Journal of Sustainable Energy and Environmental Technology
The Remediation Paradox: Engineered Nanomaterials, Emerging Contaminants, and the Sustainability of Advanced Environmental Cleanup
Seera Ramkya, Ismail Guru, Nikah Firdos
Volume: 2 | Issue: 1 | Pages: 93-100 | Published: September 2026
Abstract
The proliferation of engineered nanomaterials for environmental remediation represents one of the most promising yet underexamined frontiers of sustainability science. From nano-biochar adsorbents capable of capturing heavy metals and emerging organic contaminants to photocatalytic systems that generate clean hydrogen while degrading pollutants, advanced materials offer unprecedented tools for addressing environmental degradation. Yet the same properties that make these materials effective—high surface area, reactivity, and persistence—also raise concerns about their own environmental fate, toxicity, and long-term sustainability. This article examines the remediation paradox: the tension between the promise of engineered nanomaterials for contaminant removal and the environmental risks their production, use, and disposal may generate. Drawing on recent advances in nano-biochar synthesis, photocatalytic hydrogen production, and tire-derived contaminant research, the analysis develops an integrated assessment framework identifying four critical dimensions—efficacy, environmental fate, life-cycle performance, and scalability—that must be evaluated together rather than in isolation. The article argues that sustainable remediation requires moving beyond material-centric optimization to embrace systemic assessment that accounts for trade-offs across environmental media, temporal scales, and stakeholder interests. Case analyses of 6PPD-quinone contamination, photocatalytic water splitting, and functionalized nano-biochar illustrate how this framework applies in practice, revealing both the potential and the limitations of current approaches. The analysis concludes by proposing research and policy priorities for advancing remediation technologies that are not only effective but also environmentally sound, economically viable, and socially equitable.
environmental remediationengineered nanomaterialsnano-biocharphotocatalysisemerging contaminantssustainability assessmentlife cycle analysis