Subsurface irrigation with ceramic emitters improves wolfberry yield and economic benefits on the Tibetan Plateau, China

IF 2.7 3区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Mengxue Han, Lin Zhang, Xiaoqiang Liu
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Abstract

Climate warming has led to the expansion of arable land at high altitudes, but it has also increased the demand for water use efficiency (WUE). To address this issue, the development of water-saving irrigation technology has become crucial in improving water productivity and economic returns. This study aimed to assess the impacts of three irrigation methods on water productivity and economic returns in wolfberry (Lycium barbarum L.) cultivation on the Tibetan Plateau, China during a two-year field trial. Results showed that subsurface irrigation with ceramic emitters (SICE) outperformed surface drip irrigation (DI) and subsurface drip irrigation (SDI) in terms of wolfberry yield. Over the two-year period, the average yield with SICE increased by 8.0% and 2.3% compared with DI and SDI, respectively. This improvement can be attributed to the stable soil moisture and higher temperature accumulation achieved with SICE. Furthermore, SICE exhibited higher WUE, with 14.6% and 4.5% increases compared with DI and SDI, respectively. In addition to the agronomic benefits, SICE also proved advantageous in terms of economic returns. Total average annual input costs of SICE were lower than the other two methods starting from the 8th year. Moreover, the benefit-cost ratio of SICE surpassed the other methods in the 4th year and continued to widen the gap with subsequent year. These findings highlight SICE as an economically viable water-saving irrigation strategy for wolfberry cultivation on the Tibetan Plateau. Thus, this research not only provides an effective water-saving irrigation strategy for wolfberry cultivation but also offers insights into addressing irrigation-related energy challenges in other crop production systems.

陶瓷灌溉渠地下灌溉提高了青藏高原枸杞产量和经济效益
气候变暖导致了高海拔地区耕地面积的扩大,但同时也提高了对水资源利用效率(WUE)的要求。为了解决这一问题,发展节水灌溉技术已成为提高水生产力和经济效益的关键。通过为期两年的田间试验,研究了三种灌溉方式对青藏高原枸杞水分生产力和经济效益的影响。结果表明:在枸杞产量方面,陶瓷发射器地下灌溉(SICE)优于地表滴灌(DI)和地下滴灌(SDI)。在两年的时间里,与DI和SDI相比,SICE的平均收益率分别提高了8.0%和2.3%。这种改善可归因于SICE实现了稳定的土壤水分和更高的温度积累。此外,与DI和SDI相比,SICE的WUE分别提高了14.6%和4.5%。除了农艺效益外,SICE在经济回报方面也证明是有利的。从第8年开始,SICE的年平均总投入成本低于其他两种方法。此外,SICE的效益成本比在第4年超过了其他方法,并在随后的年份继续拉大差距。这些研究结果表明,SICE是一种经济可行的枸杞节水灌溉策略。因此,本研究不仅为枸杞种植提供了有效的节水灌溉策略,而且为解决其他作物生产系统中与灌溉相关的能源挑战提供了见解。
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来源期刊
Journal of Arid Land
Journal of Arid Land ENVIRONMENTAL SCIENCES-
CiteScore
4.70
自引率
6.70%
发文量
768
审稿时长
3.2 months
期刊介绍: The Journal of Arid Land is an international peer-reviewed journal co-sponsored by Xinjiang Institute of Ecology and Geography, the Chinese Academy of Sciences and Science Press. It aims to meet the needs of researchers, students and practitioners in sustainable development and eco-environmental management, focusing on the arid and semi-arid lands in Central Asia and the world at large. The Journal covers such topics as the dynamics of natural resources (including water, soil and land, organism and climate), the security and sustainable development of natural resources, and the environment and the ecology in arid and semi-arid lands, especially in Central Asia. Coverage also includes interactions between the atmosphere, hydrosphere, biosphere, and lithosphere, and the relationship between these natural processes and human activities. Also discussed are patterns of geography, ecology and environment; ecological improvement and environmental protection; and regional responses and feedback mechanisms to global change. The Journal of Arid Land also presents reviews, brief communications, trends and book reviews of work on these topics.
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