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Application Research of Biochar for the Remediation of Soil Heavy Metals Contamination: A Review

期刊

MOLECULES
卷 25, 期 14, 页码 -

出版社

MDPI
DOI: 10.3390/molecules25143167

关键词

biochar; pyrolysis; heavy metals; soil remediation; bioavailability

资金

  1. National key research and development plan [2018YFC1802800]
  2. Guangdong provincial science and technology program [2015B020237003]
  3. Provincial Science and Technology Plan Project of Guangdong Province, Shao Guan [2018SG00118]
  4. Guangdong Provincial Key Laboratory of Chemical Pollution and Environmental Safety [2019B030301008]

向作者/读者索取更多资源

Soil contamination by heavy metals threatens the quality of agricultural products and human health, so it is necessary to choose certain economic and effective remediation techniques to control the continuous deterioration of land quality. This paper is intended to present an overview on the application of biochar as an addition to the remediation of heavy-metal-contaminated soil, in terms of its preparation technologies and performance characteristics, remediation mechanisms and effects, and impacts on heavy metal bioavailability. Biochar is a carbon-neutral or carbon-negative product produced by the thermochemical transformation of plant- and animal-based biomass. Biochar shows numerous advantages in increasing soil pH value and organic carbon content, improving soil water-holding capacity, reducing the available fraction of heavy metals, increasing agricultural crop yield and inhibiting the uptake and accumulation of heavy metals. Different conditions, such as biomass type, pyrolysis temperature, heating rate and residence time are the pivotal factors governing the performance characteristics of biochar. Affected by the pH value and dissolved organic carbon and ash content of biochar, the interaction mechanisms between biochar and heavy metals mainly includes complexation, reduction, cation exchange, electrostatic attraction and precipitation. Finally, the potential risks of in-situ remediation strategy of biochar are expounded upon, which provides the directions for future research to ensure the safe production and sustainable utilization of biochar.

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