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April 27, 2026Scientific Reports0 citationsOpen Access

Analysis of nitrogen and phosphorus dynamics in a paddy field-ditch-pond system in a typical polder area of southern China

YPYanxin PanNorth China University of Water Resources and Electric PowerCYChengfu YuanJiangxi Agricultural UniversitySJSiyuan JingNorth China University of Water Resources and Electric Power

Key Points

  • This research aims to understand the nitrogen and phosphorus dynamics in a paddy field-ditch-pond system in southern China.
  • Conducted water quality monitoring in a paddy field-ditch-pond system during paddy rice growth periods.
  • Measured total nitrogen (TN), total phosphorus (TP), ammonia nitrogen (NH4+-N), nitrate nitrogen (NO3−-N), and orthophosphate (PO43−).
  • Analyzed the temporal and spatial distribution of nitrogen and phosphorus concentrations.
  • TN concentrations in drainage ditches ranged from 1.31 to 3.54 mg·L−1.
  • TP concentrations in drainage ditches ranged from 0.038 to 0.14 mg·L−1.
  • The ditch-pond subsystem demonstrated a purification effect on nitrogen and phosphorus from paddy drainage.

Abstract

As an effective measure for retaining paddy drainage and control agricultural non-point source pollution, the paddy field-ditch-pond system can buffer nitrogen and phosphorus pollutants in field drainage. Few studies have investigated the spatiotemporal dynamics of nitrogen and phosphorus across an integrated paddy field-ditch-pond system in polder landscapes. So in this paper, water quality monitoring through a paddy field-ditch-pond system were conducted in a typical polder area of southern China. Total nitrogen (TN), total phosphorus (TP), ammonia nitrogen (NH4+-N), nitrate nitrogen (NO3−-N) and orthophosphate (PO43−) of the paddy field-ditch-pond system were measured during the growth periods of paddy rice. The temporal and spatial distribution characteristics of nitrogen and phosphorus were analyzed. The results showed that the concentrations of TN and TP ranged from 1.31 to 3.54 mg·L− 1 and 0.038 to 0.14 mg·L− 1, respectively, in the drainage ditches during the paddy rice growth period. The concentrations of TN and TP varied between 0.11 ~ 4.90 mg·L− 1 and 0.02 ~ 0.22 mg·L− 1 in the ponds, respectively. The concentrations of TN, NH4+-N, NO3−-N, TP and PO43− in paddy fields, drainage ditches and ponds showed a decreasing trend from paddy fields to drainage ditches and ponds. The ditch-pond subsystem had a certain interception and purification effect on nitrogen and phosphorus of paddy field drainage water. In the study area, setting up ecological drainage ditches, adopting controlled drainage and growing aquatic plants in drainage ditches can be taken to improve water quality. Findings from this research may provide scientific basis for precise prevention and control of agricultural non-point source pollution in the polder area.

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Cite This Study

Pan et al. (2026) studied this question.

synapsesocial.com/papers/69eefde9fede9185760d4b4fhttps://doi.org/10.1038/s41598-026-50525-y
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