Degradability of biodegradable plastic films and its mulching effects on soil temperature and maize yield in northeastern China
Abstract
Keywords: biodegradable plastic film, film mulching, degradation properties, soil temperature, maize yield
DOI: 10.25165/j.ijabe.20201302.5360
Citation: Zhang W W, Wang L H, Zhou J Q, Zhu K L, Sun S J. Degradability of biodegradable plastic films and its mulching effects on soil temperature and maize yield in northeastern China. Int J Agric & Biol Eng, 2020; 13(2): 146–153.
Keywords
Full Text:
PDFReferences
Chen Z J, Zhang L L, Jiang H, Sun S J. Effects of plastic film mulching and planting density on soil temperature and maize yield in rain-fed area of Northeast China. Chinese Journal of Ecology, 2017; 36(8): 2169–2176. (in Chinese)
Zhao J F, Yang X G, Liu Z J. Influence of climate warming on serious low temperature and cold damage and cultivation pattern of spring maize in Northeast China. Acta Ecologica Sinica, 2009; 29(12): 6544–6551. (in Chinese)
Zhang S L, Lövdahl L, Grip H. Effects of mulching and catch cropping on soil temperature, soil moisture and wheat yield on the Loess Plateau of China. Soil & Tillage Research, 2009; 102: 78–86. (in Chinese)
Bai X, Zhou H P, Xie W Y, Yang Z X, Cheng M, Du Y L. Effects of Different plastic film mulching on soil moistures, temperatures and maize yields. Soils, 2018; 294(2): 193–199. (in Chinese)
Chakraborty D, Nagarajan S, Aggarwal P, Gupta V K, Tomar R K, Garg R N, et al. Effect of mulching on soil and plant water status, and the growth and yield of wheat (Triticum aestivum L.) in a semi-arid environment. Agricultural Water Management, 2008; 95: 1323–1334.
Zhang S L, Li P R, Yang X Y, Wang Z H, Chen X P. Effects of tillage and plastic mulch on soil water, growth and yield of spring-sown maize. Soil & Tillage Research, 2011; 112: 92–97.
Wu Q, Wang Z H, Zheng X R, Zhang J Z, Li W H. Effects of biodegradation film mulching on soil temperature, moisture and yield of cotton under drip irrigation in typical oasis area. Transactions of the CSAE, 2017; 33(16): 135–143. (in Chinese)
Li C, Moore-Kucera J, Lee J. Effects of biodegradable mulch on soil quality. Applied Soil Ecology, 2014; 79: 59–69.
Rutiaga M O, Galan L J, Morales L H, Gordon S H, Imam S H, Orts W J, et al. Mechanical property and biodegradability of cast films prepared from blends of oppositely charged biopolymers. Journal of Polymers and the Environment, 2005; 13: 185–191.
Gao H H, Yan C R, Liu Q, Ding L, Chen B Q, Zhen L. Effects of plastic mulching and plastic residue on agricultural production: A meta-analysis. Science of the Total Environment, 2019; 651: 484–492.
Zhang D, Liu H B, Hu W L, Qin X H, Ma X W, Yan C R, et al. The status and distribution characteristics of residual mulching flm in Xinjiang, China. Journal of Integrative Agriculture, 2016; 15: 2639–2646.
Wang X C, Jin Z L, Zhou X P, Yuan F, Zhu L B, Lei M J, et al. Effects of biodegradable mulch film on soil temperature and moisture and yield and quality of flue-cured tobacco. Chinese Agricultural Science Bulletin, 2016; 32(24): 146–152. (in Chinese)
Shen L X, Lan Y C, Li R F. Effects of different degradable films on soil moisture, temperature and growth of maize. Agricultural Research in the Arid Areas, 2018; 36(1): 200–206. (in Chinese)
Tang W X, Ma Z M. Effects of degradable film degradation properties on soil temperature, moisture, and maize yield. Journal of Agro-Environment Science, 2018; 37(1): 114–123. (in Chinese)
Kasirajan S, Ngouajio M. Polyethylene and biodegradable mulches for agricultural applications: a review. Agronomy for Sustainable Development, 2012; 32(2): 501–529.
Braunack M V, Johnston D B, Price J, Gauthier E. Soil temperature and soil water potential under thin oxodegradable plastic film impact on cotton crop establishment and yield. Field Crops Res, 2015; 184: 91–103.
Raquel C, Artur S, Lopo C. The use of biodegradable mulch films on strawberry crop in Portugal. Scientia Horticulturae, 2014; 173: 65–70.
Guo D X, Guo P Y, Yuan X Y, Dong S Q, Wang D M, Li Y H. Effects of different film mulching on soil moisture, temperature and water use efficiency, yield components of millet. Journal of China Agricultural University, 2017; 22(10): 56–64. (in Chinese)
Shen L X, Wang P, Zhang L L. Degradation property of degradable film and its effect on soil temperature and moisture and maize growth. Transactions of the CSAE, 2012; 28(4): 111–116. (in Chinese)
François T, Lluís M C, Hélène A C. Performance and environmental impact of biodegradable polymers as agricultural mulching films. Chemosphere, 2016; 144: 433–139.
Moreno M M, Moreno A. Effect of different biodegradable and polyethylene mulches on soil properties and production in a tomato crop. Sci. Hortic, 2008; 116: 256–263.
Gu X B, Li Y N, Du Y D. Biodegradable film mulching improves soil temperature, moisture and seed yield of winter oilseed rape (Brassica napus L.). Soil & Tillage Research, 2017; 171: 42–50.
