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首页> 外文期刊>Atmosphere >Mitigation of Livestock Odors Using Black Light and a New Titanium Dioxide-Based Catalyst: Proof-of-Concept
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Mitigation of Livestock Odors Using Black Light and a New Titanium Dioxide-Based Catalyst: Proof-of-Concept

机译:使用黑光和新型的基于二氧化钛的催化剂减轻牲畜的气味:概念验证

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Concentrated livestock feeding operations have become a source of odorous gas emissions that impact air quality. Comprehensive and practical technologies are needed for a sustainable mitigation of the emissions. In this study, we advance the concept of using a catalyst for barn walls and ceilings for odor mitigation. Two catalysts, a new TiO 2 -based catalyst, PureTi Clean, and a conventional Evonik (formerly Degussa, Evonik Industries, Essen, Germany) P25 (average particle size 25 nm) catalyst, were studied for use in reducing simulated odorous volatile organic compound (VOC) emissions on a laboratory scale. The UV source was black light. Dimethyl disulfide (DMDS), diethyl disulfide (DEDS), dimethyl trisulfide (DMTS), butyric acid, p-cresol, and guaiacol were selected as model odorants. The effects of the environmental parameters, the presence of swine dust covering the catalyst, the catalyst type and layer density, and the treatment time were tested. The performance of the PureTi catalyst at 10 μg/cm 2 was comparable to that of P25 at 250 μg/cm 2 . The odorant reduction ranged from 100.0 ± 0.0% to 40.4 ± 24.8% at a treatment time of 200 s, simulating wintertime barn ventilation. At a treatment time of 40 s (simulating summertime barn ventilation), the reductions were lower (from 27.4 ± 8.3% to 62.2 ± 7.5%). The swine dust layer on the catalyst surface blocked 15.06 ± 5.30% of UV 365 and did not have a significant impact ( p > 0.23) on the catalyst performance. Significant effects of relative humidity and temperature were observed.
机译:集中的牲畜饲养业务已经成为影响空气质量的恶臭气体排放源。需要综合和实用的技术来可持续地减少排放。在这项研究中,我们提出了将催化剂用于谷仓墙壁和天花板以减轻气味的概念。研究了两种催化剂,一种用于还原模拟臭味的挥发性有机化合物的催化剂,一种是新的基于TiO 2的TiO2催化剂,PureTi Clean,另一种是传统的赢创(以前是德赢,德赢公司,埃森,德国),P25(平均粒径25 nm)催化剂。 (VOC)排放量在实验室范围内。紫外线源是黑光。选择了二甲基二硫化物(DMDS),二乙基二硫化物(DEDS),二甲基三硫化物(DMTS),丁酸,对甲酚和愈创木酚作为模型加香剂。测试了环境参数,覆盖催化剂的猪粉尘的存在,催化剂类型和层密度以及处理时间的影响。 PureTi催化剂在10μg/ cm 2下的性能与P25在250μg/ cm 2下的性能相当。在200 s的处理时间下,模拟冬季谷仓通风,减少的气味从100.0±0.0%到40.4±24.8%。在40 s的处理时间(模拟夏季谷仓通风)下,减少幅度较小(从27.4±8.3%降至62.2±7.5%)。催化剂表面的猪尘层阻挡了UV 365的15.06±5.30%,并且对催化剂性能没有显着影响(p> 0.23)。观察到相对湿度和温度的显着影响。

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