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1-MCP处理对库尔勒香梨采后果皮蜡质变化的影响 被引量:24
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作者 赵晓敏 杨玉荣 +3 位作者 李建鲲 袁峰 程俊嘉 李学文 《食品科学》 EI CAS CSCD 北大核心 2015年第18期262-266,共5页
以库尔勒香梨为实验材料,采用1-甲基环丙烯(1-methylcyclopropene,1-MCP)处理,研究其在库尔勒香梨常温贮藏过程中对果皮蜡质含量及超微结构的影响,探讨1-MCP处理对库尔勒香梨油渍化及衰老的影响。库尔勒香梨经1μL/L 1-MCP处理后,放... 以库尔勒香梨为实验材料,采用1-甲基环丙烯(1-methylcyclopropene,1-MCP)处理,研究其在库尔勒香梨常温贮藏过程中对果皮蜡质含量及超微结构的影响,探讨1-MCP处理对库尔勒香梨油渍化及衰老的影响。库尔勒香梨经1μL/L 1-MCP处理后,放置在室温(20±1)℃、80%~85%相对湿度的条件下,对香梨表皮油渍化程度、蜡质含量和蜡质超微形态结构进行测定。结果表明:常温贮藏条件下,随着贮藏时间的延长,库尔勒香梨果皮蜡质含量不断增加,果皮油渍化程度加深;果皮蜡质超微形态处于动态变化过程,蜡质颗粒不断进行融合;1-MCP处理能在一定程度上抑制果皮油渍化的发生,能较好地延缓果皮蜡质含量的上升。果皮油渍化的发生规律为:最先发生在萼部,后扩大至赤道部位,最后发生在梗部。1-MCP可能是通过抑制果皮蜡质超微结构变化从而延缓库尔勒香梨采后衰老。 展开更多
关键词 库尔勒香梨 1-甲基环丙烯 蜡质 油渍化
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Production of biodiesel from waste vegetable oil using impregnated diatomite as heterogenous catalyst 被引量:5
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作者 Edward Modiba Christopher Enweremadu Hilary Rutto 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2015年第1期281-289,共9页
In this study, biodiesel was produced from waste vegetable oil using a heterogeneous base catalyst synthesized by impregnating potassium hydroxide(KOH) onto diatomite. Response surface methodology based on a central c... In this study, biodiesel was produced from waste vegetable oil using a heterogeneous base catalyst synthesized by impregnating potassium hydroxide(KOH) onto diatomite. Response surface methodology based on a central composite design was used to optimize four transesterification variables: temperature(30–120 °C), reaction time(2–6 h), methanol to oil mass ratio(10%–50%) and catalyst to oil mass ratio(2.1%–7.9%). A quadratic polynomial equation was obtained to correlate biodiesel yield to the transesterification variables. The diatomite–KOH catalyst was characterized using X-ray diffraction(XRD), Fourier transform infra-red spectroscopy(FTIR) and a scanning electron microscope(SEM) equipped with an energy dispersive X-ray detector(EDS). A maximum biodiesel yield of 90%(by mass) was obtained. The reaction conditions were as follows: methanol to oil mass ratio 30%, catalyst to oil mass ratio 5%, reaction time 4 h, and reaction temperature 75 °C. The XRD, FTIR and SEM(EDS) results confirm that the addition of KOH modifies the structure of diatomite. During impregnation and calcination of the diatomite catalyst the K2 O phase forms in the diatomite structural matrix and the active basicity of this compound facilitates the transesterification process. It is possible to recycle the diatomite–KOH catalyst up to three times. The crucial biodiesel properties from waste vegetable oil are within the American Standard Test Method specifications. 展开更多
关键词 Central composite design TRANSESTERIFICATION IMPREGNATION DIATOMITE
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