在异烯二次有机气溶中不平衡行为
Yuzhi Chen1, Rahul A Zaveri1, Gregory W Vandergrift2
1Atmospheric Sciences and Global Change Division, Pacific Northwest National Laboratory, Richland, Washington 99352, United States.
Environmental science & technology
|September 14, 2023
概括
二次有机气溶 (SOA) 的形成处于不平衡状态,即使经过短时间的老化. 这种由SOA相变驱动的不平衡分离会影响大气颗粒的增长.
科学领域:
- 大气化学 大气化学
- 气溶科学 气溶科学
- 环境科学 环境科学
背景情况:
- 即时气体粒子平衡假设不足以预测二级有机气溶 (SOA) 的形成,特别是在相对湿度高的情况下.
- 光化学衰老被认为是影响SOA形成动态的关键因素.
研究的目的:
- 为了确定观察半挥发性有机化合物 (SVOCs) 在约50%的相对湿度下在异烯SOA中不平衡分离的最小老化时间尺度.
- 调查SOA相位状态在不平衡分区中的作用.
主要方法:
- 异 SOA 是通过使用硫酸种子的光氧化生成的.
- SOA通过光化学或在黑暗中老化了0.36小时.
- 陈旧的SOA暴露在新鲜的异二烯SVOC中,并监测了分区行为.
主要成果:
- 均衡分区准确地描述了新鲜的异二烯SOA,但在短短20分钟的老化期后失败了,即使在黑暗中也是如此.
- 建模表明,需要一个半固体SOA相位状态来解释粒子大小分布的演变.
- 离线质谱证实了有机硫酸盐和寡合物的形成,支持推断的相位过渡.
结论:
- 异SOA在老化时迅速地经历相位过渡到不平衡状态,挑战平衡假设.
- 快速过渡到半固体状态对大气中超细颗粒的生长有重大影响.
- 了解SOA相位状态和不平衡分区对于准确的气候建模和空气质量预测至关重要.
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