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No-tillage mulch with leguminous green manure retention reduces soil evaporation and increases yield and water productivity of maize

Author

Listed:
  • Wang, Feng
  • Wang, Yulong
  • Lyu, Hanqiang
  • Fan, Zhilong
  • Hu, Falong
  • He, Wei
  • Yin, Wen
  • Zhao, Cai
  • Chai, Qiang
  • Yu, Aizhong

Abstract

In the Hexi oasis irrigation area, green manure improves the use efficiency of soil, light, heat and precipitation resources during a long fallow period (from the wheat harvest to the later maize sowing). The work aims to determine the optimal utilization patterns of green manure for reducing maize evapotranspiration (ETc) reduction and improvement of grain yield (GY) and crop water productivity (WPc). A two-year field experiment was conducted at a research station in the Shiyang River Basin (Gansu, China) using a completely randomized design with three replications. Five treatments were involved in this study: (i) conventional tillage fallow and leisure without green manures as a control (CT), (ii) tillage with total of green manures incorporated in the soil (TG), (iii) no-tillage with total green manures mulched on soil surface (NTG), (iv) tillage with root incorporated in the soil and aboveground removal of green manures removed (T), (v) no-tillage with aboveground manures removed (NT). The results showed that the soil bulk density was reduced by 1.4–8.9%, and field capacity was increased by 1.0–4.5% under green manure returning. The soil water storage (SWS) at 0–100 cm soil layer was improved during the maize growing season. Compared with CT, maize evapotranspiration (ETc) was significantly reduced by 7.4% due to the significant decline in soil evaporation (E) by 12.8% under the NTG treatment. On average, the maximum root biomass (RBmax) (26.8 g plant–1), aboveground biomass (ABmax) (421.1 g plant–1), GY (15085.5 kg ha−1) and WPc (3.2 kg m−3) of NTG were significantly increased by 79.7%, 25.3%, 34.3% and 39.2%, respectively. Rising RB and falling ineffective ETc contribute to the increase in GY and WPc. For the spring wheat-maize rotation system, NTG is an ideal green manure returning method for achieving high yield and WPc in the arid oasis irrigation area.

Suggested Citation

  • Wang, Feng & Wang, Yulong & Lyu, Hanqiang & Fan, Zhilong & Hu, Falong & He, Wei & Yin, Wen & Zhao, Cai & Chai, Qiang & Yu, Aizhong, 2023. "No-tillage mulch with leguminous green manure retention reduces soil evaporation and increases yield and water productivity of maize," Agricultural Water Management, Elsevier, vol. 290(C).
  • Handle: RePEc:eee:agiwat:v:290:y:2023:i:c:s0378377423004389
    DOI: 10.1016/j.agwat.2023.108573
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    1. Qi, Zhiming & Helmers, Matthew J. & Kaleita, Amy L., 2011. "Soil water dynamics under various agricultural land covers on a subsurface drained field in north-central Iowa, USA," Agricultural Water Management, Elsevier, vol. 98(4), pages 665-674, February.
    2. Kaur, Lovepreet & Kaur, Anureet & Brar, A.S., 2021. "Water use efficiency of green gram (Vigna radiata L.) impacted by paddy straw mulch and irrigation regimes in north-western India," Agricultural Water Management, Elsevier, vol. 258(C).
    3. Hanjra, Munir A. & Qureshi, M. Ejaz, 2010. "Global water crisis and future food security in an era of climate change," Food Policy, Elsevier, vol. 35(5), pages 365-377, October.
    4. Thidar, Myint & Gong, Daozhi & Mei, Xurong & Gao, Lili & Li, Haoru & Hao, Weiping & Gu, Fengxue, 2020. "Mulching improved soil water, root distribution and yield of maize in the Loess Plateau of Northwest China," Agricultural Water Management, Elsevier, vol. 241(C).
    5. Wang, Feng & Meng, Haofeng & Xie, Ruizhi & Wang, Keru & Ming, Bo & Hou, Peng & Xue, Jun & Li, Shaokun, 2023. "Optimizing deficit irrigation and regulated deficit irrigation methods increases water productivity in maize," Agricultural Water Management, Elsevier, vol. 280(C).
    6. Ahmad, Mobin-ud-Din & Peña-Arancibia, Jorge L. & Stewart, Joel P. & Kirby, John M., 2021. "Water balance trends in irrigated canal commands and its implications for sustainable water management in Pakistan: Evidence from 1981 to 2012," Agricultural Water Management, Elsevier, vol. 245(C).
    7. Li, Mo & Cao, Xiaoxu & Liu, Dong & Fu, Qiang & Li, Tianxiao & Shang, Ruochen, 2022. "Sustainable management of agricultural water and land resources under changing climate and socio-economic conditions: A multi-dimensional optimization approach," Agricultural Water Management, Elsevier, vol. 259(C).
    8. Wang, Chong & Zhao, Jiongchao & Feng, Yupeng & Shang, Mengfei & Bo, Xiaozhi & Gao, Zhenzhen & Chen, Fu & Chu, Qingquan, 2021. "Optimizing tillage method and irrigation schedule for greenhouse gas mitigation, yield improvement, and water conservation in wheat–maize cropping systems," Agricultural Water Management, Elsevier, vol. 248(C).
    9. Zhou, Xinyao & Zhang, Yongqiang & Sheng, Zhuping & Manevski, Kiril & Andersen, Mathias N. & Han, Shumin & Li, Huilong & Yang, Yonghui, 2021. "Did water-saving irrigation protect water resources over the past 40 years? A global analysis based on water accounting framework," Agricultural Water Management, Elsevier, vol. 249(C).
    10. Schmidt, Emily & Zemadim, Birhanu, 2015. "Expanding sustainable land management in Ethiopia: Scenarios for improved agricultural water management in the Blue Nile," Agricultural Water Management, Elsevier, vol. 158(C), pages 166-178.
    11. Kresović, Branka & Tapanarova, Angelina & Tomić, Zorica & Životić, Ljubomir & Vujović, Dragan & Sredojević, Zorica & Gajić, Boško, 2016. "Grain yield and water use efficiency of maize as influenced by different irrigation regimes through sprinkler irrigation under temperate climate," Agricultural Water Management, Elsevier, vol. 169(C), pages 34-43.
    12. Wei, Zheng & Paredes, Paula & Liu, Yu & Chi, Wei Wei & Pereira, Luis S., 2015. "Modelling transpiration, soil evaporation and yield prediction of soybean in North China Plain," Agricultural Water Management, Elsevier, vol. 147(C), pages 43-53.
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