Purpose <p>Reductive soil disinfestation is an effective strategy for removing accumulated nitrate (NO<sub>3</sub><sup>−</sup>-N) from topsoil in intensive vegetable fields via elevating NO<sub>3</sub><sup>−</sup>-N consumption processes due to its water-saturated, strongly reductive, and carbon-rich characteristics. The duration of intensive vegetable cultivation may affect the relative importance of these consuming processes of NO<sub>3</sub><sup>−</sup>-N during reductive soil disinfestation treatment by altering topsoil properties. However, it remains elusive how the duration of intensive vegetable cultivation affects the fates of topsoil NO<sub>3</sub><sup>−</sup>-N during reductive soil disinfestation treatment.</p> Methods <p>Here, a soil column experiment labeled with K<sup>15</sup>NO<sub>3</sub> was conducted to investigate the effects of different cultivation ages (5, 10, 20 and 30&#xa0;years) of intensively managed vegetable fields on the fates of topsoil NO<sub>3</sub><sup>−</sup>-N under reductive soil disinfestation treatment.</p> Results <p>The results showed that more than 91.8% of the added <sup>15</sup>NO<sub>3</sub><sup>−</sup>-N in topsoil was removed by reductive soil disinfestation treatment, regardless of cultivation years. There was a trade-off between denitrification and NO<sub>3</sub><sup>−</sup>-N leaching into the subsoil, collectively accounting for 85.5–97.1% of the added <sup>15</sup>NO<sub>3</sub><sup>−</sup>-N, regardless of cultivation years. The proportion of gaseous <sup>15</sup>N loss via denitrification to added <sup>15</sup>NO<sub>3</sub><sup>−</sup>-N (P<sub>denitrification</sub>) initially increased from 5 to 10&#xa0;years of cultivation, but subsequently decreased with further cultivation ages, whereas the trend was reversed for the proportion of leaching of <sup>15</sup>NO<sub>3</sub><sup>−</sup>-N into the subsoil to added <sup>15</sup>NO<sub>3</sub><sup>−</sup>-N (P<sub>leaching</sub>).</p> Conclusion <p>Overall, our results highlight the critical role of using reductive soil disinfestation in removing accumulated NO<sub>3</sub><sup>−</sup>-N from the topsoil with its fates of a trade-off between P<sub>denitrification</sub> and P<sub>leaching</sub> as ages of intensive vegetable cultivation.</p>

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The duration of intensive vegetable cultivation regulates the fates of accumulated nitrate under reductive soil disinfestation

  • Huimin Zhang,
  • Jing Wang,
  • Nyumah Fallah,
  • Yves Uwiragiye,
  • Yinfei Qian,
  • Yi Cheng,
  • Maoheng Zhang,
  • Zucong Cai,
  • Christoph Müller

摘要

Purpose

Reductive soil disinfestation is an effective strategy for removing accumulated nitrate (NO3-N) from topsoil in intensive vegetable fields via elevating NO3-N consumption processes due to its water-saturated, strongly reductive, and carbon-rich characteristics. The duration of intensive vegetable cultivation may affect the relative importance of these consuming processes of NO3-N during reductive soil disinfestation treatment by altering topsoil properties. However, it remains elusive how the duration of intensive vegetable cultivation affects the fates of topsoil NO3-N during reductive soil disinfestation treatment.

Methods

Here, a soil column experiment labeled with K15NO3 was conducted to investigate the effects of different cultivation ages (5, 10, 20 and 30 years) of intensively managed vegetable fields on the fates of topsoil NO3-N under reductive soil disinfestation treatment.

Results

The results showed that more than 91.8% of the added 15NO3-N in topsoil was removed by reductive soil disinfestation treatment, regardless of cultivation years. There was a trade-off between denitrification and NO3-N leaching into the subsoil, collectively accounting for 85.5–97.1% of the added 15NO3-N, regardless of cultivation years. The proportion of gaseous 15N loss via denitrification to added 15NO3-N (Pdenitrification) initially increased from 5 to 10 years of cultivation, but subsequently decreased with further cultivation ages, whereas the trend was reversed for the proportion of leaching of 15NO3-N into the subsoil to added 15NO3-N (Pleaching).

Conclusion

Overall, our results highlight the critical role of using reductive soil disinfestation in removing accumulated NO3-N from the topsoil with its fates of a trade-off between Pdenitrification and Pleaching as ages of intensive vegetable cultivation.