suggest that when practitioners estimate waste, they're not just guessing — they have a reasonably accurate feel for what's actually happening on their sites.
The trust gap: contractors, subcontractors, and owners
One finding that stood out beyond the raw numbers: main contractors were named as both the biggest source of waste (53.1%) and the group most willing to do something about it (55.8%) — a fairly healthy alignment between responsibility and motivation. Subcontractors didn't fare as well: seen as significant contributors to waste, but less willing to act on it, which points to a familiar problem — oversight and accountability don't always reach down to the subcontractor level. Interestingly, project owners, despite having the least hands-on operational role, were seen as more willing to support waste reduction than their day-to-day involvement would suggest — probably driven by reputational or strategic incentives rather than site-level pressure.
Why this matters beyond the numbers
Beyond quantifying waste, respondents estimated that better site controls and management practices could realistically cut overall waste by around 27% — a meaningful number when you consider that materials often account for 50–60% of total project costs. But we were also careful not to oversell that figure: it's an aspirational, stakeholder-estimated ceiling, not a guaranteed outcome, and the sector's own "readiness" to embrace circular-economy practices scored only moderately, with a lot of uncertainty rather than resistance.
Where this leaves us
Taken together with our earlier paper on the causes of waste, this study starts to build something Egypt's construction sector has lacked: an empirically grounded, materially specific benchmark for where waste actually happens and how much it costs. The next step, we think, is turning these numbers into something actionable — material-specific benchmarks that policymakers and contractors can actually measure themselves against, rather than working off the round numbers everyone's been quoting for years.
Read the full paper, "Assessing construction material waste in Egypt through stakeholder estimation," open access in Discover Sustainability (2026) 7:328. https://doi.org/10.1007/s43621-026-02602-5
Authors: Mohamed M. Ghoneim, Abbas Atef Hassan, Osama Morsy Moussa & Ayman Halabya, Department of Civil Engineering, Military Technical College, Cairo, Egypt / Department of Architecture and Urban Planning, Port Said University, Egypt
Follow the Topic
-
Discover Sustainability
A multi-disciplinary, open access, community-focussed journal publishing results from across all fields relevant to sustainability research whilst supporting policy developments that address all 17 of the United Nations Sustainable Development Goals (SDGs).
Related Collections
With Collections, you can get published faster and increase your visibility.
Food, Societies and Sustainability: Contemporary Concerns around Local Food Production and Consumption
Food goes far beyond nutrition. It reflects sociocultural identities and territorial heritage, consumption dynamics, economic development, public policies, sustainability concerns, food production, distribution and consumption. Understanding food production and food products, practices and strategies offers key insights into both historical traditions and contemporary lifestyles. Around the world, food and drink serve as powerful symbols of identity and attract interest through diverse value chains, economic interests and cultural expressions. On the other hand, traditional and local food systems contribute to cultural heritage, biodiversity conservation and sustainability matters from environmental, sociocultural and economic concerns.
The Collection "Food, societies and sustainability: Contemporary concerns around local food production and consumption" explores how food is locally produced, promoted and protected through public and private initiatives, food-based experiences, media platforms, and sustainable dietary and productive practices. It encourages contributions that examine how food concerns are shaped in contemporary societies, how globalization is affecting local food cultures, emphasizing the role of food as both tangible and intangible cultural heritage. Food preferences, food stereotypes, and attitudes towards food sustainability, analysed through the lenses of generational gaps and gender differences are also welcomed. This Collection seeks original research and case studies using both qualitative and quantitative methods.
Keywords: Food Systems, Food culture, Food Production, Locality, Heritage, Tourism, Gastronomy, Agricultural Biodiversity, Livestock Biodiversity, Food Sustainability, Regenerative Tourism.
This Collection supports and amplifies research related to SDG 2, SDG 3, SDG 4, SDG 5, SDG 10, SDG 12, and SDG 17.
Publishing Model: Open Access
Deadline: Sep 30, 2026
Weather and Climate Extremes: A Special Reference to Multidisciplinary Research and Policy Developments
This Collection, titled "Weather and Climate Extremes: A Special Reference to Multidisciplinary Research and Policy Developments," focuses on the increasing global challenges posed by extreme weather events and climate phenomena. As these events intensify due to changing climate patterns, their impacts on ecosystems, infrastructure, human health, and socioeconomic systems become more pronounced, necessitating a multidisciplinary approach to understanding and addressing these complexities.
The Collection aims to bring together research from diverse fields, including atmospheric sciences, hydrology, ecology, engineering, public health, and social sciences. It encourages innovative contributions that explore cutting-edge solutions to predict, manage, and mitigate the effects of climate extremes. Topics may include advanced modelling techniques, nature-based solutions, climate-resilient infrastructure, risk assessment frameworks, and strategies for equitable policy development. The emphasis is placed on integrating scientific understanding with actionable solutions that address vulnerability, resilience, and adaptation.
Moreover, this Collection seeks to foster cross-disciplinary collaborations to bridge the gap between scientific research and policy implementation. By highlighting case studies, theoretical advancements, and practical approaches, it aims to advance the dialogue on climate resilience and inform decision-making processes globally. This platform aspires to serve as a critical resource for researchers, practitioners, and policymakers striving to navigate the escalating challenges of a changing climate.
Given the increasing frequency and intensity of climate extremes, this topic holds critical importance. Such extremes profoundly affect ecosystems, infrastructure, and human livelihoods, demanding coordinated efforts across disciplines to analyse risks, develop mitigation strategies, and inform policy. This Collection seeks to bring together cutting-edge research and innovative approaches from diverse fields, bridging scientific understanding and actionable policy frameworks. The proposed focus areas include, but are not limited to:
• Advances in modelling and forecasting weather and climate extremes
• Impacts on ecosystems, agriculture, water resources, and public health
• Nature-based solutions and climate-resilient infrastructure
• Interdisciplinary frameworks for risk management and adaptation planning
• Policy advancements addressing vulnerability, resilience, and equity
This call aims to engage a broad community of researchers, practitioners, and policymakers to enhance global discourse and support evidence-based decision-making by emphasising multidisciplinary contributions.
This Collection supports and amplifies research related to SDG
Keywords: Weather Extremes Modeling; Climate Change Impacts; Risk Assessment Frameworks; Nature-Based Solutions (NbS); Resilient Infrastructure Design; Equitable Policy Development; Interdisciplinary Climate Research; Adaptation and Mitigation Strategies; Socioeconomic Vulnerability Analysis; Extreme Event Forecasting
Publishing Model: Open Access
Deadline: Feb 28, 2027