AI Article Synopsis

  • The use of petroleum oils in cold regions has led to long-lasting soil pollution, posing serious environmental risks due to the harsh conditions that allow these pollutants to persist for over 20 years.
  • Microbial bioremediation is a cost-effective method to clean up oil pollutants, but traditional techniques take longer to work in cold environments.
  • Recent advancements in biotechnology, like biostimulation and bioaugmentation, aim to improve the efficiency of hydrocarbon removal, and the review also discusses various approaches and a bibliometric analysis of related research.

Article Abstract

The increased usage of petroleum oils in cold regions has led to widespread oil pollutants in soils. The harsh environmental conditions in cold environments allow the persistence of these oil pollutants in soils for more than 20 years, raising adverse threats to the ecosystem. Microbial bioremediation was proposed and employed as a cost-effective tool to remediate petroleum hydrocarbons present in soils without significantly posing harmful side effects. However, the conventional hydrocarbon bioremediation requires a longer time to achieve the clean-up standard due to various environmental factors in cold regions. Recent biotechnological improvements using biostimulation and/or bioaugmentation strategies are reported and implemented to enhance the hydrocarbon removal efficiency under cold conditions. Thus, this review focuses on the enhanced bioremediation for hydrocarbon-polluted soils in cold regions, highlighting in situ and ex situ approaches and few potential enhancements via the exploitation of molecular and microbial technology in response to the cold condition. The bibliometric analysis of the hydrocarbon bioremediation research in cold regions is also presented.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8143585PMC
http://dx.doi.org/10.3390/biology10050354DOI Listing

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