The Importance of the Targeted Design of Biochar Physicochemical Properties in Microbial Inoculation for Improved Agricultural Productivity—A Review

Важность целенаправленного проектирования физико-химических свойств биоугля при микробной инокуляции для повышения продуктивности сельского хозяйства — обзор
Angelika Gryta, Kamil Skic, Agnieszka Adamczuk, Anna Skic, Magdalena Marciniak, Grzegorz Józefaciuk, Patrycja Boguta
2023-12-24

agricultural productivitybiocharbiochar physicochemical propertiesmicrobial inoculationpyrolysis conditions
Biochar has great potential as a soil conditioner and as a carrier of beneficial microorganisms that support the removal of pollutants, influence the circulation of nutrients, and support plant growth. This review summarizes and discusses factors shaping the physicochemical properties of biochar, including feedstock, pyrolysis conditions, and accompanying processes used as post-pyrolysis modification to improve the functionality of biochar. Key physical and chemical properties such as high porosity and specific surface area, nutrient content, pH, and biochar functional groups are discussed in detail to show biochar’s potential as a carrier for microorganisms. This review also discusses and summarizes biological indicators that allow for assessing the quality and efficiency of the microbiological modifiers. Finally, this paper presents the benefits and limitations of biochar application to agriculture and provides recommendations for future research to improve the quality and expand the applicability of biochar-based inoculants.
1
Biochar can function as a soil conditioner and microbial carrier supporting pollutant removal, nutrient cycling, and plant growth.
2
Biochar-based agricultural inoculants offer benefits but also limitations, requiring targeted property design and further research to expand their applicability.
3
Biological indicators are important for evaluating the quality and effectiveness of microbial modifiers associated with biochar.
4
Feedstock selection, pyrolysis conditions, and post-pyrolysis modification substantially shape biochar properties and functionality.
5
High porosity, large specific surface area, nutrient content, pH, and functional groups determine biochar’s suitability for microbial inoculation.

Biochar-based microbial inoculants for agricultural soil and plant applications

The effects of targeted biochar physicochemical properties on microorganism carrier functionality, inoculant quality and efficiency, and agricultural productivity

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2023-12-24
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Authors
Angelika Gryta
Kamil Skic
Agnieszka Adamczuk
Anna Skic
Magdalena Marciniak
Grzegorz Józefaciuk
Patrycja Boguta
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