A review of the prospects, efficacy and sustainability of nanotechnology-based approaches for oil spill remediation.

IF 3.7 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Ramchandra Prajapat, Himanshu Yadav, Aabid Hussain Shaik, Bandaru Kiran, Rohit Sunil Kanchi, Saboor Shaik, Zafar Said, Mohammed Rehaan Chandan, Samarshi Chakraborty
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Abstract

Numerous marine oil spill incidents and their environmental catastrophe have raised the concern of the research community and environmental agencies on the topic of the offshore crude oil spill. The oil transport through oil tankers and pipelines has further aggravated the risk of the oil spill. This has led to the necessity to develop an effective, environment-friendly, versatile oil spill clean-up strategy. The current review article analyses various nanotechnology-based methods for marine oil spill clean-up, focusing on their recovery rate, reusability and cost. The authors weighed the three primary factors recovery, reusability and cost distinctively for the analysis based on their significance in various contexts. The findings and analysis suggest that magnetic nanomaterials and nano-sorbent have been the most effective nanotechnology-based marine oil spill remediation techniques, with the magnetic paper based on ultralong hydroxyapatite nanowires standing out with a recovery rate of over 99%. The chitosan-silica hybrid nano-sorbent and multi-wall carbon nanotubes are also promising options with high recovery rates of up to 95-98% and the ability to be reused multiple times. Although the photocatalytic biodegradation approach and the nano-dispersion method do not offer benefits for recovery or reusability, they can nevertheless help lessen the negative ecological effects of marine oil spills. Therefore, careful evaluation and selection of the most appropriate method for each marine oil spill situation is crucial. The current review article provides valuable insights into the current state of nanotechnology-based marine oil spill clean-up methods and their potential applications.

审查基于纳米技术的溢油修复方法的前景、功效和可持续性。
大量的海洋溢油事件及其造成的环境灾难引起了研究界和环保机构对近海原油泄漏问题的关注。通过油轮和管道进行的石油运输进一步加剧了石油泄漏的风险。因此,有必要开发一种有效、环保、多功能的溢油清理策略。本评论文章分析了各种基于纳米技术的海洋溢油清理方法,重点关注其回收率、可重复使用性和成本。作者根据回收率、可重用性和成本这三个主要因素在不同情况下的重要性,对其进行了权衡分析。研究结果和分析表明,磁性纳米材料和纳米吸附剂是最有效的基于纳米技术的海洋溢油修复技术,其中基于超长羟基磷灰石纳米线的磁性纸尤为突出,其回收率超过 99%。壳聚糖-二氧化硅混合纳米吸附剂和多壁碳纳米管也是很有前景的选择,其回收率高达 95-98%,并可多次重复使用。虽然光催化生物降解方法和纳米分散方法在回收或重复使用方面没有优势,但它们有助于减轻海洋油类泄漏对生态环境的负面影响。因此,针对每种海洋溢油情况仔细评估和选择最合适的方法至关重要。本综述文章就基于纳米技术的海洋溢油清理方法的现状及其潜在应用提供了宝贵的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Waste Management & Research
Waste Management & Research 环境科学-工程:环境
CiteScore
8.50
自引率
7.70%
发文量
232
审稿时长
4.1 months
期刊介绍: Waste Management & Research (WM&R) publishes peer-reviewed articles relating to both the theory and practice of waste management and research. Published on behalf of the International Solid Waste Association (ISWA) topics include: wastes (focus on solids), processes and technologies, management systems and tools, and policy and regulatory frameworks, sustainable waste management designs, operations, policies or practices.
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