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首页> 外文期刊>Journal of Chemical Engineering of Japan >Development of Marine Waste Recycling Technologies Using Sub- and Supercritical Water
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Development of Marine Waste Recycling Technologies Using Sub- and Supercritical Water

机译:利用亚临界水和超临界水开发海洋垃圾回收技术

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References(17) Cited-By(27) A waste recycling technique using sub- and supercritical water was developed for obtaining useful materials from marine wastes. As a preliminary work, the effect of reaction parameters was investigated using various types of reactors and samples. In order to obtain amino acids effectively, two main reactions (i.e. hydrolysis of proteins to amino acids and decomposition of amino acids) should be considered. The highest amount of amino acids was obtained at 523 K in reaction time of 60 min. The reaction temperature of 523 K was in agreement with the temperature indicating the maximum ion product of water at saturated vapor pressure. At 573 K, the amount of amino acids produced was low since amino acid decomposition rate was higher compared to production of amino acids from protein hydrolysis. Proper control of reaction parameters is necessary in order to obtain high yield of amino acids efficiently. The technique could be useful in establishing a material recycling system across various industries and production processes, with the goal to curtail waste emissions into the environment.
机译:参考文献(17)被引用(27)开发了一种使用亚临界和超临界水的废物回收技术,用于从海洋废物中获得有用的材料。作为一项初步工作,使用各种类型的反应器和样品研究了反应参数的影响。为了有效地获得氨基酸,应考虑两个主要反应(即蛋白质水解成氨基酸和氨基酸分解)。在60分钟的反应时间内,在523 K处获得了最高量的氨基酸。 523 K的反应温度与指示在饱和蒸气压下水的最大离子产物的温度一致。在573 K时,氨基酸的生成量较低,因为与蛋白质水解产生的氨基酸相比,氨基酸的分解速率更高。为了有效地获得高产率的氨基酸,必须适当控制反应参数。该技术可能有助于建立跨各个行业和生产过程的材料回收系统,以减少向环境中的废物排放。

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