4.7 Article

Recovery of phosphorus from eutrophic water using nano zero-valent iron-modified biochar and its utilization

Journal

CHEMOSPHERE
Volume 284, Issue -, Pages -

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2021.131391

Keywords

Biochar; Phosphorus; Recovery; Eutrophication; Slow-release fertilizer

Funding

  1. Natural Science Foundation of Shandong Province [ZR2020MD006, ZR2019MD042]
  2. Science and Technology Support Plan for Youth Innovation of Colleges in Shandong Province [DC2000000961]

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The study showed that Fe-700-BC can effectively remove phosphorus from water bodies and promote plant growth. Additionally, Fe-700-BC had a good removal effect on different forms of phosphorus but had little impact on the microbial community in the sediment.
Effective removal and recovery of phosphorus (P) from the aquatic environment was of great significance for eutrophication control and P recovery. This study investigated the effects of different environmental conditions on P adsorption by biochar (BC) and the feasibility of applying the P-laden BC as a fertilizer for plant growth. The nano zero-valent iron (nZVI) modified reeds BC prepared at 700 degrees C (Fe-700-BC) had the maximum P adsorption capacity of 95.2 mg g-1, which was higher than those prepared at 300, 500, and 900 degrees C. The addition of Fe-700BC reduced the concentration of total phosphorus (TP) in the overlying water, in which the soluble reactive phosphorus (SRP) almost completely removed, as well as had a certain inhibitory effect on the growth of algae. Simultaneously, Fe-700-BC reduced the contents of different fractions of P (weakly adsorbed inorganic phosphorus (WA-Pi), potential active inorganic phosphorus (PA-Pi), and Fe/Al-bound inorganic phosphorus (Fe/AlPi)) by adsorbing the soluble P released from the sediments, especially in the case of disturbance. Fe-700-BC had no significant effect on the diversity and richness of the microbial community in the sediment. Moreover, P-laden BC was safe and environmentally friendly for application in the soil and tended to increase stem and root length, fresh and dry weight at low doses (0.5 wt%) in wheat planting experiments. The present work could provide a reference for solving the problems related to eutrophication and P deficiency.

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