" Assessing the impact of biochar on microbes in acidic soils: Alleviating the toxicity of aluminum and acidity".

J Environ Manage

Microelement Research Center, College of Resources and Environment, Huazhong Agricultural University, Wuhan, Hubei, 430070, PR China; The Key Laboratory of Oasis Ecoagriculture, Xinjiang Production and Construction Corps, Shihezi University, Shihezi, Xinjiang, 832000, PR China. Electronic address:

Published: November 2023

AI Article Synopsis

  • Some human activities, like using fertilizers, have made soils more acidic, which can harm crops and the environment.
  • A study found that adding biochar, a natural material, to acidic soil helps reduce harmful aluminum levels and improves soil quality and health.
  • Biochar not only boosts good bacteria in the soil but also helps them work better, leading to healthier crops and better farming practices.

Article Abstract

In arable soils, anthropogenic activities such as fertilizer applications have intensified soil acidification in recent years. This has resulted in frequent environmental problems such as aluminum (Al) and H stress, which negatively impact crop yields and quality in acidic soils. Biochar, as a promising soil conditioner, has attracted much attention globally. The present study was conducted in a greenhouse by setting up 2% biochar rate to investigate how biochar relieves Al hazards in acidic soil by affecting soil quality, soil environment, and soil microbiomes. The addition of biochar significantly improved soil fertility and enzyme activities, which were attributed to its ability to enhance the utilization of soil carbon sources by influencing the activity of soil microorganisms. Moreover, the Al contents were significantly decreased by 66.61-88.83% compared to the C0 level (without biochar treatment). In particular, the results of the Al NMR suggested that forms of Al (Al(OH), Al(OH)+ 2, and Al) were increased by 88.69-100.44% on the surface of biochar, reducing the Al stress on soil health. The combination of biochar and nitrogen (N) fertilizer contributed to the augmentation of bacterial diversity. The application of biochar and N fertilizer increased the relative abundance of the majority of bacterial species. Additionally, the application of biochar and N fertilizer had a significant impact on soil microbial metabolism, specifically in the biosynthesis of secondary metabolites (lipids and organic acids) and carbon metabolic ability. In conclusion, biochar can enhance soil microbial activity and improve the overall health of acidic soil by driving microbial metabolism. This study offers both theoretical and technical guidance for enhancing biochar in acidified soil and promoting sustainable development in farmland production.

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Source
http://dx.doi.org/10.1016/j.jenvman.2023.118796DOI Listing

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