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利用废咖啡渣生物炭作为环境多环芳烃的吸附剂和 GC-MS 分析的新萃取方法。

Use of spent coffee ground biochar as ambient PAHs sorbent and novel extraction method for GC-MS analysis.

机构信息

Environmental Chemistry Research Laboratory (ECRL), Department of Chemistry, Faculty of Science, Chiang Mai University, Chiang Mai, 50200, Thailand.

Center of Excellence for Innovation in Chemistry (PERCH-CIC), Faculty of Science, Chiang Mai University, Chiang Mai, 50200, Thailand.

出版信息

Environ Sci Pollut Res Int. 2019 May;26(13):13025-13040. doi: 10.1007/s11356-019-04473-y. Epub 2019 Mar 20.

Abstract

In recent years, biochar has received a significant amount of attention for its potential beneficial applications in various fields due to its bio-physico-chemical properties. The spent coffee ground biochar was prepared by slow pyrolysis for adsorption of 16-polycyclic aromatic hydrocarbons (PAHs) in ambient air. New materials and extraction methods were developed for PAHs analysis, particularly for low molecular weight (2-4 rings) PAHs, which are likely to evaporate at room temperature. Production and characterization of biochar and its extraction parameters after PAHs adsorption were investigated and optimized. The biochar production at 500 °C provided adequate quality for PAHs adsorption with a 35% yield. An effective clean-up method for biochar was proposed. A new method of PAHs extraction from biochar was developed using 25 mL of a mixture of dichloromethane and 2-propanol (4:1) for 30 min at low temperatures (5-10 °C). A test on the efficiency of the extraction method was carried out and recoveries of 85-104% of PAHs were obtained. The lab-made biochar was also tested for its potential in ambient PAHs sampling and compared with a commercial sorbent (XAD-2). The results revealed that almost the same concentrations of ambient PAHs (ng/m) were absorbed by both sorbent types, particularly with regard to the 4 ring-PAHs.

摘要

近年来,由于生物炭具有生物物理化学特性,因此在各个领域的潜在应用受到了广泛关注。通过慢速热解制备了废咖啡渣生物炭,用于吸附环境空气中的 16 种多环芳烃(PAHs)。开发了新的材料和提取方法来分析 PAHs,特别是对于低分子量(2-4 环)PAHs,这些物质很可能在室温下蒸发。研究并优化了 PAHs 吸附前后生物炭的生产和特性及其提取参数。在 500°C 下生产的生物炭对 PAHs 的吸附具有 35%的产率,足以保证其质量。提出了一种有效的生物炭净化方法。开发了一种从生物炭中提取 PAHs 的新方法,使用 25 mL 二氯甲烷和 2-丙醇(4:1)混合物在低温(5-10°C)下萃取 30 分钟。对萃取方法的效率进行了测试,得到了 85-104%的 PAHs 回收率。还测试了实验室制备的生物炭在环境 PAHs 采样中的潜在应用,并与商业吸附剂(XAD-2)进行了比较。结果表明,两种吸附剂类型吸收的环境 PAHs(ng/m)浓度几乎相同,尤其是 4 环-PAHs。

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