Zhou Ying, Zou Zhengkang, Wang Mengfei, Wang Yunqiang, Li Junli, Qiu Lingzhi, Cheng Yuxuan, Dai Zhaoyi
School of Chemistry, Chemical Engineering and Life Sciences, Wuhan University of Technology, Wuhan, 430070, People's Republic of China.
Institute of Economic Crops, Hubei Academy of Agricultural Science, Wuhan, 430064, People's Republic of China.
Environ Sci Pollut Res Int. 2023 Apr;30(20):57945-57959. doi: 10.1007/s11356-023-26369-8. Epub 2023 Mar 27.
Cadmium is toxic to plants. The accumulation of cadmium in edible plants such as muskmelon may affect the safe production of crops and result in human health problem. Thus effective measures are urgently needed for soil remediation. This work aims to investigate the effects of nano-ferric oxide and biochar alone or mixture on muskmelon under cadmium stress. The results of growth and physiological indexes showed that compared with the application of cadmium alone, the composite treatment (biochar and nano-ferric oxide) decreased malondialdehyde content by 59.12% and ascorbate peroxidase activity increased by 276.6%. Their addition can increase the stress resistance of plants. The results of soil analysis and cadmium content determination in plants showed that the composite treatment was beneficial to reduce the cadmium content in various parts of muskmelon. In the presence of high concentration of cadmium, the Target Hazard Quotient value of peel and flesh of muskmelon in the composite treatment was less than 1, which means the edible risk was greatly reduced. Furthermore, the addition of composite treatment increased the content of effective components; the contents of polyphenols, flavonoids, and saponins in the flesh of the compound treatment were increased by 99.73%, 143.07%, and 18.78% compared with the cadmium treatment. The results provide a technical reference for the further application of biochar combined with nano-ferric oxide in the field of soil heavy metal remediation, and provide a theoretical basis for further research on reducing the toxicity of cadmium to plants and improving the edible quality of crops.
镉对植物有毒害作用。镉在甜瓜等可食用植物中的积累可能会影响作物的安全生产,并导致人类健康问题。因此,迫切需要采取有效的土壤修复措施。本研究旨在探讨纳米氧化铁和生物炭单独或混合使用对镉胁迫下甜瓜的影响。生长和生理指标结果表明,与单独施用镉相比,复合处理(生物炭和纳米氧化铁)使丙二醛含量降低了59.12%,抗坏血酸过氧化物酶活性提高了276.6%。它们的添加可以提高植物的抗逆性。土壤分析和植物中镉含量测定结果表明,复合处理有利于降低甜瓜各部位的镉含量。在高浓度镉存在下,复合处理的甜瓜果皮和果肉的目标危害商值小于1,这意味着食用风险大大降低。此外,复合处理的添加增加了有效成分的含量;与镉处理相比,复合处理果肉中多酚、黄酮和皂苷的含量分别增加了99.73%、143.07%和18.78%。研究结果为生物炭与纳米氧化铁在土壤重金属修复领域的进一步应用提供了技术参考,为进一步研究降低镉对植物的毒性和提高作物食用品质提供了理论依据。