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Soil and Water Conservation Effects of Different Tillage Measures on Mollisols Sloping Farmland in Northeast China
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  • Peizhe Yu,
  • Zhongxue Zhang,
  • Xin Zhou,
  • Zhijuan Qi,
  • Zhihao Yin,
  • Ao Li,
  • Tianqi Yang
Peizhe Yu
Northeast Agricultural University
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Zhongxue Zhang
Northeast Agricultural University

Corresponding Author:[email protected]

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Xin Zhou
Northeast Agricultural University
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Zhijuan Qi
Northeast Agricultural University
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Zhihao Yin
Northeast Agricultural University
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Ao Li
Northeast Agricultural University
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Tianqi Yang
Northeast Agricultural University
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Abstract

[Conventional tillage](https://www.sciencedirect.com/topics/agricultural-and-biological-sciences/conventional-tillage) is still widely used in mollisols sloping farmland, which leads to serious [soil erosion](https://www.sciencedirect.com/topics/earth-and-planetary-sciences/soil-erosion) . Effective farming methods have positive significance for alleviating soil erosion .To prevent and control soil and water loss in mollisols sloping farmland,field experiments were carried out in 2022 with three tillage methods and their combination modes(Subsoiling tillage (SF),Ridge tillage and pitting field (RF),Ridge tillage and pitting field + subsoiling tillage (RF-S),Contour tillage (TP),Contour tillage + ridge tillage and pitting field (TP-R),Contour tillage + subsoiling tillage (TP-S)) to evaluate the effects of soil and water conservation under different tillage methods. The results showed that the contour tillage + ridge field treatment significantly reduced surface runoff and soil loss ( P < 0.05), and there was no nutrient loss. Compared with other treatments, this method significantly reduced runoff, erosion, and nutrient loss. The contour tillage + subsoiling tillage treatment significantly reduced the soil three-phase R value and improved the soil texture, and its yield, harvest index, and water use efficiency were higher than those of other treatments. Considered comprehensively, the results show that contour tillage + subsoiling tillage can reduce soil erosion and improve soil quality and water use efficiency while ensuring high production capacity. Furthermore, the results of this study provide a theoretical basis for conserving soil and water resources, improving soil fertility, and increasing farmland yield in the mollisols area of northeast China.
07 Aug 2023Submitted to Land Degradation & Development
10 Aug 2023Submission Checks Completed
10 Aug 2023Assigned to Editor
14 Aug 2023Review(s) Completed, Editorial Evaluation Pending
16 Aug 2023Editorial Decision: Revise Minor
18 Aug 20231st Revision Received
23 Aug 2023Submission Checks Completed
23 Aug 2023Assigned to Editor
23 Aug 2023Review(s) Completed, Editorial Evaluation Pending
25 Aug 2023Reviewer(s) Assigned
20 Nov 2023Editorial Decision: Revise Minor