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Preparation and properties of hydrogen peroxide oxidized starch for industrial use

机译:过氧化氢氧化淀粉用于工业用途的制备与性能

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Oxidized starch, an additive used in paper manufacturing and products for construction industry, is usually produced using harmful oxidant, such as hypochlorites or periodates. In this study, a simple and efficient eco-friendly laboratory and industrial procedures for starch oxidation were developed. The procedure involves application of small amounts of more environmentally friendly oxidant, hydrogen peroxide, a novel special metal complex catalyst such as copper(II) citrate and copper(II) ricinoleate and biobased plasticizers. Optimization procedure, with respect to the quantity of hydrogen peroxide and temperature in the presence of iron(II) sulphate catalyst, was performed by using the response surface methodology. Compa-rative analysis of the use of the other catalysts that is copper(II) sulphate, copper(II) citrate and copper(II) ricinoleate, indicated copper(II) citrate as the catalyst of choice. Improvement of starch is achieved using three plasticizers: ricinoleic acid (RA), diisopropyl tartarate, as well as epoxidized soybean, linseed and sunflower oils. The effects of hydrogen peroxide and catalyst concentrations, as well as the reaction temperature in the presence of naturally based plasticizers on the physicochemical, thermal and morphological properties of oxidized starch are presented. According to the results obtained in initial experiments, the optimal industrial process is based on the use of copper(II) citrate (0.1 %) as a catalyst and RA (3 %) as a plasticizer.
机译:氧化淀粉,一种用于造纸制造和用于建筑业产品的添加剂,通常使用有害氧化剂,例如次氯酸盐或周期产生。在这项研究中,开发了一种简单有效的环保实验室和工业程序,开发了淀粉氧化。该方法涉及施加少量更多环境友好的氧化剂,过氧化氢,一种新型特殊金属络合物催化剂,如铜(II)柠檬酸铜和铜(II)蓖麻油酸和生物增塑剂。通过使用响应表面方法进行,优化过程相对于铁(II)硫酸铁催化剂存在的过氧化氢的量和温度。 Compa-Rative分析用铜(II)硫酸铜(II)硫酸盐,柠檬酸铜和铜(II)蓖麻油酸酯,指示铜(II)作为首选催化剂的铜酸盐。使用三种增塑剂实现淀粉的改善:蓖麻油酸(RA),二异丙酸二丙酯,以及环氧化大豆,亚麻籽和葵花籽油。介绍了过氧化氢和催化剂浓度的影响,以及在天然基于增塑剂存在下对氧化淀粉的物理化学,热和形态特性存在的反应温度。根据在初始实验中获得的结果,最佳的工业过程基于铜(II)柠檬酸铜(0.1%)作为催化剂,Ra(3%)作为增塑剂。

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