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Analytical determination of the suitability of different processes for the treatment of odorous waste gas

机译:分析确定不同工艺处理有味废气的适用性

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摘要

In order to determine the efficiency of different treatment systems for the reduction of odorous emissions, a gas chromatographic method followed by simultaneous mass spectrometry and olfactometry (GC-MS/O) was developed. Sames from a coffee bean roasting and a fat and oil processing plant were analyzed, respectively. The results were compared with the data obtained by olfac-tometric measurements. At a coffee bean roasting plant, cooling gases were analyzed prior to and after treatment in a full scale bioscrubber. The GC-MS/ O analysis showed that the amounts of aldehydes and ketones decreased after treatment of cooling gases of coffee bean roasting in the bioscrubber, whereas the contents of the heterocydic compounds, like pyridine and the pyrazines, and acetophenone and guai-acol remained almost unchanged. The amounts of dimethyl disulfide, 3-hydroxy-2-butanone, and the carboxylic acids increased after bioscrubber treatment. Furthermore, the performance of each stage of a combined experimental plant for the treatment of exhaust air of fat and oil processing was investigated. This treatment plant consisted of a bioscrubber, a biofilter, and an activated carbon adsorber. The important odor-active compounds of the exhaust air of fat and oil processing were the typical fat oxidation products (aldehydes, ketones) and with lower importance 2-pentylfuran, a few terpenes and aromates. Again, the key odor-active compounds, aldehydes and ketones, were degraded in the bioscrubber. Further degradation of aliphatic, unsaturated, methylated, and cyclic alkanes, as well as aromates, terpenes, and furans by the biofilter was observed. After the last treatment stage, the activated carbon filter, only small amounts of aliphatic, unsaturated, methylated, and cyclic alkanes and aromates remained in the waste gas. For both applications, the results of the developed GC-MS/O method correlated very well with olfactometric measurements.
机译:为了确定减少臭味排放的不同处理系统的效率,开发了一种气相色谱法,然后同时进行质谱和嗅觉测定(GC-MS / O)。分别分析了咖啡豆烘焙和油脂加工厂的咖啡豆。将结果与通过嗅觉测量获得的数据进行比较。在咖啡豆烘焙厂,在全尺寸生物洗涤器中处理之前和之后分析冷却气体。 GC-MS / O分析表明,在生物洗涤器中处理咖啡豆焙烧的冷却气体后,醛和酮的含量降低,而吡啶和吡嗪等杂环化合物,苯乙酮和愈创木酚的含量仍然保留几乎没有变化。生物洗涤器处理后,二硫化二甲基,3-羟基-2-丁酮和羧酸的量增加。此外,还研究了组合实验设备在处理油脂加工过程中废气的各个阶段的性能。该处理厂由生物洗涤器,生物过滤器和活性炭吸附器组成。油脂加工废气中重要的气味活性化合物是典型的脂肪氧化产物(醛,酮),而重要性较低的2-戊基呋喃,一些萜烯和芳香剂。同样,关键的气味活性化合物醛和酮在生物洗涤塔中被降解。观察到生物滤池可进一步降解脂族,不饱和,甲基化和环状烷烃以及芳香剂,萜烯和呋喃。在最后一个处理阶段之后,活性炭过滤器仅在废气中残留少量的脂族,不饱和,甲基化和环状烷烃和芳香剂。对于这两种应用,已开发的GC-MS / O方法的结果与嗅觉测量结果都具有很好的相关性。

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