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Utilization of soil and fertilizer nitrogen supply under mulched drip irrigation with various water qualities in arid regions

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  • Ma, Chao
  • Wang, Jun
  • Li, Jiusheng

Abstract

Upgrading the efficiency of native soil nitrogen (N) and balancing the N derived from soil and fertilizers under drip irrigation with low-quality water is crucial for reducing N application and curtailing environmental degradation in arid regions. In this study, a control experiment with four N (15N-labeled urea) rates of 0 (F0), 255 (F1), 315 (F2) and 375 kg·ha−1 (F3) was established by applying groundwater (Q1, 1.27 g·l−1), brackish water (Q2, 3.03 g·l−1) and saline water (Q3, 4.90 g·l−1) to differentiate cotton (Gossypium hirsutum L.) uptake from native soil N and fertilizer N by 15N tracer technology. The results indicated that increasing water salinity increased the soil salt content and significantly reduced cotton biomass. The cumulative utilization percentages of soil N (CUSN) and fertilizer N (CUFN) ranged from 7.4% to 14.1% and 35.9–54.5%, respectively, during the growing season. The CUFN decreased with increasing irrigation water salinity. Appropriate nitrogen fertilizer alleviated the salt stress on N uptake. The N rate of 315 kg·ha−1 promoted soil N and fertilizer N uptake and produced higher percentages of utilization of soil N (PUSN) and fertilizer N (PUFN) during the squaring and flower boll stage under Q1 and Q2 irrigation. An N rate of 375 kg·ha−1 significantly increased PUSN under Q3 irrigation, particularly during the mature stage. In addition, high salinity water and N rates caused a larger fertilizer N loss. Considering cotton growth and balance between soil N and fertilizer N, an N rate of 315 kg·ha−1 was suitable for cotton under mulched drip irrigation when applying Q1 and Q2 in arid regions, and 375 kg·ha−1 was recommended for Q3 irrigation. The appropriate addition of nitrogen fertilizer during the flower boll stage will promote cotton growth under brackish water.

Suggested Citation

  • Ma, Chao & Wang, Jun & Li, Jiusheng, 2023. "Utilization of soil and fertilizer nitrogen supply under mulched drip irrigation with various water qualities in arid regions," Agricultural Water Management, Elsevier, vol. 280(C).
  • Handle: RePEc:eee:agiwat:v:280:y:2023:i:c:s0378377423000847
    DOI: 10.1016/j.agwat.2023.108219
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    1. Lu, Junsheng & Hu, Tiantian & Zhang, Baocheng & Wang, Li & Yang, Shuohuan & Fan, Junliang & Yan, Shicheng & Zhang, Fucang, 2021. "Nitrogen fertilizer management effects on soil nitrate leaching, grain yield and economic benefit of summer maize in Northwest China," Agricultural Water Management, Elsevier, vol. 247(C).
    2. Allison Gaudinier & Joel Rodriguez-Medina & Lifang Zhang & Andrew Olson & Christophe Liseron-Monfils & Anne-Maarit Bågman & Jessica Foret & Shane Abbitt & Michelle Tang & Baohua Li & Daniel E. Runcie , 2018. "Transcriptional regulation of nitrogen-associated metabolism and growth," Nature, Nature, vol. 563(7730), pages 259-264, November.
    3. Yang, Pengju & Hu, Hongchang & Tian, Fuqiang & Zhang, Zhi & Dai, Chao, 2016. "Crop coefficient for cotton under plastic mulch and drip irrigation based on eddy covariance observation in an arid area of northwestern China," Agricultural Water Management, Elsevier, vol. 171(C), pages 21-30.
    4. Xin Zhang & Eric A. Davidson & Denise L. Mauzerall & Timothy D. Searchinger & Patrice Dumas & Ye Shen, 2015. "Managing nitrogen for sustainable development," Nature, Nature, vol. 528(7580), pages 51-59, December.
    5. Chen, Weiping & Hou, Zhenan & Wu, Laosheng & Liang, Yongchao & Wei, Changzhou, 2010. "Evaluating salinity distribution in soil irrigated with saline water in arid regions of northwest China," Agricultural Water Management, Elsevier, vol. 97(12), pages 2001-2008, November.
    6. Li, Haoru & Mei, Xurong & Wang, Jiandong & Huang, Feng & Hao, Weiping & Li, Baoguo, 2021. "Drip fertigation significantly increased crop yield, water productivity and nitrogen use efficiency with respect to traditional irrigation and fertilization practices: A meta-analysis in China," Agricultural Water Management, Elsevier, vol. 244(C).
    7. Che, Zheng & Wang, Jun & Li, Jiusheng, 2021. "Effects of water quality, irrigation amount and nitrogen applied on soil salinity and cotton production under mulched drip irrigation in arid Northwest China," Agricultural Water Management, Elsevier, vol. 247(C).
    8. Jia, Xucun & Shao, Lijie & Liu, Peng & Zhao, Bingqiang & Gu, Limin & Dong, Shuting & Bing, So Hwat & Zhang, Jiwang & Zhao, Bin, 2014. "Effect of different nitrogen and irrigation treatments on yield and nitrate leaching of summer maize (Zea mays L.) under lysimeter conditions," Agricultural Water Management, Elsevier, vol. 137(C), pages 92-103.
    9. Hou, Zhenan & Chen, Weiping & Li, Xiao & Xiu, Lin & Wu, Laosheng, 2009. "Effects of salinity and fertigation practice on cotton yield and 15N recovery," Agricultural Water Management, Elsevier, vol. 96(10), pages 1483-1489, October.
    10. Hussain, Ghulam & Al-Jaloud, Ali A. & Karimulla, Shaik, 1996. "Effect of treated effluent irrigation and nitrogen on yield and nitrogen use efficiency of wheat," Agricultural Water Management, Elsevier, vol. 30(2), pages 175-184, April.
    11. Godard, C. & Roger-Estrade, J. & Jayet, P.A. & Brisson, N. & Le Bas, C., 2008. "Use of available information at a European level to construct crop nitrogen response curves for the regions of the EU," Agricultural Systems, Elsevier, vol. 97(1-2), pages 68-82, April.
    12. Chen, Peng & Nie, Tangzhe & Chen, Shuaihong & Zhang, Zhongxue & Qi, Zhijuan & Liu, Wanning, 2019. "Recovery efficiency and loss of 15N-labelled urea in a rice-soil system under water saving irrigation in the Songnen Plain of Northeast China," Agricultural Water Management, Elsevier, vol. 222(C), pages 139-153.
    13. Kang, Shaozhong & Hao, Xinmei & Du, Taisheng & Tong, Ling & Su, Xiaoling & Lu, Hongna & Li, Xiaolin & Huo, Zailin & Li, Sien & Ding, Risheng, 2017. "Improving agricultural water productivity to ensure food security in China under changing environment: From research to practice," Agricultural Water Management, Elsevier, vol. 179(C), pages 5-17.
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