Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali Land

[Objective] In order to reduce soil pollution caused by plastic film, the application effect of using PBAT fully biodegradable plastic film instead of ordinary PE plastic film combined with drip irrigation to grow maize in mild secondary salinized soil was investigated. [Methods] Comparative tests w...

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Main Authors: YANG Zhaoyu, WANG Jing, LÜ Wen, SUN Haojie, REN Hongwu, MA Weiwei, HOU Jiana
Format: Article
Language:zho
Published: Editorial Department of Journal of Soil and Water Conservation 2024-12-01
Series:Shuitu Baochi Xuebao
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Online Access:http://stbcxb.alljournal.com.cn/stbcxben/article/abstract/20240636
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author YANG Zhaoyu
WANG Jing
LÜ Wen
SUN Haojie
REN Hongwu
MA Weiwei
HOU Jiana
author_facet YANG Zhaoyu
WANG Jing
LÜ Wen
SUN Haojie
REN Hongwu
MA Weiwei
HOU Jiana
author_sort YANG Zhaoyu
collection DOAJ
description [Objective] In order to reduce soil pollution caused by plastic film, the application effect of using PBAT fully biodegradable plastic film instead of ordinary PE plastic film combined with drip irrigation to grow maize in mild secondary salinized soil was investigated. [Methods] Comparative tests were conducted on four mulching treatments, including PBAT biodegradable film (black and white) mulching, ordinary black film mulching and open-field cultivated maize without mulching, under three irrigation conditions (2 600, 3 300 and 4 200 m3/hm2) from April to September 2023 in Xinghuocun Experimental Station, Huinong District, Ningxia, and there were 12 treatments in total. The degradability of degradable film and its effect on soil water and salt transport and maize growth were studied. [Results] The water content in the 0-20 cm soil layer under black and white fully biodegradable mulch film was 18.87% and 18.34% higher than that under ordinary PE film, respectively, and 1.16% and 0.72% higher than that without mulching, respectively, and the soil salt content under black and white PBAT fully biodegradable film mulching and ordinary PE film mulching was reduced by 15.01%~23.10% compared with that without mulching (p<0.05). Compared with the non-mulching conditions with 2 600 and 3 300 m3/hm2 irrigation, the yield under black fully biodegradable film mulching increased by 11.88%~16.65%, but the difference was not significant under the irrigation condition of 4 200 m3/hm2. Compared with the yield of 2 600 m3/hm2 irrigation without mulching, the yield of white fully biodegradable film mulching increased by 13.42% under irrigation conditions, but there was no significant difference under 3 300 and 4 200 m3/hm2 irrigation conditions. The water-use efficiency of black and white PBAT fully biodegradable film mulching was increased by 23.31% and 13.50% respectively compared with ordinary PE film mulching. Compared with no-mulching, it increased by 37.63% and 26.69% respectively. [Conclusion] The study suggests that it is feasible to replace ordinary mulch film with degradable mulch film in drip irrigation agricultural production in saline-alkali lands in the irrigation areas along the Yellow River.
format Article
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institution Kabale University
issn 1009-2242
language zho
publishDate 2024-12-01
publisher Editorial Department of Journal of Soil and Water Conservation
record_format Article
series Shuitu Baochi Xuebao
spelling doaj-art-fcd255ed28c54a87ba27eafc75ca06192025-02-10T07:24:20ZzhoEditorial Department of Journal of Soil and Water ConservationShuitu Baochi Xuebao1009-22422024-12-0138634335110.13870/j.cnki.stbcxb.2024.06.0271009-2242-(2024)06-0343-09Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali LandYANG Zhaoyu0WANG Jing1LÜ Wen2SUN Haojie3REN Hongwu4MA Weiwei5HOU Jiana6College of Ecology and Environment, Ningxia University, Yinchuan 750021, ChinaCollege of Ecology and Environment, Ningxia University, Yinchuan 750021, ChinaCollege of Ecology and Environment, Ningxia University, Yinchuan 750021, ChinaCollege of Agriculture, Ningxia University, Yinchuan 750021, ChinaCollege of Forestry and Prataculture, Ningxia University, Yinchuan 750021, ChinaCollege of Ecology and Environment, Ningxia University, Yinchuan 750021, ChinaCollege of Forestry and Prataculture, Ningxia University, Yinchuan 750021, China[Objective] In order to reduce soil pollution caused by plastic film, the application effect of using PBAT fully biodegradable plastic film instead of ordinary PE plastic film combined with drip irrigation to grow maize in mild secondary salinized soil was investigated. [Methods] Comparative tests were conducted on four mulching treatments, including PBAT biodegradable film (black and white) mulching, ordinary black film mulching and open-field cultivated maize without mulching, under three irrigation conditions (2 600, 3 300 and 4 200 m3/hm2) from April to September 2023 in Xinghuocun Experimental Station, Huinong District, Ningxia, and there were 12 treatments in total. The degradability of degradable film and its effect on soil water and salt transport and maize growth were studied. [Results] The water content in the 0-20 cm soil layer under black and white fully biodegradable mulch film was 18.87% and 18.34% higher than that under ordinary PE film, respectively, and 1.16% and 0.72% higher than that without mulching, respectively, and the soil salt content under black and white PBAT fully biodegradable film mulching and ordinary PE film mulching was reduced by 15.01%~23.10% compared with that without mulching (p<0.05). Compared with the non-mulching conditions with 2 600 and 3 300 m3/hm2 irrigation, the yield under black fully biodegradable film mulching increased by 11.88%~16.65%, but the difference was not significant under the irrigation condition of 4 200 m3/hm2. Compared with the yield of 2 600 m3/hm2 irrigation without mulching, the yield of white fully biodegradable film mulching increased by 13.42% under irrigation conditions, but there was no significant difference under 3 300 and 4 200 m3/hm2 irrigation conditions. The water-use efficiency of black and white PBAT fully biodegradable film mulching was increased by 23.31% and 13.50% respectively compared with ordinary PE film mulching. Compared with no-mulching, it increased by 37.63% and 26.69% respectively. [Conclusion] The study suggests that it is feasible to replace ordinary mulch film with degradable mulch film in drip irrigation agricultural production in saline-alkali lands in the irrigation areas along the Yellow River.http://stbcxb.alljournal.com.cn/stbcxben/article/abstract/20240636maizepbatsubsurface drip irrigationwater and salt migration
spellingShingle YANG Zhaoyu
WANG Jing
LÜ Wen
SUN Haojie
REN Hongwu
MA Weiwei
HOU Jiana
Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali Land
Shuitu Baochi Xuebao
maize
pbat
subsurface drip irrigation
water and salt migration
title Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali Land
title_full Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali Land
title_fullStr Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali Land
title_full_unstemmed Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali Land
title_short Effects of PBAT on Soil Water and Salt in Maize Root Zone and Maize Yield in Saline-alkali Land
title_sort effects of pbat on soil water and salt in maize root zone and maize yield in saline alkali land
topic maize
pbat
subsurface drip irrigation
water and salt migration
url http://stbcxb.alljournal.com.cn/stbcxben/article/abstract/20240636
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