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首页> 外文期刊>Journal of Agricultural Chemistry and Environment >Influence of Weather and Purity of Plasticizer on Degradation of Cassava Starch Bioplastics in Natural Environmental Conditions
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Influence of Weather and Purity of Plasticizer on Degradation of Cassava Starch Bioplastics in Natural Environmental Conditions

机译:天气和增塑剂纯度对自然环境下木薯淀粉生物塑料降解的影响

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The threat posed by plastics to the environment has prompted the development of bioplastics. Starch plasticized by glycerol is a key renewable resource in the production of high-quality bioplastics. Previous studies have availed information on the mechanical quality of starch-based bioplastics however there is limited information about their degradation pattern in the natural environment which this research presents. Bioplastics were buried in holes in loam sandy soil and weekly photographic data and weight were collected to reveal the effect of degradation. Weather parameters of rainfall, temperature, relative humidity, sunshine intensity and sunshine hours were recorded to establish influence of weather on degradation. A control set up in the laboratory was used to compare the results. Over time the tests revealed that as the hydrophilic enzymes break down the bioplastic, its weight initially increases (up to 87%) due to absorption of moisture and after saturation, the bioplastic is disintegrated which initiates decomposition and the bioplastic weight is steadily reduced. Degradation was further enhanced by invasion of soil organisms like worms, termites among other soil microbes. Rainfall ( r = 0.857) increased the moisture in the soil which initially increased the weight of the bioplastic up to a point when the hydrophilic enzymes set into breakdown the bioplastic then the weight started to drop. This was the same case for relative humidity ( r = ﹣ 0.04) however; the sunlight intensity ( r = 515) and hours of illumination indirectly affect the process by influencing microbial activity. An increase in the sunshine intensity increased the activity of soil organisms up to a point beyond which increased exposure caused the organisms to burrow deeper in the soil. Increase in microbial activity increased the rate of degradation of the buried bioplastics which took five to ten weeks to fully decompose (98.3%). The reduced time of degradation means that starch-based bioplastics have a high potential as sustainable substitute for petroleum-based plastics.
机译:塑料对环境的威胁促使生物塑料的发展。由甘油增塑的淀粉是高质量生物塑料生产中的关键可再生资源。先前的研究已经获得了有关基于淀粉的生物塑料的机械质量的信息,但是该研究提出的关于其在自然环境中的降解模式的信息有限。将生物塑料埋在壤土壤土的孔中,并收集每周的摄影数据和重量以揭示降解作用。记录降雨,温度,相对湿度,日照强度和日照时间的天气参数,以建立天气对退化的影响。使用实验室中建立的对照来比较结果。随着时间的推移,测试表明,随着亲水性酶分解生物塑料,其重量最初会由于吸收水分而增加(高达87%),并且在饱和后,生物塑料会分解并引发分解,并且生物塑料的重量会稳定降低。诸如蠕虫,白蚁和其他土壤微生物等土壤生物的入侵进一步加剧了退化。降雨( r = 0.857)增加了土壤中的水分,最初增加了生物塑料的重量,直至亲水酶降解生物塑料,然后重量开始下降。但是,相对湿度也是如此( r = ﹣ 0.04);阳光强度( r = 515)和光照时间通过影响微生物活性间接影响过程。日照强度的增加使土壤生物的活性增加到一定程度,超过这一点,暴露量的增加会导致土壤生物深入土壤。微生物活性的提高增加了埋藏生物塑料的降解速率,该降解过程需要五到十周才能完全分解(98.3%)。减少的降解时间意味着淀粉基生物塑料作为石油基塑料的可持续替代品具有很高的潜力。

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