青海湖流域农田生态系统氢氧同位素特征及其水分利用变化研究
水分条件是直接影响农作物产量高低的主要限制因子之一,但对青海湖流域油菜和燕麦植物水分利用方式的认识尚不清楚。论文收集油菜和燕麦整个生育期内降水、植物和土壤水氢氧稳定同位素组成,并通过直接对比法和多源混合模型定量地计算出油菜和燕麦对不同深度土壤水分利用比例。结果表明:降水中同位素组成表征出较大的波动性变化,浅层土壤水同位素组成受蒸发作用影响明显富集于深层土壤水分,且土壤水中同位素在垂直方向上呈浅层土壤水较富集于深层土壤水。油菜在生育期内根系吸水方式在浅层和深层土壤间发生明显的转换,如在蕾薹期、开花期、灌浆期及成熟期主要依赖于0~10 cm(95.1%)、0~10 cm(68%和44.8%)、30...
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Published in | 自然资源学报 Vol. 32; no. 8; pp. 1348 - 1359 |
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Main Author | |
Format | Journal Article |
Language | Chinese |
Published |
九江学院旅游与国土资源学院,江西九江,332005%中国科学院流域地理学重点实验室,中国科学院南京地理与湖泊研究所,南京210008
2017
北京师范大学地理科学学部资源学院,北京100875%北京师范大学地理科学学部资源学院,北京,100875%中国科学院流域地理学重点实验室,中国科学院南京地理与湖泊研究所,南京210008%江西省地震局,南昌,330039 |
Subjects | |
Online Access | Get full text |
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Summary: | 水分条件是直接影响农作物产量高低的主要限制因子之一,但对青海湖流域油菜和燕麦植物水分利用方式的认识尚不清楚。论文收集油菜和燕麦整个生育期内降水、植物和土壤水氢氧稳定同位素组成,并通过直接对比法和多源混合模型定量地计算出油菜和燕麦对不同深度土壤水分利用比例。结果表明:降水中同位素组成表征出较大的波动性变化,浅层土壤水同位素组成受蒸发作用影响明显富集于深层土壤水分,且土壤水中同位素在垂直方向上呈浅层土壤水较富集于深层土壤水。油菜在生育期内根系吸水方式在浅层和深层土壤间发生明显的转换,如在蕾薹期、开花期、灌浆期及成熟期主要依赖于0~10 cm(95.1%)、0~10 cm(68%和44.8%)、30~60 cm(69.9%)及0~10 cm(38.8%)的土壤水分。而燕麦根系吸水范围却没有表征出明显的改变,在整个生育期内土壤水分利用深度在0~30 cm间变化。这将为高寒地区耕作方式调整及发展节水高效的现代农业提供理论依据。 |
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Bibliography: | Brassica napus; Avena sativa; soil water; precipitation; growing season; mixing Iso Sources model; Qinghai Lake Watershed LI Jing1, WU Hua-wu2,3, LI Xiao-yan3, HE Bin2, PEI Ting-ting3, JIANG Zhi-yun3, BAO Zhi-cheng3 (1. Tourism School, Jiujiang College, Jiujiang 332005, China; 2. Key Laboratory of Watershed Geographic Sciences, Nanjing Institute of Geography and Lirrmology, CAS, Nanjing 210008, China; 3. School of Natural Resources, Faculty of Geographical Science, Beijing Normal University, Beijing 100875, China; 4. Earthquake Administration of Jiangxi Province, Nanchang 330039, China) Water condition is commonly considered as an important factor affecting the yields of crops. The water use patterns of Brassica napus and Avena sativa during the growing season remain unclear in the Qinghai Lake watershed. In this paper, the stable isotope compositions in precipitation, plant xylem of Brassica napus and Avena sativa and soil water during the entire growing season were collected and the utilization ratios of soil |
ISSN: | 1000-3037 |
DOI: | 10.11849/zrzyxb.20160766 |