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The use, fate and environmental impacts of plastic films in agriculture

delete2026-07-23
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PRE
AI
J
Jiamin Zeng
王小萍 cover
王小萍 (Xiaoping Wang) *
J
Jie Wang *
H
Huike Dong
Y
Yunqiao Zhou
M
Matthew MacLeod
I
Ian T. Cousins
李彦明 (Yanming Li)
X
Xinghui Xia
M
Martine Graf
D
Davey L. Jones
刘学军 (Xuejun Liu)
DOI:10.1038/s43017-026-00808-9delete
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Abstract

Abstract

En 中文
Plastic agricultural films (PAFs) are widely used to enhance crop productivity, with global use projected to reach 9–14 million tonnes (Mt) per year by 2030. However, their use has led to contamination of soils with microplastics (MPs), nanoplastics and associated chemical additives. In this Review, we synthesize evidence on the global use of PAFs, their environmental fate and strategies to enhance their sustainable application. PAFs deliver substantial agronomic benefits, enhancing crop yields by 7–48% and soil water retention by 9–25%. However, films fragment and degrade under physical erosion, elevated ultraviolet radiation, temperature, humidity, and microbial and faunal activity. As a result, PAF use generates 3–5 Mt yr−1 of largely unmanaged waste, contributing to widespread plastic pollution in agricultural soils. For example, MP concentrations can reach ~13,000 items per kilogram, with PAFs accounting for 10–30%. Conventional polyethylene films degrade slowly and primarily undergo physical fragmentation, whereas biodegradable films fragment more rapidly, with cases of ~30% converted to MPs within 2 years. However, complete mineralization remains limited even for biodegradable materials. Additives in PAFs, including poorly characterized non-intentionally added substances, further increase environmental and toxicological risks, and their release varies substantially with environmental conditions and film type. MPs and additives affect soil health, crop yields and nutrient cycles. Mitigation strategies include substitution with safer additives, developing biodegradable waste-derived bio-based polymers, and conventional film recycling. Future work should improve field monitoring, develop a global database of PAF use and composition, and implement policy innovations to support sustainable PAF systems. Plastic agricultural films enhance crop productivity and support food security, but their use also contaminates soils with plastics and chemical additives. This Review examines the global production and use of agricultural films, their environmental impacts, and strategies to support their sustainable production and use.

Journal

N
Nature Reviews Earth & Environment
IF:
71.5
Papers:
51
Citations:
0

Organization

S
stockholm university
Scholars:
1.6K
Papers: 888
Citations: 0
C
china agricultural university
Scholars:
4.9W
Papers: 2.9W
Citations: 43
B
bangor university
Scholars:
439
Papers: 253
Citations: 0
B
beijing normal university
Scholars:
4.1K
Papers: 1.7K
Citations: 0
C
chinese academy of sciences
Scholars:
54.9W
Papers: 44.5W
Citations: 703
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