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水蒸气压力对2-氯乙基膦酸热分解的影响。

Effect of water vapor pressure on the thermal decomposition of 2-chloroethylphosphonic Acid.

作者信息

Klein I, Lavee S, Ben-Tal Y

机构信息

Institute of Horticulture, Agricultural Research Organization, The Volcani Center, Bet Dagan, Israel.

出版信息

Plant Physiol. 1979 Mar;63(3):474-7. doi: 10.1104/pp.63.3.474.

Abstract

Decomposition of 2-chloroethylphosphonic acid (Ethephon) was studied in dried films at various water vapor pressures (0.6 to 86.9 millimeters Hg, 3.2 to 93.9% relative humidity) and temperatures (20, 30, 40, and 50 C) at pH 6.3 and 7.0. The rate of decomposition could be determined equally well by [(14)C]Ethephon or ethylene measurements. The rate increases at increasing water vapor pressures at a constant temperature and pH, up to an optimum. The optimum vapor pressure for decomposition approximately doubles for each 10 C increase. The activation energy for the decomposition reaction in water vapor pressures of 3.2 to 12 millimeters Hg is 8.7 and 14.3 kilocalories per mole at pH 6.3 and 7.0, respectively.Decomposition of Ethephon is inhibited above an optimum vapor pressure. The inhibition is stronger at lower temperatures and at pH 6.3 than at pH 7.0. The rate of decomposition and the inhibition observed at a low temperature (20 C) was found to be similar on various surfaces, including olive leaves.Failure to induce olive (Olea europaea L.) fruit abscission under certain environmental conditions can be readily attributed to rapid breakdown of Ethephon at elevated temperatures and low relative humidities.

摘要

在pH值为6.3和7.0的条件下,研究了2-氯乙基膦酸(乙烯利)在不同水蒸气压力(0.6至86.9毫米汞柱,相对湿度3.2至93.9%)和温度(20、30、40和50℃)的干燥薄膜中的分解情况。乙烯利或乙烯的测量均可很好地确定分解速率。在恒定温度和pH值下,分解速率随水蒸气压力的增加而加快,直至达到最佳值。每升高10℃,分解的最佳蒸气压大约翻倍。在3.2至12毫米汞柱的水蒸气压力下,pH值为6.3和7.0时分解反应的活化能分别为8.7和14.3千卡/摩尔。乙烯利在超过最佳蒸气压时分解受到抑制。在较低温度下以及pH值为6.3时的抑制作用比pH值为7.0时更强。发现在包括橄榄叶在内的各种表面上,在低温(20℃)下观察到的分解速率和抑制作用相似。在某些环境条件下未能诱导橄榄(油橄榄)果实脱落,很容易归因于在高温和低相对湿度下乙烯利的快速分解。

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