甜菜根和石榴皮提取物的酸碱指示剂及抗氧化性能研究

Narasimha Raghavendra , Leena V. Hublikar , A.S. Sowmyashree , Suhas Basagonda Kale
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摘要

对甜菜根和石榴皮提取物的指示剂性质进行了研究。为了对强酸(HCl)对强碱(NaOH)、强酸(HCl)对弱碱(NH4OH)、弱酸(CH3COOH)对强碱(NaOH)、弱酸(CH3COOH)对弱碱(NH4OH)等4种类型的中和滴定得到准确可靠的结果,提取的色素作为指示剂。蒙特卡罗(MC)模拟研究证实了植物萃取物与水分子之间的强相互作用。采用多种分析技术对甜菜根和石榴皮提取物中的绿色化学物质进行了描述。这些技术包括FT-IR光谱,光学轮廓仪,zeta电位和粒度分析仪。采用DPPH法测定甜菜根和石榴皮提取物的抗氧化活性。植物提取物天然含有被称为色素的高度着色物质,它可以随着pH值的变化而改变,并通过光谱测试得到证实。甜菜根和石榴皮提取物滴定的等效点几乎与所有滴定类型的合成指示剂(酚酞)的等效点相同或一致。DPPH试验结果表明,甜菜根提取物的抗氧化活性高于石榴皮提取物,IC50值为12。31 mg/mL,而石榴皮提取物为15.10 mg/mL。利用DFT方法证实了植物提取物的给电子性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of acid-base indicator and antioxidant properties of beetroot and pomegranate peel extract
An investigation into the indicator property of beetroot and pomegranate peel extract has been conducted. To obtain precise and trustworthy results for each of the four types of neutralization titrations such as strong acid (HCl) against strong base (NaOH), strong acid (HCl) against a weak base (NH4OH), weak acid (CH3COOH) against strong base (NaOH), and weak acid (CH3COOH) against weak base (NH4OH), the extracted pigments were used as an indicator. Monte Carlo (MC) simulation studies confirm the strong interaction between the plant extracted species and water molecules. A variety of analytical techniques was used to describe the green chemicals in the beetroot and pomegranate peel extract species. These techniques included FT-IR spectroscopy, optical profilometer, zeta potential and particle size analyzer. The beetroot and pomegranate peel extract antioxidant activity were also evaluated using the DPPH assay method. Plant extracts naturally contain highly colored substances called pigments, which can alter in response to changes in the pH and it is verified by spectral tests. The beetroot and pomegranate peel extract titrations' equivalency points are nearly identical to or coincide with those of the synthetic indicator (phenolphthalein) across all the titration types. The DPPH test findings demonstrated that the beetroot extract exhibited higher antioxidant activity than the pomegranate peel extract, with an IC50 value of 12. 31 mg/mL compared to 15.10 mg/mL for the pomegranate peel extract. The electron donation property of plant extract species was confirmed by using the DFT approach.
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