A Review of Plastic Film Mulching on Water, Heat, Nitrogen Balance, and Crop Growth in Farmland in China

Author:

Zhao Yin123ORCID,Mao Xiaomin23,Li Sien23,Huang Xi23,Che Jiangang1,Ma Changjian45

Affiliation:

1. Shandong Key Laboratory of Eco–Environmental Science for the Yellow River Delta, Binzhou University, Binzhou 256600, China

2. Center for Agricultural Water Research in China, China Agricultural University, Beijing 100083, China

3. National Field Scientific Observation and Research Station on Efficient Water Use of Oasis Agriculture in Wuwei of Gansu Province, Wuwei 733000, China

4. State Key Laboratory of Nutrient Use and Management, Institute of Agricultural Resources and Environment, Shandong Academy of Agricultural Sciences, Jinan 250100, China

5. National Center of Technology Innovation for Comprehensive Utilization of Saline-Alkali Land, Dongying Yellow River Delta Modern Agricultural Research Center, Dongying 257091, China

Abstract

Plastic film mulching has been widely used to improve crop yield and water use efficiency, although the effects of plastic film mulching on water, heat, nitrogen dynamics, and crop growth are rarely presented comprehensively. This study investigated a large number of studies in film mulching fields from the past 10 years (mostly from 2019 to 2023) and summarized the impact of plastic film mulching, progress in modeling with film mulching, and future research directions. The effects of plastic film mulching were intricate and were influenced by film mulching methods, irrigation systems, crop types, crop growth stages, etc. Overall, plastic film mulching showed a positive effect on improving soil water, temperature, and nitrogen status, enhancing crop transpiration and photosynthetic rates, and promoting crop growth and yield, although film mulching may have negative effects, such as increasing rainfall interception, blocking water entering the soil, and reducing net radiation income. The crop yield and water use efficiency could increase by 39.9–84.7% and 45.3–106.4% under various film mulching methods. Coupled models of soil water and heat transport and crop growth under plastic film mulching conditions have been established by considering the effects of plastic film mulching on the upper boundary conditions of soil water and heat, energy budget and distribution processes, and the exchange of latent and sensible heat between soil and atmosphere. The models have good applicability in film mulched farmland of maize, rice, and potato for different regions of China. Further development is needed for soil water, heat, nitrogen migration, and crop growth models under different plastic film mulching methods, and the acquisition of soil and crop indicators under plastic film mulching conditions based on big data support. The study will provide reference for the subsequent development and innovation of plastic film mulching technology.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Water Resource Evaluation Project of Binzhou Hydrological Center

Natural Foundation of Shandong Province

Publisher

MDPI AG

Subject

Agronomy and Crop Science

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