赵 月, 鲍雪莲, 梁 超, 王 钢, 解宏图. 压实对农田土壤特性的影响及应对措施[J]. 土壤通报, 2023, 54(6): 1457 − 1469. DOI: 10.19336/j.cnki.trtb.2022082304
引用本文: 赵 月, 鲍雪莲, 梁 超, 王 钢, 解宏图. 压实对农田土壤特性的影响及应对措施[J]. 土壤通报, 2023, 54(6): 1457 − 1469. DOI: 10.19336/j.cnki.trtb.2022082304
ZHAO Yue, BAO Xue-lian, LIANG Chao, WANG Gang, XIE Hong-tu. Effects of Compaction on Farmland Soil Properties of Farms and Prevention Measures[J]. Chinese Journal of Soil Science, 2023, 54(6): 1457 − 1469. DOI: 10.19336/j.cnki.trtb.2022082304
Citation: ZHAO Yue, BAO Xue-lian, LIANG Chao, WANG Gang, XIE Hong-tu. Effects of Compaction on Farmland Soil Properties of Farms and Prevention Measures[J]. Chinese Journal of Soil Science, 2023, 54(6): 1457 − 1469. DOI: 10.19336/j.cnki.trtb.2022082304

压实对农田土壤特性的影响及应对措施

Effects of Compaction on Farmland Soil Properties of Farms and Prevention Measures

  • 摘要: 由于人口的高速增长和饮食结构改变所带来的粮食需求增加正引发日益严峻的全球粮食安全问题。在世界各地,随着农业机械化程度的提高,面临土壤压实和土壤肥力持续恶化的问题。虽然集约化的耕作模式和规模化种植制度提升了粮食产量,在一定程度上缓解全球粮食安全,但这种相对单一的耕作模式显著增加了土壤的压力。土壤压实通过增加土壤容重和土壤强度降低土壤孔隙度和土壤水分入渗及持水能力等,对土壤物理特性,特别是水分和养分的存储和供应产生不利影响,严重危害土壤健康。因此土壤压实将逐渐成为限制粮食产量的关键因素之一。本文基于国内外有关土壤压实的研究,综合分析了土壤压实对土壤物理、化学和生物特性的影响和潜在作用机制,并剖析了影响土壤压实的关键因素以及有效解决土壤压实的潜在应对措施。由于影响因素众多且相互制约,致使人们对土壤压实的发生机制尚不清楚。未来对土壤压实的研究仍需不断深入,包括压实对微生物群落结构的影响以及田间试验和室内培养试验方法的优化等,为更积极有效地预防土壤压实、防治土壤退化提供技术支撑。

     

    Abstract: The increased food consumption is producing an increasingly critical global food security issue as a result of the rapid population rise and dietary changes. Soil compaction and soil fertility have been steadily declining due to the growing mechanization of agriculture worldwide. However, the soil pressure has been significantly increased by this relatively isolated agricultural technique. Intensive farming models and large-scale planting systems have enhanced food output and somewhat reduced global food security. Soil compaction reduces soil porosity, soil water infiltration and water holding capacity by increasing soil bulk density and soil strength. At the same time, soil compaction has adverse effects on soil physical properties, especially the storage and supply of water and nutrients, and seriously endangers soil health. Therefore, soil compaction will progressively become a major issue limiting grain productivity. Based on research on soil compaction both domestically and abroad, this study thoroughly examined the impact of soil compaction on soil physical, chemical and biological properties as well as any potential mechanisms of action. It also examined the major contributing factors to soil compaction as well as potential solutions to the problem. However, it is still unclear how these elements interact to cause soil compaction. The research on soil compaction still needs to be improved in the future, including the impact of compaction on microbial community structure and the optimization of field test and indoor cultivation test methods, to provide technical support for more active and effective prevention of soil compaction and soil degradation.

     

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