4.7 Review

Challenges and opportunities for low-carbon remediation in the Niger Delta: Towards sustainable environmental management

Journal

SCIENCE OF THE TOTAL ENVIRONMENT
Volume 900, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.scitotenv.2023.165739

Keywords

Cost-effective remediation; Sustainability; Contaminated sites; Niger Delta; Legacy oil spills; Sustainable remediation; Low-carbon remediation

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The article critically reviews and compares various low-carbon remediation methods and finds that bioremediation and phytoremediation are effective technologies for the remediation of oil-contaminated sites in the Niger Delta region. The proposed framework considers multiple goals, such as effective remediation and limited greenhouse gas emissions, while benefiting local communities socially and economically. Policy and regulatory support, stakeholder capacity building, research and development investment, and collaboration are necessary for sustainable remediation practices and environmental sustainability in the region.
There is increasing demand for low-carbon remediation strategies for reducing greenhouse gas emissions and promoting sustainable development in the management of environmental contamination. This trend is within the broader context of sustainable remediation strategies that balance environmental, economic, and social aspects. This article critically reviewed existing literature to evaluate and compare various low-carbon remediation methods, such as bioremediation, phytoremediation, in situ chemical oxidation, soil vapour extraction, and electrokinetic remediation, to identify suitable techniques for the remediation of oil-contaminated sites in the Niger Delta region of Nigeria. We analysed the UK sustainable remediation frameworks (SuRF-UK) to glean lessons for the Nigerian context. Our findings indicate that bioremediation and phytoremediation are particularly promising low-carbon remediation technologies for the Niger Delta region due to their cost-effectiveness and adaptability to local conditions. We proposed a framework that deeply considers opportunities for achieving multiple goals including effective remediation and limited greenhouse gas emissions while returning net social and economic benefit to local communities. The proposed framework will help decision makers to implement effective remediation technologies that meet sustainability indices, integrates emissions considerations return net environmental benefit to local communities. There is a need for policymakers to establish and enforce policies and regulations that support sustainable remediation practises, build the capacity of stakeholders, invest in research and development, and promote collaboration among stakeholders to create a regulatory environment that supports sustainable remediation practises and promotes environmental sustainability in the region. This study provides insights for achieving low-carbon remediation in regions addressing land contamination by different contaminants and facilitates the adoption of remediation technologies that consider contextual socioeconomic and environmental indices for sustainable development.

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