首页> 外文OA文献 >Chemical and toxicological characterization of residential oil burner emissions: I. Yields and chemical characterization of extractables from combustion of No. 2 fuel oil at different Bacharach Smoke Numbers and firing cycles.
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Chemical and toxicological characterization of residential oil burner emissions: I. Yields and chemical characterization of extractables from combustion of No. 2 fuel oil at different Bacharach Smoke Numbers and firing cycles.

机译:居民用燃油燃烧器排放物的化学和毒理学表征:I. 2种燃油在不同的巴哈拉赫烟气数和燃烧循环下的燃烧可提取物的产率和化学表征。

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摘要

Particulates and complex organic mixtures were sampled from the exhaust of a flame retention head residential oil burner combusting No. 2 fuel oil at three firing conditions: continuous at Bacharach Smoke No. 1, and cyclic (5 min on, 10 min off) at Smoke Nos. 1 and 5. The complex mixtures were recovered by successive Soxhlet extraction of filtered particulates and XAD-2 sorbent resin with methylene chloride (DCM) and then methanol (MeOH). Bacterial mutagenicity [see Paper II (8)] was found in the DCM extractables. Samples of DCM extracts from the two cyclic firing conditions and of the raw fuel were separated by gravity column chromatography on alumina. The resulting fractions were further characterized by a range of instrumental methods. Average yields of both unextracted particulates and of DCM extractables, normalized to a basis of per unit weight of fuel fired, were lower for continuous firing than for cyclic firing. For cyclic firing, decreasing the smoke number lowered the particulates emissions but only slightly reduced the average yield of DCM extractables. These and similar observations, here reported for two other oil burners, show that adjusting the burner to a lower smoke number has little effect on, or may actually increase, emissions of organic extractables of potential public health interest. Modifications of the burner firing cycle aimed at approaching continuous operation offer promise for reducing the amount of complex organic emissions. Unburned fuel accounted for roughly half of the DCM extractables from cyclic firing of the flame retention head burner at high and low smoke number. Large (i.e., greater than 3 ring) polycyclic aromatic hydrocarbons (PAH) were not observed in the DCM extractables from cyclic firing. However, nitroaromatics, typified by alkylated nitronaphthalenes, alkyl-nitrobiphenyls, and alkyl-nitrophenanthrenes were found in a minor subfraction containing a significant portion of the total mutagenic activity of the cyclic low smoke samples (8). Oxygen-containing PAH, typified by phenalene-1-one and its alkyl derivatives, are important mutagens from cyclic firing at high smoke conditions. Thus, oil burner effluents differ markedly from those of several other combustors, including the automotive diesel engine, where multiring PAH, typified by fluoranthene and alkylated phenanthrenes, account for a significant portion of the effluent mutagenicity. Implications for combustion and emissions source identification are discussed.
机译:在三个燃烧条件下,从燃烧二号燃料的阻火头住宅燃油燃烧器的排气中取样颗粒和复杂的有机混合物:在Bacharach一级烟中连续燃烧,在Smoke处循环(开5分钟,关10分钟) No. 1和5。通过依次用二氯甲烷(DCM)和甲醇(MeOH)进行索格利特萃取过滤的颗粒和XAD-2吸附树脂,回收复杂的混合物。在DCM提取物中发现了细菌致突变性[见论文II(8)]。通过在氧化铝上的重力柱色谱分离来自两个循环燃烧条件的DCM提取物的样品和原始燃料。所得馏分通过一系列仪器方法进一步表征。以循环燃烧的单位重量为基准,未提取颗粒和DCM可萃取物的平均产量均低于连续燃烧。对于循环燃烧,减少烟尘数量可降低颗粒物排放,但仅略微降低DCM可萃取物的平均产量。这些和类似的观察结果(这里针对其他两个燃油燃烧器进行了报道)表明,将燃烧器调整为较低的烟尘含量对潜在的公共卫生利益的有机萃取物排放几乎没有影响,或者实际上可能会增加排放量。旨在接近连续运行的燃烧器燃烧周期的修改为减少复杂的有机排放量提供了希望。未燃烧的燃料约占来自高低烟头数的火焰燃烧头燃烧器循环燃烧可提取的DCM的一半。在来自循环燃烧的DCM可萃取物中未观察到大的(即大于3个环)多环芳烃(PAH)。但是,在一个较小的亚组分中发现了以烷基化的硝基萘,烷基-硝基联苯和烷基-硝基菲为代表的硝基芳香族化合物,该亚组分含有环状低烟气样品总诱变活性的很大一部分(8)。含氧的PAH(以苯并-1-酮及其烷基衍生物为代表)是在高烟度条件下循环燃烧产生的重要诱变剂。因此,燃油燃烧器的废料与包括汽车柴油发动机在内的其他几种燃烧器的废料明显不同,在后者中,以荧蒽和烷基化菲为代表的多环PAH占了污水诱变性的很大一部分。讨论了对燃烧和排放源识别的影响。

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