Remediation Technologies for Metal-Contaminated Soil and Wastewater
A special issue of Sci (ISSN 2413-4155). This special issue belongs to the section "Environmental and Earth Science".
Deadline for manuscript submissions: 31 January 2027 | Viewed by 218
Special Issue Editor
Interests: environmental engineering; wastewater treatment processes; heavy metals; sorption; zeolite; chemical modification of natural zeolite; soil and water remediation
Special Issues, Collections and Topics in MDPI journals
Special Issue Information
Dear Colleagues,
The international journal Sci is pleased to announce a Special Issue on Remediation Technologies for Metal-Contaminated Soil and Wastewater. It is widely recognized that intensive economic development aimed at enhancing human well-being leads to negative consequences for ecosystems. The ever-increasing demand for valuable metal-based raw materials causes the intensification of mining, processing, production and use, and ultimately leads to the often inappropriate disposal of end-of-life metal-containing products. In addition, inadequate wastewater treatment and discharge, as well as excessive use of fertilizers, further contribute to ecosystem degradation. Consequently, rainfall promotes the transfer of heavy metals into water bodies, soils and sediments. Besides the well-known highly toxic heavy metals, such as mercury, lead, cadmium, arsenic, chromium and nickel, attention is increasingly shifting toward emergent heavy metals, including lithium, cobalt, indium, gallium, thallium and antimony, due to their widespread use in electronic devices. Therefore, the development and implementation of environmentally sustainable in situ and ex situ physical, chemical, electrochemical, thermal and biological technologies is critical for contemporary environmental management. Environmental remediation requires interdisciplinary knowledge of environmental chemistry, environmental engineering, water, soil and sediment science and microbiology. Thus, addressing polluted ecosystems poses significant challenges, making the development of innovative remediation techniques a priority for the scientific community. Ultimately, appropriate strategic remediation measures aim to contribute to at least one of the 17 Sustainable Development Goals, particularly SDG 6 (Clean Water and Sanitation), highlighting the critical importance of water as a natural resource for all.
This Special Issue, "Remediation Technologies for Metal-Contaminated Soil and Wastewater", aims to provide a comprehensive platform for the latest advances in remediation technologies targeting metal-contaminated soil and wastewater. It focuses on innovative, sustainable and cost-effective treatment strategies, as well as fundamental studies that improve the understanding of metal behavior, transport and transformation in environmental media.
We welcome original experimental research articles, review papers and case studies that address both conventional and emerging remediation approaches. Contributions that integrate laboratory experiments, field applications, modeling and life cycle or risk assessments are particularly encouraged.
Topics of interest include, but are not limited to, the following:
- Physicochemical remediation technologies (e.g., adsorption, ion exchange, precipitation, membrane processes)
- Electrochemical remediation technologies
- Biological and nature-based solutions (e.g., phytoremediation, bioremediation, microbial processes)
- Soil washing, stabilization/solidification and immobilization techniques
- Integrated and hybrid remediation systems
- Advances in green sustainable remediation technologies
- Remediation of mining-impacted soils and industrial wastewater
- Nanomaterials and advanced functional materials for metal removal
- Use of green sustainable sorbents (zeolites, clays, waste-derived sorbents) for wastewater and soil treatment
- Treatment technologies for wastewater and groundwater
- Recovery and reuse of metals from contaminated matrices
- Field-scale applications, pilot studies and performance evaluation
- Environmental risk assessment and sustainability analysis of remediation technologies
This Special Issue seeks to bridge the gap between fundamental research and practical implementation, contributing to the development of effective strategies for mitigating metal contamination and protecting environmental and public health.
Dr. Marin Ugrina
Guest Editor
Manuscript Submission Information
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Keywords
- heavy metals
- emerging heavy metals
- wastewater treatment
- soil remediation
- sediment remediation
- remediation strategy
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