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Article

Can N-Doped Biochar Achieve Safe Vegetable Production in Soil Heavily Contaminated by Heavy Metals?

1
National Demonstration Center for Environmental and Planning, College of Geography and Environmental Science, Henan University, Kaifeng 475004, China
2
Key Laboratory of Geospatial Technology for the Middle and Lower Yellow River Regions, Henan University, Ministry of Education, Kaifeng 475004, China
3
Henan Engineering Research Center for Control & Remediation of Soil Heavy Metal Pollution, Henan University, Kaifeng 475004, China
*
Authors to whom correspondence should be addressed.
Toxics 2025, 13(2), 79; https://doi.org/10.3390/toxics13020079
Submission received: 16 November 2024 / Revised: 16 January 2025 / Accepted: 21 January 2025 / Published: 23 January 2025
(This article belongs to the Special Issue Assessment and Remediation of Heavy Metal Contamination in Soil)

Abstract

Although the cultivation of food crops in farmland heavily contaminated by heavy metals is prohibited in China, vegetables can still be planted on a small-scale due to their short growth cycles and flexible sale models, posing a significant threat to local consumers. In this study, a pot culture experiment was conducted to investigate the feasibility of safe production through the in-situ stabilization of heavy metals in heavily contaminated soil. The remediation efficiency of wheat straw biochar and N-doped biochar, the growth of spinach, the heavy metal accumulation in spinach, and potential health risks were also explored. The results indicated that both biochar and N-doped biochar significantly affected the soil pH, cation exchange capacity, organic matter, available phosphorus, available potassium, alkaline nitrogen content, and spinach biomass, but the trends were variable. Additionally, the diethylenetriaminepentaacetic-extractable Pb, Cd, Cu, Zn, and Ni concentrations decreased 9.23%, 7.54%, 5.95, 7.44%, and 16.33% with biochar, and 10.46%, 12.91%, 21.98%, 12.62%, and 12.24% with N-doped biochar, respectively. Furthermore, N-doped biochar significantly reduced the accumulation of Pb, Cd, and Ni in spinach by 35.50%, 33.25%, and 30.31%, respectively. Health risk assessment revealed that the non-carcinogenic risk index for adults and children decreased from 17.0 and 54.8 to 16.3 and 52.5 with biochar and 11.8 and 38.2 with N-doped biochar, respectively, but remained significantly higher than the acceptable range (1.0). The carcinogenic risk assessment revealed that the risk posed by Cd in spinach exceeded the acceptable value (10−4) for both adults and children across all treatments. These results may imply that biochar and N-doped biochar cannot achieve the safe production of vegetables in soil heavily contaminated by heavy metals through in-situ stabilization.
Keywords: health risk assessment; modified biochar; remediation; spinach; stabilization health risk assessment; modified biochar; remediation; spinach; stabilization

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MDPI and ACS Style

Chen, M.; Wang, Y.; Pan, J.; Zhong, L.; Qiao, M.; Gao, C.; Li, T.; Wang, Y. Can N-Doped Biochar Achieve Safe Vegetable Production in Soil Heavily Contaminated by Heavy Metals? Toxics 2025, 13, 79. https://doi.org/10.3390/toxics13020079

AMA Style

Chen M, Wang Y, Pan J, Zhong L, Qiao M, Gao C, Li T, Wang Y. Can N-Doped Biochar Achieve Safe Vegetable Production in Soil Heavily Contaminated by Heavy Metals? Toxics. 2025; 13(2):79. https://doi.org/10.3390/toxics13020079

Chicago/Turabian Style

Chen, Ming, Yangzhou Wang, Junchao Pan, Lin Zhong, Mengjiao Qiao, Chenyang Gao, Tianqi Li, and Yangyang Wang. 2025. "Can N-Doped Biochar Achieve Safe Vegetable Production in Soil Heavily Contaminated by Heavy Metals?" Toxics 13, no. 2: 79. https://doi.org/10.3390/toxics13020079

APA Style

Chen, M., Wang, Y., Pan, J., Zhong, L., Qiao, M., Gao, C., Li, T., & Wang, Y. (2025). Can N-Doped Biochar Achieve Safe Vegetable Production in Soil Heavily Contaminated by Heavy Metals? Toxics, 13(2), 79. https://doi.org/10.3390/toxics13020079

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