4.8 Review

Biochar for the removal of contaminants from soil and water: a review

期刊

BIOCHAR
卷 4, 期 1, 页码 -

出版社

SPRINGER SINGAPORE PTE LTD
DOI: 10.1007/s42773-022-00146-1

关键词

Biochar; Heavy metal ions; Organic pollutants; Water; Soil

资金

  1. National Key Research and Development Program of China [2017YFA0207002]
  2. National Natural Science Foundation of China [21906052, U2067215]
  3. Beijing Outstanding Young Scientist Program

向作者/读者索取更多资源

Biochar has significant potential as a material for remediating water and soil due to its widespread availability and favorable physio-chemical surface characteristics. Its efficacy in managing contaminants depends on factors such as pyrolysis temperature, feedstock type, and surface properties. Higher temperature biochar is effective for managing organic pollutants, while lower temperature biochar is suitable for removing polar organic and inorganic pollutants. This review also discusses current obstacles and future research directions in using biochar to immobilize contaminants in water and soil.
Biochar shows significant potential to serve as a globally applicable material to remediate water and soil owing to the extensive availability of feedstocks and conducive physio-chemical surface characteristics. This review aims to highlight biochar production technologies, characteristics of biochar, and the latest advancements in immobilizing and eliminating heavy metal ions and organic pollutants in soil and water. Pyrolysis temperature, heat transfer rate, residence time, and type of feedstock are critical influential parameters. Biochar's efficacy in managing contaminants relies on the pore size distribution, surface groups, and ion-exchange capacity. The molecular composition and physical architecture of biochar may be crucial when practically applied to water and soil. In general, biochar produced at relatively high pyrolysis temperatures can effectively manage organic pollutants via increasing surface area, hydrophobicity and microporosity. Biochar generated at lower temperatures is deemed to be more suitable for removing polar organic and inorganic pollutants through oxygen-containing functional groups, precipitation and electrostatic attraction. This review also presents the existing obstacles and future research direction related to biochar-based materials in immobilizing organic contaminants and heavy metal ions in effluents and soil.

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