4.7 Article

Stabilization of lead and cadmium in soil by sulfur-iron functionalized biochar: Performance, mechanisms and microbial community evolution

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 425, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.jhazmat.2021.127876

Keywords

Biochar; Sulfide-containing groups; Heavy metals; Soil; Stabilization

Funding

  1. International Cooperation and Exchange Programme [41961144030]
  2. National Natural Science Foundation of China [42007113]
  3. Heilongjiang Postdoctoral Science Foundation [LBH-Z19004]
  4. Heilongjiang Provincial Key Laboratory of Soil Protection and Remediation

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Sulfur-iron functionalized biochar (BC-Fe-S) was designed to stabilize Pb and Cd in soil, and it exhibited excellent stabilization performance. Moreover, the BC-Fe-S improved the diversity and composition of microbial community in the soil.
Sulfur-iron functionalized biochar (BC-Fe-S) was designed by simultaneously supporting Fe2O3 nanoparticles and grafting sulfur-containing functional groups onto biochar to stabilize Pb and Cd in soil. The BC-Fe-S exhibited excellent stabilization performance for Pb and Cd with fast kinetic equilibrium within 5 days associating with pseudo-second-order model. The bioavailable-Pb and -Cd contents decreased by 59.22% and 70.28% with 3% BC-Fe-S treatment after 20 days of remediation. Speciation transformation analysis revealed that the increase of stabilization time and BC-Fe-S dosage with appropriate soil moisture and pH promoted toxicities decrease of Pb and Cd with transformation of labile fractions to more steady fractions. The labile fractions of Pb and Cd decreased by 12.22% and 16.21% with 3% BC-Fe-S treatment, and transformed to the residual speciation. Meanwhile, wetting-drying and freezing-thawing aging did not markedly alter the bioavailability of Pb and Cd, proving that the BC-Fe-S holds promise for stabilization of Pb and Cd in varying environmental conditions. 16S rRNA sequencing analysis demonstrated that the BC-Fe-S significantly improved diversity and composition of microbial community, especially increasing the relative abundance of heavy metal-resistant bacteria. Overall, these results suggested BC-Fe-S as a high-performance and environmental-friendly amendment with stability to remediate heavy metals polluted soil.

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