不同的物种从生物保留系统中的泄漏来源和机制
Wei Ding1, Huapeng Qin2, Fan Wang3
1Key Laboratory of Ecology and Resource Use of the Mongolian Plateau, Ministry of Education of China, School of Ecology and Environment, Inner Mongolia University, Hohhot 010021, PR China; Eco-environment and Resource Efficiency Research Laboratory, School of Environment and Energy, Peking University Shenzhen Graduate School, Shenzhen 518055, PR China.
Water research
|June 14, 2024
概括
生物保留系统 (BRS) 的泄漏是一个主要问题. 这项研究使用15N追踪来识别源和转换,为控制损失提供了洞察力.
科学领域:
- 环境科学 环境科学
- 水质管理水质管理
- 生物地质化学生物地质化学
背景情况:
- 来自生物保留系统 (BRS) 的 (N) 泄漏限制了它们的有效性.
- 从有影响力和传统来源了解N动态对于缓解至关重要.
研究的目的:
- 区分N漏源 (即时,快速,缓慢) 和NH4+,NO3-和DON的转化过程.
- 为控制 BRS 中的 N 泄漏提供一个框架.
主要方法:
- 使用各种15N物种标签 (15N-NH4+,15N-NO3-,15N-DON) 来追踪N通路.
- 分析了来自BRS内部有影响力和遗留N的N动态.
主要成果:
- NH4+的液主要来自于有机N的快速液和NH4+的缓慢液,由矿化驱动.
- NO3 - - 主要来自缓慢的液,主要来自有机气,受化影响.
- 主要来自缓慢的液,有机N,NH4+和NO3的贡献,受无机N同化影响.
结论:
- 在BRS中成功分配了不同N物种的漂水源和转化过程.
- 为实施有效的流入和遗留N泄漏控制策略提供了有价值的见解.
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