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Cellulose Acetate from Oil Palm Empty Fruit Bunches Waste as Biodegradable Microbeads for Making Scrubs

机译:醋酸纤维素从油棕榈空果实束废物作为可生物降解的微珠,用于制作磨砂膏

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The scrubs consist of cream and microbeads particles that form as a coarse particle to exfoliating skin. However, the existence of microbeads is a new problem in the environment. Its non-biodegradable and hydrophobic properties make polyethylene microbeads take a long time to decompose naturally and easily absorb toxic substances that will be harmful to aquatic habitats to pollute the food chain potentially. To overcome this problem, microbeads biodegradable has found from cellulose Palm Oil Empty Fruit Bunches as industrial waste that has not been utilized optimally. Cellulose from oil palm empty fruit bunches was extracted through a process of delignification and bleaching. The cellulose then synthesized by activation, acetylation, and hydrolysis. The yield of oil palm empty fruit bunches cellulose acetate was 85.16 %. The initial test was carried out on cellulose acetate in the form of physical characteristics test, namely water and oil absorption test, advanced characteristic test, and functional group analysis using FTIR UV-vis and morphology analysis using SEM-EDX. Water absorption from cellulose and cellulose acetate are 82.43 % and 24.83 %, while oil absorption from cellulose and cellulose acetate are 10.34 % and 8.37 %. From the FTIR analysis result shows cellulose acetate has C=O functional group at wavelength 1737.97 cm~(-1). Analysis SEM-EDS shows the morphology of cellulose acetate ware more homogeneous and distribution of holes evenly than cellulose. The chemical components of OPEFB cellulose acetate exhibit organic elements of carbon (C) and oxygen (O). In the next process, cellulose acetate was mixed with a cream scrub formulation. Scrub storage has accelerated for 0 and 1 month, periodically with pH test, and stability test (mold and yeast growth) for the scrub. The best results with a lower pH and lower mold and yeast growth obtained in scrubs with a concentration of 5 % cellulose acetate.
机译:磨砂膏由乳膏和微珠颗粒组成,其形式为粗颗粒以剥离皮肤。然而,Microbeads的存在是环境中的一个新问题。其非可生物降解和疏水性质使聚乙烯微珠花了很长时间才能自然地分解,并且容易吸收有害的有害物质,这些物质将有害水生栖息地潜在地污染食物链。为了克服这个问题,微生物可生物降解已经从纤维素棕榈油空果束中发现,因为尚未最佳地使用的工业废物。通过脱铬化和漂白的过程提取来自油棕空果束的纤维素。然后通过活化,乙酰化和水解合成纤维素。油棕空果实纤维素醋酸纤维素的产量为85.16%。初始试验以物理特性试验的形式进行醋酸纤维素,即使用SEM-EDX使用FTIR UV-VIS和形态分析的水和吸油试验,先进的特征试验和功能组分析。乙酸纤维素和醋酸纤维素吸收的吸水率为82.43%和24.83%,而乙酸纤维素和乙酸纤维素吸收为10.34%和8.37%。来自FTIR分析结果显示醋酸纤维素在波长1737.97cm〜(-1)处具有C = O官能团。分析SEM-EDS显示纤维素醋酸纤维件的形态更均匀,并且均比纤维素均匀地分布孔。 OPEFB纤维素的化学成分乙酸盐表现出碳(C)和氧(O)的有机元素。在下一过程中,将乙酸纤维素与乳霜擦洗制剂混合。擦洗储存加速了0和1个月,定期与pH试验,擦洗的稳定性试验(霉菌和酵母生长)。具有较低的pH和更低的模具和培养的酵母生长的最佳效果,其浓度为5%醋酸纤维素。

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