Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat Growth

[Objective] To study the effects of brackish water irrigation on soil water and salt characteristics and crop growth is helpful to guide the safe utilization of brackish water. [Methods] A pot experiment of winter wheat was carried out under the condition of rain-shielding. Deionized water was used...

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Main Authors: GAO Weiqiang, ZHANG Tibin, TONG Jiankang, LIU Zhenyuan, LIANG Qing, KUANG Yuxin, CHENG Yu, FENG Hao
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/20240639
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author GAO Weiqiang
ZHANG Tibin
TONG Jiankang
LIU Zhenyuan
LIANG Qing
KUANG Yuxin
CHENG Yu
FENG Hao
author_facet GAO Weiqiang
ZHANG Tibin
TONG Jiankang
LIU Zhenyuan
LIANG Qing
KUANG Yuxin
CHENG Yu
FENG Hao
author_sort GAO Weiqiang
collection DOAJ
description [Objective] To study the effects of brackish water irrigation on soil water and salt characteristics and crop growth is helpful to guide the safe utilization of brackish water. [Methods] A pot experiment of winter wheat was carried out under the condition of rain-shielding. Deionized water was used as the control (CK). Three kinds of brackish water treatments with conductivity of 4 dS/m and different sodium-potassium ratios were set up, including sodium-potassium ratio of 1∶0 (T1), sodium-potassium ratio of 1∶1 (T2), sodium-potassium ratio of 0∶1 (T3). The water-salt characteristics of the soil, the photosynthetic physiology, growth and development as well as yield formation of winter wheat were studied. [Results] Compared with CK, the 0-40 cm soil moisture content under T1, T2 and T3 brackish water irrigation increased by 19%, 8% and 14% (p<0.05), respectively. Soil EC1∶5 (soil water ratio 1∶5 extract conductivity) and Na+ and K+ concentrations continued to increase with the growth period of winter wheat. The 0-40 cm soil salinity of T1, T2 and T3 treatments increased by 252%, 223% and 234% (p<0.05), respectively, and most of the salt accumulated in the 10-20 cm soil layer. The net photosynthetic rate of winter wheat was significantly reduced (by 16%, p<0.05) in the T1 treatment compared to CK, while there was no significant differences (p>0.05) between the T2 and T3 treatments and CK. The T2 treatment enhanced plant height, leaf area per plant and aboveground dry matter mass of winter wheat, and increased the yield by 8.41% (p<0.05) compared to CK; while there was no significant difference in underground dry matter mass among treatments (p>0.05). [Conclusion] In summary, irrigation using 4 dS/m brackish water changed the original water-salt characteristics of the soil, caused salts to accumulate in the soil and promoted winter wheat growth in the short term. In this study, the use of brackish water with a sodium-potassium ratio of 1∶1 had a better effect on winter wheat growth and yield enhancement. The results can provide a theoretical basis for sustainable utilization of brackish water.
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publisher Editorial Department of Journal of Soil and Water Conservation
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series Shuitu Baochi Xuebao
spelling doaj-art-af3ffb8bf4614a149fdfd910ec8116592025-02-10T07:24:21ZzhoEditorial Department of Journal of Soil and Water ConservationShuitu Baochi Xuebao1009-22422024-12-0138637238010.13870/j.cnki.stbcxb.2024.06.0071009-2242-(2024)06-0372-09Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat GrowthGAO Weiqiang0ZHANG Tibin1TONG Jiankang2LIU Zhenyuan3LIANG Qing4KUANG Yuxin5CHENG Yu6FENG Hao7Key Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling, Shaanxi 712100, ChinaKey Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling, Shaanxi 712100, ChinaKey Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling, Shaanxi 712100, ChinaKey Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling, Shaanxi 712100, ChinaKey Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling, Shaanxi 712100, ChinaInstitute for Soil and Water Conservation, Chinese Academy of Science and Ministry of Water Resources, Yangling, Shaanxi 712100, ChinaKey Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling, Shaanxi 712100, ChinaKey Laboratory of Agricultural Soil and Water Engineering in Arid and Semiarid Areas, Ministry of Education, Northwest A&F University, Yangling, Shaanxi 712100, China[Objective] To study the effects of brackish water irrigation on soil water and salt characteristics and crop growth is helpful to guide the safe utilization of brackish water. [Methods] A pot experiment of winter wheat was carried out under the condition of rain-shielding. Deionized water was used as the control (CK). Three kinds of brackish water treatments with conductivity of 4 dS/m and different sodium-potassium ratios were set up, including sodium-potassium ratio of 1∶0 (T1), sodium-potassium ratio of 1∶1 (T2), sodium-potassium ratio of 0∶1 (T3). The water-salt characteristics of the soil, the photosynthetic physiology, growth and development as well as yield formation of winter wheat were studied. [Results] Compared with CK, the 0-40 cm soil moisture content under T1, T2 and T3 brackish water irrigation increased by 19%, 8% and 14% (p<0.05), respectively. Soil EC1∶5 (soil water ratio 1∶5 extract conductivity) and Na+ and K+ concentrations continued to increase with the growth period of winter wheat. The 0-40 cm soil salinity of T1, T2 and T3 treatments increased by 252%, 223% and 234% (p<0.05), respectively, and most of the salt accumulated in the 10-20 cm soil layer. The net photosynthetic rate of winter wheat was significantly reduced (by 16%, p<0.05) in the T1 treatment compared to CK, while there was no significant differences (p>0.05) between the T2 and T3 treatments and CK. The T2 treatment enhanced plant height, leaf area per plant and aboveground dry matter mass of winter wheat, and increased the yield by 8.41% (p<0.05) compared to CK; while there was no significant difference in underground dry matter mass among treatments (p>0.05). [Conclusion] In summary, irrigation using 4 dS/m brackish water changed the original water-salt characteristics of the soil, caused salts to accumulate in the soil and promoted winter wheat growth in the short term. In this study, the use of brackish water with a sodium-potassium ratio of 1∶1 had a better effect on winter wheat growth and yield enhancement. The results can provide a theoretical basis for sustainable utilization of brackish water.http://stbcxb.alljournal.com.cn/stbcxben/article/abstract/20240639brackish watersodium-potassium ratiowinter wheatwater and salt distributionphotosynthetic characteristics
spellingShingle GAO Weiqiang
ZHANG Tibin
TONG Jiankang
LIU Zhenyuan
LIANG Qing
KUANG Yuxin
CHENG Yu
FENG Hao
Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat Growth
Shuitu Baochi Xuebao
brackish water
sodium-potassium ratio
winter wheat
water and salt distribution
photosynthetic characteristics
title Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat Growth
title_full Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat Growth
title_fullStr Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat Growth
title_full_unstemmed Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat Growth
title_short Effects of Brackish Water with Different Sodium-Potassium Ratios on Soil Water-Salt Characteristics and Winter Wheat Growth
title_sort effects of brackish water with different sodium potassium ratios on soil water salt characteristics and winter wheat growth
topic brackish water
sodium-potassium ratio
winter wheat
water and salt distribution
photosynthetic characteristics
url http://stbcxb.alljournal.com.cn/stbcxben/article/abstract/20240639
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