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一种新的甲醇可溶棕色碳提取方法:对其吸光能力研究的启示。

A new method for extraction of methanol-soluble brown carbon: Implications for investigation of its light absorption ability.

机构信息

Key Laboratory of Tibetan Environment Changes and Land Surface Processes, Institute of Tibetan Plateau Research, Chinese Academy of Sciences, Beijing, 100101, China; LUT School of Engineering Science, Lappeenranta University of Technology, P.O. Box 20, 53851, Lappeenranta, Finland; State Key Laboratory of Cryospheric Sciences, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou, 730000, China.

State Key Laboratory of Cryospheric Sciences, Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou, 730000, China; CAS Center for Excellence in Tibetan Plateau Earth Sciences, Chinese Academy of Sciences, Beijing, 100085, PR China; University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Environ Pollut. 2020 Jul;262:114300. doi: 10.1016/j.envpol.2020.114300. Epub 2020 Mar 2.

Abstract

As an important component of organic carbon (OC), brown carbon (BrC) plays a significant role in radiative forcing in the atmosphere. Water-insoluble OC (WIOC) generally has higher light absorption ability than water-soluble OC (WSOC). The mass absorption cross-section (MAC) of WIOC is normally investigated by dissolving OC in methanol. However, all the current methods have shortcomings due to neglecting the methanol insoluble particulate carbon that is detached from the filter and suspended in methanol extracts, which results in MAC uncertainties of the methanol-soluble BrC and its climate warming estimation. In this study, by investigating typical biomass combustion sourced aerosols from the Tibetan Plateau and ambient aerosols from rural and urban areas in China, we evaluated the light absorption of extractable OC fraction for the existing methods. Moreover, a new method was developed to overcome the methanol insoluble particulate carbon detachment problem to achieve more reliable MAC values. We found that OC can be dissolved in methanol in a short time (e.g., 1 h) and ultrasonic treatment and long-term soaking do not significantly increase the extractable OC fraction. Additionally, we proved that methanol insoluble particulate carbon detachment in methanol does exist in previous methods, causing overestimation of the BrC mass extracted by methanol and thus the underestimation of MAC values. We therefore recommend the newly developed extraction method in this study to be utilized in future related studies to quantitatively obtain the light absorption property of methanol-soluble BrC.

摘要

作为有机碳 (OC) 的重要组成部分,棕色碳 (BrC) 在大气辐射强迫中起着重要作用。水不溶性 OC (WIOC) 通常比水溶性 OC (WSOC) 具有更高的吸光能力。通常通过将 OC 溶解在甲醇中来研究 WIOC 的质量吸收截面 (MAC)。然而,由于忽略了从过滤器上脱落并悬浮在甲醇提取物中的甲醇不溶性颗粒碳,所有当前的方法都存在缺陷,这导致甲醇可溶性 BrC 的 MAC 不确定性及其对气候变暖的估计。在这项研究中,通过研究来自青藏高原的典型生物质燃烧源气溶胶和来自中国农村和城市地区的环境气溶胶,我们评估了现有方法中可提取 OC 部分的吸光性。此外,开发了一种新方法来克服甲醇不溶性颗粒碳脱落问题,以获得更可靠的 MAC 值。我们发现 OC 可以在短时间内(例如 1 小时)溶解在甲醇中,并且超声处理和长时间浸泡不会显著增加可提取的 OC 部分。此外,我们证明了以前的方法中确实存在甲醇中不溶性颗粒碳的脱落问题,导致甲醇提取的 BrC 质量高估,从而低估了 MAC 值。因此,我们建议在未来的相关研究中使用本研究中开发的新提取方法来定量获得甲醇可溶性 BrC 的吸光特性。

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