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Alternating wide ridges and narrow furrows with film mulching improves soil hydrothermal conditions and maize water use efficiency in dry sub-humid regions
Chenxiao Duan1,2; Guangjie Chen1,2; Yajin Hu1,2
2021
发表期刊Agricultural Water Management
卷号245期号:1页码:2-14
摘要

The ridge-furrow mulching system (RFMS) is widely used to improve crop yields and water use efficiency in arid
and semi-arid rainfed agricultural regions. However, the effects of RFMS on hydrothermal states and maize (Zea
mays L.) yields in dry sub-humid regions remain unclear. The objective of this study was to determine the in-
fluence of ridge-furrow construction and plastic film mulching on soil moisture and temperature, evapotrans-
piration (ET), maize growth and yield, water use efficiency (WUE), and thermal time use efficiency (TUE) in dry
sub-humid regions of the Loess Plateau. A three-year field study was conducted in which four different planting
practices were evaluated: (1) alternating wide ridges and narrow furrows with film mulching (WRM), (2)
alternating equal-width ridges and furrows with film mulching (ERM), (3) equal row spacing in flat plot with half
film mulching (EFM), and (4) conventional flat plot without mulching (CK). The results demonstrated that at
early maize growth stages, soil water storage within the 0–200 cm soil profile and soil temperatures were
increased for mulching treatments compared with CK. RFMS utilized soil water efficiently by increasing rain-
water harvesting efficiency and transpiration while decreasing soil evaporation. RFMS significantly increased soil
temperature in the ridges by 4.0–4.4 ◦ C and reduced diurnal soil temperature amplitude in the furrows, thereby
increasing soil thermal time. These positive effects of RFMS compared with CK improved maize growth and crop
yields because of adequate absorption and utilization of water and thermal resources. RFMS increased average
maize yield by 24.9–32.8%, WUE by 34.1–45.7%, and TUE by 15.9–21.1%. The highest grain yield, WUE, and
TUE were observed with WRM due to its favorable soil hydrothermal conditions. The WRM treatment is a
promising water-saving and high-yielding maize cultivation practice to improve grain yields and resource use
efficiency in dry sub-humid regions.

收录类别中文核心期刊要目总览
文献类型期刊论文
条目标识符sbir.nwafu.edu.cn/handle/361005/10521
专题水保所知识产出(1956---)
作者单位1.Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University
2.Institute of Water Saving Agriculture in Arid Areas of China, Northwest A&F University
推荐引用方式
GB/T 7714
Chenxiao Duan,Guangjie Chen,Yajin Hu. Alternating wide ridges and narrow furrows with film mulching improves soil hydrothermal conditions and maize water use efficiency in dry sub-humid regions[J]. Agricultural Water Management,2021,245(1):2-14.
APA Chenxiao Duan,Guangjie Chen,&Yajin Hu.(2021).Alternating wide ridges and narrow furrows with film mulching improves soil hydrothermal conditions and maize water use efficiency in dry sub-humid regions.Agricultural Water Management,245(1),2-14.
MLA Chenxiao Duan,et al."Alternating wide ridges and narrow furrows with film mulching improves soil hydrothermal conditions and maize water use efficiency in dry sub-humid regions".Agricultural Water Management 245.1(2021):2-14.
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