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蜂蜡的热性能:意外发现。

The thermal properties of beeswaxes: unexpected findings.

作者信息

Buchwald Robert, Breed Michael D, Greenberg Alan R

机构信息

Department of Ecology and Evolutionary Biology and Institute for Behavioral Genetics, University of Colorado at Boulder, Boulder, CO 80309-0334, USA.

出版信息

J Exp Biol. 2008 Jan;211(Pt 1):121-7. doi: 10.1242/jeb.007583.

Abstract

Standard melting point analyses only partially describe the thermal properties of eusocial beeswaxes. Differential scanning calorimetry (DSC) revealed that thermal phase changes in wax are initiated at substantially lower temperatures than visually observed melting points. Instead of a sharp, single endothermic peak at the published melting point of 64 degrees C, DSC analysis of Apis mellifera Linnaeus wax yielded a broad melting curve that showed the initiation of melting at approximately 40 degrees C. Although Apis beeswax retained a solid appearance at these temperatures, heat absorption and initiation of melting could affect the structural characteristics of the wax. Additionally, a more complete characterization of the thermal properties indicated that the onset of melting, melting range and heat of fusion of beeswaxes varied significantly among tribes of social bees (Bombini, Meliponini, Apini). Compared with other waxes examined, the relatively malleable wax of bumblebees (Bombini) had the lowest onset of melting and lowest heat of fusion but an intermediate melting temperature range. Stingless bee (Meliponini) wax was intermediate between bumblebee and honeybee wax (Apini) in heat of fusion, but had the highest onset of melting and the narrowest melting temperature range. The broad melting temperature range and high heat of fusion in the Apini may be associated with the use of wax comb as a free-hanging structural material, while the Bombini and Meliponini support their wax structures with exogenous materials.

摘要

标准熔点分析仅部分描述了群居蜜蜂蜡的热性能。差示扫描量热法(DSC)显示,蜡的热相变在比肉眼观察到的熔点低得多的温度下开始。与在已公布的64摄氏度熔点处出现尖锐的单吸热峰不同,对意大利蜜蜂蜡的DSC分析得出了一条宽的熔化曲线,显示在约40摄氏度开始熔化。尽管意大利蜜蜂蜡在这些温度下仍保持固体外观,但吸热和熔化开始可能会影响蜡的结构特征。此外,对热性能更完整的表征表明,群居蜜蜂(熊蜂族、无刺蜂族、蜜蜂族)各部落的蜜蜂蜡的熔化起始温度、熔化范围和熔化热差异显著。与所检测的其他蜡相比,熊蜂(熊蜂族)相对易延展的蜡的熔化起始温度最低,熔化热最低,但熔化温度范围居中。无刺蜂(无刺蜂族)蜡的熔化热介于熊蜂蜡和蜜蜂(蜜蜂族)蜡之间,但熔化起始温度最高,熔化温度范围最窄。蜜蜂族蜡宽的熔化温度范围和高的熔化热可能与将蜡巢用作悬挂结构材料有关,而熊蜂族和无刺蜂族则用外部材料支撑其蜡结构。

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