探索生物过滤在减少小型或陈旧垃圾填埋场有害气体排放方面的潜力:综述。

IF 3.1 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biodegradation Pub Date : 2024-08-01 Epub Date: 2024-05-15 DOI:10.1007/s10532-024-10082-5
El Farouk Omar Merouani, Milad Ferdowsi, Gerardo Buelna, J Peter Jones, El-Hadi Benyoussef, Luc Malhautier, Michèle Heitz
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引用次数: 0

摘要

垃圾填埋被广泛用作固体废物处理的主要方式。然而,这种做法会产生垃圾填埋气 (LFG),其中含有甲烷 (CH4)(一种强效温室气体)以及各种挥发性有机化合物和挥发性无机化合物。垃圾填埋场排放的这些气体约占大气中甲烷(CH4)总量的 25%,这表明在将垃圾填埋气(LFG)排放到大气中之前,必须对其进行估值或处理。本综述首先概述了垃圾填埋场、废物处置和价值化、垃圾填埋气处理通常采用的传统气体处理技术(如火炬和热氧化)。此外,它还探讨了生物技术方法,这些方法在技术上和经济上都是可行的,可用于减少垃圾填埋气的排放,尤其是在小型和老化垃圾填埋场,因为这些填埋场的甲烷浓度通常低于 3% v/v。最后,本综述强调生物过滤器是最适合垃圾填埋气(LFG)处理的生物技术解决方案,并讨论了在垃圾填埋场环境中实施生物过滤器的优势和挑战。
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Exploring the potential of biofiltration for mitigating harmful gaseous emissions from small or old landfills: a review.

Landfills are widely employed as the primary means of solid waste disposal. However, this practice generates landfill gas (LFG) which contains methane (CH4), a potent greenhouse gas, as well as various volatile organic compounds and volatile inorganic compounds. These emissions from landfills contribute to approximately 25% of the total atmospheric CH4, indicating the imperative need to valorize or treat LFG prior to its release into the atmosphere. This review first aims to outline landfills, waste disposal and valorization, conventional gas treatment techniques commonly employed for LFG treatment, such as flares and thermal oxidation. Furthermore, it explores biotechnological approaches as more technically and economically feasible alternatives for mitigating LFG emissions, especially in the case of small and aged landfills where CH4 concentrations are often below 3% v/v. Finally, this review highlights biofilters as the most suitable biotechnological solution for LFG treatment and discusses several advantages and challenges associated with their implementation in the landfill environment.

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来源期刊
Biodegradation
Biodegradation 工程技术-生物工程与应用微生物
CiteScore
5.60
自引率
0.00%
发文量
36
审稿时长
6 months
期刊介绍: Biodegradation publishes papers, reviews and mini-reviews on the biotransformation, mineralization, detoxification, recycling, amelioration or treatment of chemicals or waste materials by naturally-occurring microbial strains, microbial associations, or recombinant organisms. Coverage spans a range of topics, including Biochemistry of biodegradative pathways; Genetics of biodegradative organisms and development of recombinant biodegrading organisms; Molecular biology-based studies of biodegradative microbial communities; Enhancement of naturally-occurring biodegradative properties and activities. Also featured are novel applications of biodegradation and biotransformation technology, to soil, water, sewage, heavy metals and radionuclides, organohalogens, high-COD wastes, straight-, branched-chain and aromatic hydrocarbons; Coverage extends to design and scale-up of laboratory processes and bioreactor systems. Also offered are papers on economic and legal aspects of biological treatment of waste.
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