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PAH Profiles of Emitted Ashes from Indoor Biomass Burning across the Beijing-Tianjin-Hebei Region and Implications on Source Identification

机译:京津冀地区室内生物质燃烧灰分的PAH特征及其对源识别的启示

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Sixty-four bottom ash (BA) samples from indoor burning of eight bio-fuels (BFs) including cotton (COT), corn (COR), millet (MIL), soybean (SOY), sorghum (SOR) and sesame (SES), firewood walnut (WAL), and corn cob (COC) were collected across the Beijing-Tianjin-Hebei (BTH) region. Each BA was divided into five differently sized parts for the analysis of eighteen PAHs using the GC/MS system. The Σ_(18)PAHs values for all the BAs varied from 65.0 ± 10.6 to 1310 ± 129 ng g~(–1). SOR had the highest PAH level, and COC produced the lowest level. The Σ18PAHs for SOY, WAL, COT, COR, COC, and SES were negatively correlated with the BA sizes. The NA, PHE, ACL, AN, FA, PY, FL, and AC dominated in all the BAs except for SES. All the BAs were dominated by 2, 3-ring PAHs. The PAH profiles for differently sized BAs within MIL, SOR, COC, COR, and SES were similar based on lower coefficient of divergence values, while the other three BFs did not exhibit this trend. All the BF pairs except for SOR vs. SES and COC vs. COR had the different PAH profiles. No series of coincident diagnostic ratios (DRs) could represent all BFs based on their significantly varied DRs. AN/(AN + PHE) and BA/BgP might be used in identification of combustion sources of different types of BFs. SOR and SES had higher potential toxicity risk based on higher TEQ, BaPE, and CPAHs values. BgF and BgP were the indicatory PAHs for SOY, MIL, COR, SOR, and COC, while they were AC and FL for the remaining three BFs.
机译:室内燃烧八种生物燃料(BF)的六十四种底灰(BA)样品,包括棉(COT),玉米(COR),小米(MIL),大豆(SOY),高粱(SOR)和芝麻(SES)在北京-天津-河北(BTH)地区收集了柴胡核桃(WAL)和玉米芯(COC)。每个BA分为五个不同大小的部分,以使用GC / MS系统分析18个PAH。所有BA的Σ_(18)PAHs值从65.0±10.6到1310±129 ng g〜(–1)不等。 SOR的PAH最高,而COC的最低。 SOY,WAL,COT,COR,COC和SES的Σ18PAH与BA大小负相关。除SES以外,所有BA中都包含NA,PHE,ACL,AN,FA,PY,FL和AC。所有BA均以2个3环PAH为主。基于较低的发散系数值,MIL,SOR,COC,COR和SES中大小不同的BA的PAH曲线相似,而其他三个高炉则没有这种趋势。除了SOR对SES和COC对COR以外的所有BF对都具有不同的PAH特性。根据BF的显着变化,没有一系列的同时诊断率(DR)可以代表所有BF。 AN /(AN + PHE)和BA / BgP可用于识别不同类型高炉的燃烧源。由于较高的TEQ,BaPE和CPAHs值,SOR和SES具有较高的潜在毒性风险。 BgF和BgP是大豆,MIL,COR,SOR和COC的指示性PAH,而其余三个高炉则是AC和FL。

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