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首页> 外文期刊>Postharvest Biology and Technology >Preparation of a novel PdCl2-CuSO4-based ethylene scavenger supported by acidified activated carbon powder and its effects on quality and ethylene metabolism of broccoli during shelf-life
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Preparation of a novel PdCl2-CuSO4-based ethylene scavenger supported by acidified activated carbon powder and its effects on quality and ethylene metabolism of broccoli during shelf-life

机译:通过酸化活性炭粉末的基于PDCl2-CUSO4的基于PDCl2-CUSO4的乙烯清除剂的制备及其对保质期间西兰花的质量和乙烯代谢的影响

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摘要

Yellowing and quality loss of broccoli is usually accelerated by ethylene. In order to remove ethylene surrounding the broccoli during shelf-life, a novel ethylene scavenger supported by acidified activated carbon powder (AACP) was developed. Results showed that acidification of the supporter might have a profound effect on ethylene scavenging. Ethylene removal rate of the palladium chloride (PdCl2)-impregnated AACP scavenger dramatically increased and was further promoted with the addition of copper sulfate (CuSO4). The novel scavenger was optimized and prepared with MCP containing 10 mg/g PdCl2, 30 mg/g CuSO4 and less than 300 mg/g moisture. Its maximum ethylene removal capacity was 21.77 mL/g at 25 degrees C or 20.18 mL/g at 5 degrees C. The ethylene removal capacity could be regenerated by 81.6% by heating at 175 degrees C for 20 min. The ACCP-PdCl2-CuSO4 ethylene scavenger could significantly delay yellowing and quality loss of broccoli and thereby extend the shelf-life at 20 degrees C for 2 d. Ethylene concentration in the stored environments was decreased to 0.21 mu L/L or less from 0.91 mu L/L during shelf-life by the scavenger. Ethylene production, free 1-aminocyclopropane-1-carboxylic acid (ACC) content and ACC synthase activity were suppressed in the broccoli treated with the scavenger. This ethylene scavenger might eliminate ethylene to lower levels in stored environments than the threshold to trigger senescence and yellowing of the vegetable. The novel scavenger provides a promising and eco-friendly alternative to maintaining postharvest quality of broccoli and contributes to increasing its marketing value. (C) 2014 Elsevier B.V. All rights reserved.
机译:黄兰花的变黄和质量损失通常通过乙烯加速。为了在体制寿命期间去除西兰花围绕西兰花的乙烯,开发了一种通过酸化活性炭粉末(AACP)的新型乙烯清除剂。结果表明,支持者的酸化可能对乙烯清除产生深远的影响。氯化钯(PdCl2)的乙烯去除率(PDCl2) - 浸渍的AACP清除剂显着增加,并通过加入硫酸铜(CusO 4)进一步促进。新型清除剂被优化,并用MCP含有10mg / g pdcl2,30mg / g cuso4和小于300mg / g水分的MCP。其最大乙烯去除能力为21.77ml / g,在5℃下为25℃或20.18ml / g。通过在175℃下加热20分钟,可以通过加热再生81.6%的乙烯去除能力。 ACCP-PDCL2-CUSO4乙烯清除剂可显着延迟黄瓜的变黄和质量损失,从而将保质期延伸到20摄氏度2天。通过清除剂在保存寿命期间,储存环境中的乙烯浓度从0.91μl/ l降低到0.21μl/ l或更小。在用清除剂处理的西兰花中抑制了乙烯生产,游离1-氨基环丙烷-1-羧酸(ACC)含量和ACC合酶活性。该乙烯清除剂可能会消除乙烯在储存环境中的较低水平而不是阈值,以引发蔬菜的衰老和泛黄。新颖的清道夫提供了有希望和环保的替代品,以维持西兰花的采访质量,并有助于提高其营销价值。 (c)2014 Elsevier B.v.保留所有权利。

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