Fang Xin, Lee Xinqing, Twagirayezu Gratien, Cheng Hongguang, Lu Hongyu, Huang Shenglan, Deng Linbo, Ji Bo
State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550081, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
J Fungi (Basel). 2024 Feb 28;10(3):182. doi: 10.3390/jof10030182.
Cadmium-contaminated soil significantly threatens global food security and human health. This scenario gives rise to significant worries regarding widespread environmental pollution. Biochar and arbuscular mycorrhizal fungi (AMF) can effectively immobilize cadmium in the soil in an environmentally friendly way. Existing studies have separately focused on the feasibility of each in remediating polluted soil. However, their association during the remediation of cadmium-polluted soils remains unclear. This review paper aims to elucidate the potential of biochar, in conjunction with AMF, as a strategy to remediate soil contaminated with cadmium. This paper comprehensively analyzes the current understanding of the processes in cadmium immobilization in the soil environment by examining the synergistic interactions between biochar and AMF. Key factors influencing the efficacy of this approach, such as biochar properties, AMF species, and soil conditions, are discussed. The influences of biochar-AMF interactions on plant growth, nutrient uptake, and overall ecosystem health in cadmium-contaminated environments are highlighted. This review indicates that combining biochar and AMF can improve cadmium immobilization. The presence of AMF in the soil can create numerous binding sites on biochar for cadmium ions, effectively immobilizing them in the soil. Insights from this review contribute to a deeper understanding of sustainable and eco-friendly approaches to remediate cadmium-contaminated soils, offering potential applications in agriculture and environmental management.
镉污染土壤对全球粮食安全和人类健康构成重大威胁。这种情况引发了人们对广泛的环境污染的严重担忧。生物炭和丛枝菌根真菌(AMF)可以以环保的方式有效固定土壤中的镉。现有研究分别聚焦于它们各自修复污染土壤的可行性。然而,在镉污染土壤修复过程中它们之间的关联仍不明确。这篇综述旨在阐明生物炭与AMF联合作为修复镉污染土壤策略的潜力。本文通过研究生物炭与AMF之间的协同相互作用,全面分析了目前对土壤环境中镉固定过程的理解。讨论了影响该方法效果的关键因素,如生物炭性质、AMF种类和土壤条件。强调了生物炭 - AMF相互作用对镉污染环境中植物生长、养分吸收和整体生态系统健康的影响。该综述表明,生物炭与AMF联合可以提高镉的固定。土壤中AMF的存在可以在生物炭上为镉离子创造大量结合位点,从而有效地将它们固定在土壤中。这篇综述的见解有助于更深入地理解修复镉污染土壤的可持续和环保方法,为农业和环境管理提供潜在应用。