Huo B A, Cui M K, Zhao G J, Wang H. Study on the application effect of biodegradable ecological film. China Agricultural Information, 2016; (4): 88–90. (in Chinese)
Liu R, Sun S J, Zhang W W, Chen Z J, Zhang X D, Zhu K L. The effects of mulching with biodegradable plastic films on soil moisture and thermodynamics as well as maize yield. Journal of Irrigation and Drainage, 2017; 36(12): 25–30. (in Chinese)
Han D M, Hudan T M E B, Wang Z H. Degradation Performance of Biodegradable Membrane and Its Effect on Cotton Soil Water Temperature and Benefit under Drip Irrigation in Northern Xinjiang. Journal of Xinjiang Agricultural University, 2017; 40(6): 434–441. (in Chinese)
Yin M H, Li Y N, Fang H, Chen P P. Biodegradable mulching film with an optimum degradation rate improves soil environment and enhances maize growth. Agricultural Water Management, 2019; 216: 127–137.
Zhao G, Fan Y L, Dang Y, Zhang J J, Li S Z, Wang S Y et al. Effects of biodegradable plastic film mulching on the growth winter wheat on the loess plateau dryland. Arid Zone Research, 2019; 36(2): 339–347. (in Chinese)
Gu H R, Shen G X, Huang L H, Shi J F, Zhao Q J, Giovanni M. Biodegradability and applicability of thermoplastic starch biodegradable mulching film. Journal of Agro-Environment Science, 2009; 28(3): 539–543. (in Chinese)
Yuan H T, Wang L H, Dong L Y, Zhou J L, Zhang S L, Wang H. Degradation performance and the effects on warming and moisture conservation of biodegradable mulching film. Chinese Agricultural Science Bulletin, 2014; 30(23): 166–170. (in Chinese)
Qiao H J, Huang G B, Fen F X, Wang L L. Degradation and its effect on corn growth of biodegradable mulch film. Journal of Gansu Agricultural University, 2008; 43(5): 71–75. (in Chinese)
Faradilla R H F, Lee G, Arns J Y, Roberts J, Martens P, Stenzel M H, et al. Characteristics of a free-standing film from banana pseudostem nanocellulose generated from TEMPO-mediated oxidation. Carbohydrate Polymers, 2017; 174: 1156–1163.
Liu Q, Mu X M, Yuan Z C, Gao H, Zhang R. Degradation of biodegradable mulch film and its effect on growth and yield of maize. Bulletin of Soil and Water Conservation, 2011; 31(6): 126–129. (in Chinese)
Yan C R, He W Q, Liu E L, Lin T, Pasquale M, Liu S, et al. Concept and estimation of crop safety period of plastic film mulching. Transactions of the Chinese Society of Agricultural Engineering, 2015; 31(9): 1–4. (in Chinese)
Qin L J, Li H P, Liu X, Yan C R. Investigation of potato safety period of plastic film mulching in intensive agricultural region of north China. Chinese Journal of Agrometeorology, 2018; 39(3): 168–176. (in Chinese)
Yuan H T, Yu Q L, Jia D X, Dong L Y, Zhang D L, Jia L H, et al. Degradation performance of biodegradable plastic film and their effects on cotton growth. Cotton Science, 2016; 28(6): 602–608. (in Chinese)
Li Z H, Zhang L F, Kang X, Zhao P Y, He W Q, Wei F S. Research of soil environment and fertility of potato grow in dry land mulching degradable plastic film. Chinese Agricultural Science Bulletin, 2011; 27(5): 249–253. (in Chinese)
Wang M, Wang H X, Han Q F, Li R, Zhang R, Jia Z K, et al. Effects of different mulching materials on soil water, temperature, and corn growth. Acta Agronomica Sinica, 2011; 37(7): 1249–1258. (in Chinese)
Sun T, Li G, Ning T Y, Zhang Z M, Mi Q H, Lal R. Suitability of mulching with biodegradable film to moderate soil temperature and moisture and to increase photosynthesis and yield in peanut. Agricultural Water Management, 2018; 214–223.
Li X Y, Peng Z Y, Shi H B, Yan J W, Wang Z C. Effects of different degradable films mulching on soil water potential, temperature and sunflower growth. Transactions of the Chinese Society for Agricultural Machinery, 2015; 46(2): 97–103. (in Chinese)
Hu G R, Wang Q, Song X Y, Li F C, Zhang D K, Zhang E H, et al. Effects of furrow-mulching materials on soil temperature, crop yield and water use efficiency in ridge-furrow rainwater harvesting systems. Chinese Journal of Eco-Agriculture, 2016; 24(5): 590–599. (in Chinese)
Zhang J, Ren X L, Luo S F, Hai J B, Jia Z K. Influences of different covering materials mulching on soil moisture and corn yield. Transactions of the Chinese Society of Agricultural Engineering, 2010; 26(6): 14–19. (in Chinese)
Siwek P, Kalisz A, Domagala-Swiatkiewicz I. The influence of degradable polymer mulches on soil properties and cucumber yield. Agrochimica, 2015; 59: 108–123.
Li J Q. The mechanism study of the influence of plastics film mulch on grain yield and seed quality of spring maize. Journal of Maize Sciences, 2008; 16(5): 87–92, 97. (in Chinese)
Copyright (c) 2020 International Journal of Agricultural and Biological Engineering
This work is licensed under a Creative Commons Attribution 4.0 International License.