Mellida Yani, Gladys Ayu Paramita Kusumah Wardhani, A. Taufiq
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摘要

鸡蛋壳废弃物中含有碳酸钙,对环境有益。以鸡蛋壳中的碳酸钙为基础材料,在900℃下煅烧合成了CaO纳米颗粒。CaO纳米颗粒具有独特的特性,在环境、材料、生物医学等领域有着广泛的应用。此外,这些纳米颗粒的合成可以减少有害和环保化学品的使用。该方法作为一种替代方法已被广泛使用,其中一种方法利用月桂叶乙醇提取物中的次生代谢物作为还原剂和稳定剂。本研究采用3种不同体积的月桂叶提取物,分别为3:7、5:5和7:3 (v/v),考察其对焙烧蛋壳基料颗粒大小的影响。用UV-Vis, FTIR和SEM表征CaO纳米颗粒。所得纳米颗粒呈白色细粉末状。表征结果表明,在λ 215 ~ 270 nm处,CaO纳米粒子的最大吸收。FTIR光谱分析表明,在712 cm-1、514 cm-1和874 cm-1处,Ca-O键存在于3种变化中。所得材料具有片状和团聚形态,平均粒径范围为43 ~ 498 nm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pembuatan Nanopartikel CaO dari Cangkang Telur Ayam Menggunakan Ekstrak Etanol Daun Salam (Syzygium polyanthum)
Chicken  eggshell  waste  contributes  to  environmental because it have CaCO3 content. Calcium  carbonate  in chicken  eggshells  is  used  as  a  basic  material  in  the  synthesis  of  CaO  nanoparticles  through  a calcination process at 900oC. CaO nanoparticles have unique characteristics that make them are needed for various fields of application such as environment, materials, and biomedicine. In addition, the synthesis of these nanoparticles can reduce the use of hazardous and environmentally friendly chemicals. This method has been widely used as an alternative method, one of which  utilizes  secondary  metabolites found  in  ethanol extract of  bay  leaves as reducing  and stabilizing agents. This research was conducted with 3 volume variations of bay leaf extract with calcined eggshell base materials, namely 3:7, 5:5, and 7:3 (v/v) to determine the effect on the resulting particle   size.   Characterization   of   CaO   nanoparticles   using   UV-Vis,   FTIR,   and  SEM.   The nanoparticles obtained were in the form of white fine powder. The characterization results show the maximum absorption of CaO nanoparticles at λ 215 - 270 nm. Based on the FTIR spectra, Ca-O bonds can be identified in the three variations at 712 cm-1  dan 514 cm-1  and  874 cm-1  shows Ca-O-Ca bond. The resulting material has a flake shape and agglomeration morphology with an average particle size range of 43-498 nm.
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