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模拟厕所环境以评估香水对抗恶臭的性能。

Simulating latrine conditions to assess perfume performance against malodour.

作者信息

Chappuis Charles Jean-François, Huber Robin, Niclass Yvan, Starkenmann Christian

机构信息

Corporate R&D Division Firmenich SA Geneva Switzerland.

出版信息

Flavour Fragr J. 2018 Jul;33(4):313-321. doi: 10.1002/ffj.3450. Epub 2018 Apr 16.

Abstract

To evaluate perfume performance in toilets, we built model toilets in which critical factors such as background malodour, climate, and airflow were controlled. The models were equipped with an odour generator that injected hydrogen sulfide, methyl mercaptan, butyric acid, para-cresol, and indole, allowing us to accurately and reliably reconstitute toilet malodour headspace. The malodorant concentrations matched the quantitative headspace analysis performed in African and Indian toilets. The toilet malodour headspace performance was validated by chemical and sensory analysis. Olfactory stimuli were presented to participants in different simulated climates to assess the effect of climate on the perception of odours. The sensory data show that increasing temperature and humidity decreased the intensity ratings of odours without altering their quality. Perfume can be delivered in these toilets by forced evaporation to control the headspace concentration, or by delivery systems such as cellulosic pads, liquids, and powders. Our experimental set-up allowed us to establish dose-response curves to assess the performance of a perfume in reducing toilet malodour and increasing perceived pleasantness.

摘要

为了评估香水在厕所中的性能,我们建造了模型厕所,其中对背景恶臭、气候和气流等关键因素进行了控制。这些模型配备了一个气味发生器,可注入硫化氢、甲硫醇、丁酸、对甲酚和吲哚,使我们能够准确可靠地重构厕所恶臭顶空。恶臭剂浓度与在非洲和印度厕所进行的定量顶空分析结果相符。通过化学和感官分析验证了厕所恶臭顶空的性能。在不同的模拟气候条件下向参与者呈现嗅觉刺激,以评估气候对气味感知的影响。感官数据表明,温度和湿度的升高降低了气味的强度等级,但没有改变其品质。香水可以通过强制蒸发在这些厕所中输送,以控制顶空浓度,也可以通过纤维素垫、液体和粉末等输送系统输送。我们的实验装置使我们能够建立剂量反应曲线,以评估香水在减少厕所恶臭和增加感知愉悦度方面的性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d75/6049876/6f58d032fba8/FFJ-33-313-g001.jpg

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