4.7 Article

Selenium improved the combined remediation efficiency of Pseudomonas aeruginosa and ryegrass on cadmium-nonylphenol co-contaminated soil

Journal

ENVIRONMENTAL POLLUTION
Volume 287, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.envpol.2021.117552

Keywords

Cd-NP co-Contamination; Phytoremediation; Se; P; aeruginosa; Soil microbes

Funding

  1. National Natural Science Foundation of China [41807142, 41571321]
  2. Opening Project of Fujian Universities and Colleges Engineering Research Center of Modern Facility Agriculture [G2-KF2007]
  3. Opening Project of Key Laboratory of Testing and Evaluation for Agro-product Safety and Quality, Ministry of Agriculture and Rural Affairs [NK202101]
  4. Fundamental Research Funds for the Central Universities [BC2021102, BC2021106]

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The application of Pseudomonas aeruginosa and selenium in soil can enhance the plant remediation efficiency of ryegrass on contaminated soil, reducing the removal rates of NP and Cd. The changes in the microbial community in soil caused by the application of P. aeruginosa and Se promote the enrichment of beneficial bacteria and enhance the removal of NP and Cd.
Most chemical plant wastewater contains both organic and inorganic pollutants, which are easy to diffuse along with surface runoff. The combined pollution of nonylphenol (NP) and cadmium (Cd) in soil is a serious problem that has not attracted enough attention. Based on the effects of selenium (Se) and Pseudomonas aeruginosa (P. aeruginosa) on plant and soil microbial communities, we speculated that the application of Se and P. aeruginosa in soil could improve the phytoremediation efficiency of ryegrass on contaminated soil. In this study, pot experiments with Cd and NP co-contaminated soil were conducted, and the results showed that application of P. aeruinosa alone could improve the removal rates of NP and Cd by ryegrass, and the supple-mentary of Se further enhanced the effect of micro-phyto remediation, with the highest removal rates of NP and Cd were 79.6% and 49.4%, respectively. The application of P. aeruginosa plus Se reduced the adsorption of Cd and NP through C-O and Si-O-Fe of the soil, changed the enzyme activity, and also affected the changing trend of the microbial community in soil. Pseudomonas, Sphingomonadales, Nitrospira, and other beneficial bacteria were enriched after a 60-day period with P. aeruginosa and Se treatment, thus promoting the removal of NP and Cd. In light of the above results, we suggest that P. aeruginosa application can efficiently facilitate the phytor-emediation of ryegrass on Cd-NP co-contaminated soil, and Se supplementation in soil showed the synergistic effect on the remediation.

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