A comprehensive review of sustainable bioremediation techniques: Eco friendly solutions for waste and pollution management

Narendra Kuppan , Midhila Padman , Manjushree Mahadeva , Subramani Srinivasan , Raajasubramanian Devarajan
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Abstract

Bioremediation, an advanced and environmentally sustainable technology, utilizes biological microorganisms to mitigate pollution. This review combines insights from two perspectives: one focusing on the mechanisms, applications, and types of bioremediation, and the other examining the transformative potential of integrating Internet of Things (IoT), Artificial Intelligence (AI), and biosensors in pollution management. The first perspective delves into the effectiveness of bioremediation in decomposing and detoxifying hazardous substances, emphasizing its cost-effectiveness and eco-friendliness compared to conventional methods. In-situ and ex-situ bioremediation methods are analyzed, along with intrinsic and engineered techniques, and phytoremediation strategies for heavy metal removal. The review underscores the growing importance of bioremediation in addressing industrial effluents, contaminated soils, and groundwater, with future advancements expected to enhance its efficiency and applicability. From the second perspective, recent advancements in IoT, AI, and biosensors are explored for their potential to revolutionize bioremediation and waste management. IoT facilitates real-time monitoring and remote management, AI enhances data analysis and predictive modelling, and biosensors contribute to precise pollutant detection and environmental monitoring. The review highlights the synergistic integration of these technologies, presenting smart bioremediation systems with real-time feedback loops and adaptive capabilities. Together, these technologies offer scalable solutions for environmental pollution mitigation, marking a significant stride towards sustainable environmental management.

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全面回顾可持续生物修复技术:废物和污染管理的生态友好解决方案
生物修复是一种先进的环境可持续技术,它利用生物微生物来减轻污染。本综述结合了两个视角的见解:一个视角侧重于生物修复的机制、应用和类型,另一个视角则探讨了将物联网(IoT)、人工智能(AI)和生物传感器整合到污染管理中的变革潜力。第一个视角深入探讨了生物修复在分解和解毒有害物质方面的有效性,强调与传统方法相比,生物修复具有成本效益和生态友好性。文章分析了原位和非原位生物修复方法、内在和工程技术,以及去除重金属的植物修复策略。综述强调了生物修复在处理工业废水、受污染土壤和地下水方面日益增长的重要性,未来的进步有望提高生物修复的效率和适用性。从第二个角度出发,探讨了物联网、人工智能和生物传感器的最新进展,以了解它们在彻底改变生物修复和废物管理方面的潜力。物联网促进了实时监测和远程管理,人工智能加强了数据分析和预测建模,而生物传感器则有助于污染物的精确检测和环境监测。综述强调了这些技术的协同整合,展示了具有实时反馈回路和自适应能力的智能生物修复系统。这些技术共同为减轻环境污染提供了可扩展的解决方案,标志着向可持续环境管理迈出了重要一步。
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