Das Suvendu, Kim Gil Won, Hwang Hyun Young, Verma Pankaj Prakash, Kim Pil Joo
Institute of Agriculture and Life Sciences, Gyeongsang National University, Jinju, South Korea.
Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, Australia.
Front Microbiol. 2019 Jun 18;10:1320. doi: 10.3389/fmicb.2019.01320. eCollection 2019.
The effective utilization of slag fertilizer in agriculture to neutralize soil acidity, improve crop productivity, mitigate greenhouse gas emissions, and stabilize heavy metals in contaminated soils turns it into a high value added product in sustainable agriculture. These effects could be due to the shift in microbial metabolism and/or modification of microbial habitats. At the system level, soil microorganisms play an integral role in virtually all ecosystem processes. There is a growing interest to reveal the underlying mechanisms of slag-microbe interactions and the contribution of soil biota to ecosystem functioning. In this perspective, we discuss the possible driving mechanisms of slag-microbe interactions in soil and how these slag-microbe interactions can affect crop yield, greenhouse gas emissions, soil carbon sequestration, and heavy metal stabilization in contaminated soils. In addition, we discuss the problems and environmental concerns in using slag in agriculture. Emphasis has been given for further research to validate the proposed mechanisms associated with slag-microbe interactions for increasing soil quality, crop productivity, and mitigating environmental consequences. While evaluating the slag amendment, effects on agriculture and environment, the potential risks, socio-economics, techno-economics, and ethics should be assessed.
炉渣肥料在农业中的有效利用,可中和土壤酸度、提高作物产量、减少温室气体排放并使污染土壤中的重金属稳定化,从而使其成为可持续农业中的高附加值产品。这些效果可能归因于微生物代谢的转变和/或微生物栖息地的改变。在系统层面,土壤微生物在几乎所有生态系统过程中都发挥着不可或缺的作用。人们越来越有兴趣揭示炉渣与微生物相互作用的潜在机制以及土壤生物群对生态系统功能的贡献。从这个角度出发,我们讨论了土壤中炉渣与微生物相互作用的可能驱动机制,以及这些炉渣与微生物的相互作用如何影响作物产量、温室气体排放、土壤碳固存和污染土壤中重金属的稳定化。此外,我们还讨论了农业中使用炉渣存在的问题和环境问题。重点是进一步开展研究,以验证与炉渣与微生物相互作用相关的机制,从而提高土壤质量、作物产量并减轻环境影响。在评估炉渣改良剂对农业和环境的影响时,应评估潜在风险、社会经济学、技术经济学和伦理问题。