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Effects of mulching on water saving, yield increase and emission reduction for maize in China

Author

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  • Cai, Wenjing
  • Gu, Xiaobo
  • Du, Yadan
  • Chang, Tian
  • Lu, Shiyu
  • Zheng, Xiaobo
  • Bai, Dongping
  • Song, Hui
  • Sun, Shikun
  • Cai, Huanjie

Abstract

Mulching, an agricultural management measure widely used in arid and semi-arid regions of China, can effectively improve the hydrothermal environment of farmland and increase crop yield and crop water productivity (WPc). However, previous studies on the effects of mulching on water saving, yield increase and emission reduction of maize have provided inconsistent results. Therefore, a meta-analysis was used in this study to (1) evaluate the effect of mulching types [plastic film (PM), straw (SM) and degradable film (DM)] on maize yield, evapotranspiration, WPc and greenhouse gas emissions; and (2) determine the effects of mulching measures on water saving, yield increase and emission reduction in maize farmland under different climatic conditions. Compared with the no-mulching control, mulching significantly raised maize yield, WPc and carbon dioxide (CO2) and nitrous oxide (N2O) emissions. The PM, SM and DM increased maize yield by 27.31 %, 6.98 % and 16.55 % compared with no-mulching, respectively, and correspondingly WPc by 34.08 %, 11.48 % and 24.20 %. The PM and SM significantly increased CO2 emissions by 39.91 % and 16.43 %, respectively, and N2O emissions by 51.1 % and 30.12 %, but had no significant effect on methane absorption. For maize planting, in areas with altitudes < 500 and > 1000 m, average annual rainfall < 1000 mm, average annual air temperature of 5–15 °C and average annual evaporation < 1500 mm, a combination of PM and ridge–furrow planting can achieve the best effect of increasing production and saving water. In areas with an altitude of 1000–1500 m and average annual evaporation of 1500–2000 mm, the DM had the greatest effect of improving yield (by 16.17 %) and saving water, with a decrease in evapotranspiration of 8.82 % and an increase in WPc of 24.71 %. The local level of mechanization and labor costs should be considered when choosing a maize mulching pattern.

Suggested Citation

  • Cai, Wenjing & Gu, Xiaobo & Du, Yadan & Chang, Tian & Lu, Shiyu & Zheng, Xiaobo & Bai, Dongping & Song, Hui & Sun, Shikun & Cai, Huanjie, 2022. "Effects of mulching on water saving, yield increase and emission reduction for maize in China," Agricultural Water Management, Elsevier, vol. 274(C).
  • Handle: RePEc:eee:agiwat:v:274:y:2022:i:c:s0378377422005017
    DOI: 10.1016/j.agwat.2022.107954
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    References listed on IDEAS

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    1. Ren, Xiaolong & Jia, Zhikuan & Chen, Xiaoli, 2008. "Rainfall concentration for increasing corn production under semiarid climate," Agricultural Water Management, Elsevier, vol. 95(12), pages 1293-1302, December.
    2. Zhao, Hong & Xiong, You-Cai & Li, Feng-Min & Wang, Run-Yuan & Qiang, Sheng-Cai & Yao, Tao-Feng & Mo, Fei, 2012. "Plastic film mulch for half growing-season maximized WUE and yield of potato via moisture-temperature improvement in a semi-arid agroecosystem," Agricultural Water Management, Elsevier, vol. 104(C), pages 68-78.
    3. Gu, Xiaobo & Cai, Huanjie & Fang, Heng & Chen, Pengpeng & Li, Yupeng & Li, Yuannong, 2021. "Soil hydro-thermal characteristics, maize yield and water use efficiency as affected by different biodegradable film mulching patterns in a rain-fed semi-arid area of China," Agricultural Water Management, Elsevier, vol. 245(C).
    4. Xinping Chen & Zhenling Cui & Mingsheng Fan & Peter Vitousek & Ming Zhao & Wenqi Ma & Zhenlin Wang & Weijian Zhang & Xiaoyuan Yan & Jianchang Yang & Xiping Deng & Qiang Gao & Qiang Zhang & Shiwei Guo , 2014. "Producing more grain with lower environmental costs," Nature, Nature, vol. 514(7523), pages 486-489, October.
    5. Chai, Yuwei & Chai, Qiang & Yang, Changgang & Chen, Yuzhang & Li, Rui & Li, Yawei & Chang, Lei & Lan, Xuemei & Cheng, Hongbo & Chai, Shouxi, 2022. "Plastic film mulching increases yield, water productivity, and net income of rain-fed winter wheat compared with no mulching in semiarid Northwest China," Agricultural Water Management, Elsevier, vol. 262(C).
    6. Kar, Gouranga & Kumar, Ashwani, 2007. "Effects of irrigation and straw mulch on water use and tuber yield of potato in eastern India," Agricultural Water Management, Elsevier, vol. 94(1-3), pages 109-116, December.
    7. Chen, Pengpeng & Gu, Xiaobo & Li, Yuannong & Qiao, Linran & Li, Yupeng & Fang, Heng & Yin, Minhua & Zhou, Changming, 2022. "Effects of residual film on maize root distribution, yield and water use efficiency in Northwest China," Agricultural Water Management, Elsevier, vol. 260(C).
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