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首页> 外文期刊>Spanish Journal of Agricultural Research >Use of a palladium catalyst to improve the capacity of activated carbon to absorb ethylene, and its effect on tomato ripening.
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Use of a palladium catalyst to improve the capacity of activated carbon to absorb ethylene, and its effect on tomato ripening.

机译:使用钯催化剂来提高活性炭吸收乙烯的能力及其对番茄成熟的影响。

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摘要

The aims of this work were to study the ethylene adsorption capacity of different types and masses of activated carbon, to predict the performance of the ethylene adsorption process, to improve the removal of ethylene by impregnating granular activated carbon (GAC) with palladium, and to analyse the effect of this product on the removal of ethylene released from tomatoes. In an in vitro system, both GAC and powdered activated carbon (PAC) effectively absorbed exogenous ethylene; GAC was the most effective. Maximum adsorption was achieved with carbon masses of 1.25 g L-1 or greater. The best model describing the adsorption of ethylene by GAC was the Langmuir isotherm. To increase ethylene removal, a system involving an adsorbent (GAC) and a catalyst (1% palladium) was developed. This was tested in an in vivo experiment involving the removal of ethylene produced by three tomato cultivars inside sealed jars. Ethylene removal led to a delay in tomato ripening; smaller changes in fruit firmness and colour were observed compared to controls. This system could provide a useful way of eliminating ethylene from storage areas and thus maintaining tomato fruit quality, which can be negatively affected by ethylene.
机译:这项工作的目的是研究不同类型和质量的活性炭对乙烯的吸附能力,预测乙烯吸附过程的性能,通过用钯浸渍颗粒状活性炭(GAC)来改善乙烯的去除,以及分析该产品对去除西红柿中释放的乙烯的影响。在体外系统中,GAC和粉末状活性炭(PAC)都能有效吸收外源乙烯。 GAC是最有效的。碳质量为1.25 g L-1或更高时,可获得最大吸附。描述GAC吸附乙烯的最佳模型是Langmuir等温线。为了增加乙烯的去除,开发了一种包含吸附剂(GAC)和催化剂(1%钯)的系统。这是在一项体内实验中测试的,该实验涉及去除密封罐中三个番茄品种产生的乙烯。去除乙烯导致番茄成熟的延迟。与对照相比,观察到果实硬度和颜色的较小变化。该系统可以提供一种从存储区域消除乙烯并因此保持番茄果实品质的有用方法,而番茄果实品质可能受到乙烯的负面影响。

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