数字农科院2.0

Comparative research on monitoring methods for nitrate nitrogen leaching in tea plantation soils

文献类型: 外文期刊

作者: Shenghong Zheng;Kang Ni;Hongling Chai;Qiuyan Ning;Chen Cheng;Huajing Kang;Jianyun Ruan

作者机构:

关键词: Buried lysimeter;Drainage flux;Nitrate leaching;Suction cup sampler;Water balance model

期刊名称: Scientific Reports

ISSN: 2045-2322

年卷期: 2024 年 14 卷 1 期

页码:

收录情况: SCIE(2024版)

摘要: Great concern has long been raised about nitrate leaching in cropland due to its possible environmental side effects in ground water contamination. Here we employed two common techniques to measure nitrate leaching in tea plantation soils in subtropical China. Using drainage lysimeter as a reference method, the adaptability of estimating drainage and nitrate leaching by combining the water balance equation with the suction cup technique was investigated. Results showed that the final cumulative leachate volume for the calculated and measured method was 721.43 mm and 729.92 mm respectively during the study period. However, nitrate concentration exerted great influence in the estimation of nitrate leaching from the suction cup-based method. The cumulative nitrate leaching loss from the lysimeter and suction cup-based method was 47.45 kg ha−1 and 43.58 kg ha−1 under lysimeter nitrate concentrations ranging from 7 mg L−1 to 13 mg L−1, 156.28 kg ha−1 and 79.95 kg ha−1 under lysimeter nitrate concentrations exceeding 13 mg L−1. Therefore, the suction cup-based method could be an alternative way of monitoring nitrate leaching loss within a range of 7–13 mg L−1 of nitrate concentrations in leachate. Besides, lower results occurred in suction cup samplers due to lack of representative samples which mainly leached via preferential flow when in strong leaching events. Thus, it is advisable to increase sampling frequency under such special conditions. The results of this experiment can serve as a reference and guidance for the application of ceramic cups in monitoring nitrogen and other nutrient-ion leaching in tea plantation soils.

分类号:

  • 相关文献

[1]Improvement of Water Balance Model Based on Wireless Water Sensor. Li Shijuan,Li Shijuan. 2015

[2]Calibration of DNDC model for nitrate leaching from an intensively cultivated region of Northern China. Li, Hu,Wang, Ligang,Qiu, Jianjun,Gao, Maofang,Gao, Chunyun,Li, Hu,Wang, Ligang,Qiu, Jianjun,Gao, Maofang,Gao, Chunyun,Li, Hu,Wang, Ligang,Qiu, Jianjun,Gao, Maofang,Gao, Chunyun,Li, Changsheng. 2014

[3]Efects of straw application on nitrate leaching in fields in the Yellow River irrigation zone of Ningxia, China. Shiqi Yang, Yongsheng Wang, Ruliang Liu, Quanxin Li &, Zhengli Yang. 2018

[4]Modelling the impacts of inhibitors and fertilizer placement on maize yield and ammonia, nitrous oxide and nitrate leaching losses in southwestern Ontario, Canada. Rong Jiang,Jingyi Yang,Craig F. Drury,Brian B. Grant,Ward N. Smith,Wentian He,Daniel W. Reynolds,Ping He. 2023

[5]Improving potato productivity and mitigating nitrogen losses using enhanced-efficiency fertilizers: A global meta-analysis. Zhaolong Pan,Daijia Fan,Rong Jiang,Naeem Abbasi,Daping Song,Guoyuan Zou,Dan Wei,Ping He,Wentian He. 2023

[6]Effect of Long-Term Organic Amendment Application on the Vertical Distribution of Nutrients in a Vertisol. Yu Zhang,Liuge Wu,Xin Zhang,Aixing Deng,Raheem Abdulkareem,Daozhong Wang,Chengyan Zheng,Weijian Zhang. 2022

[7]No significant influence of biochar and manure application on nitrogen fate and sequestration by tomato and garlic crops: A field experiment in California, USA. Gao, Suduan,Duan, Yinghua,Wang, Dong,Turini, Thomas. 2021

[8]Spatial variation in actual and required nitrogen use efficiency and the potential to close the gap by management practices. Luncheng You,Gerard H. Ros,Yongliang Chen,Xuejun Liu,Minggang Xu,Yifei Zhang,Wim de Vries. 2023

[9]Optimizing nitrogen fertilizer application for achieving high yield with low environmental risks in apple orchard. Shenglin Wen,Ningbo Cui,Daozhi Gong,Liwen Xing,Zongjun Wu,Yixuan Zhang,Zhihui Wang,Jiaxin Wang. 2023

[10]Assessing the Fates of Water and Nitrogen on an Open-Field Intensive Vegetable System under an Expert-N System with EU-Rotate_N Model in North China Plain. Yuan Sun,Shaoqing Chen,Puyu Feng,Qing Chen,Kelin Hu. 2024

[11]Assessment and Application of EPIC in Simulating Upland Rice Productivity, Soil Water, and Nitrogen Dynamics under Different Nitrogen Applications and Planting Windows. Tajamul Hussain,Hero T. Gollany,David J. Mulla,Zhao Ben,Muhammad Tahir,Syed Tahir Ata-Ul-Karim,Ke Liu,Saliha Maqbool,Nurda Hussain,Saowapa Duangpan. 2023

[12]Replacing chemical fertilizers with biogas slurry is an environment friendly strategy to reduce the risk of soil nitrogen leaching: evidence from the HYDRUS model simulation. Hang Wang,Haitao Wang,Xiaoyang Liang,Jiandong Wang,Xuefeng Qiu,Chuanjuan Wang. 2024

[13]Hydrochar as a Potential Soil Conditioner for Mitigating H+ Production in the Nitrogen Cycle: A Comparative Study. Yu, Weijia,Zhang, Qingyue,Huai, Shengchang,Jin, Yuwen,Lu, Changai. 2025

[14]Identifying the hotspots of nitrate leaching and its key driving factors in the Yellow River Delta using DNDC model. Song, Jiaxin,Chang, Naijie,Tian, Yi,Ding, Wuhan,Kang, Jiahao,Yi, Xiaopei,Tian, Ye,Li, Hu. 2025

作者其他论文 更多>>