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Characterization of Physicochemical and Spectroscopic Properties of Biofield Energy Treated Bio Peptone

机译:生物场能量处理过的生物蛋白ept的理化和光谱性质表征

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Bio peptone is a combination of enzymatic digest of animal tissues and casein; and generally used for the growth of several varieties of microbes. The aim of present study was to investigate the impact of biofield energy treatment on the physicochemical and spectroscopic properties of bio peptone. The present study was carried out in two groups i.e. control and treated. The control group was kept without treatment, while the treated group was subjected to Mr. Trivedi's biofield energy treatment. Subsequently, both the samples were assessed using numerous analytical techniques. The X-ray diffractograms (XRD) showed the halo patterns of XRD peaks in both the samples. The particle size analysis exhibited about 4.70% and 17.58% increase in the d_(50) (average particle size) and d_(99) (particle size below which 99% particles are present), respectively of treated bio peptone as compared to the control. The surface area analysis revealed the 253.95% increase in the specific surface area of treated sample as compared to the control. The differential scanning calorimetry (DSC) analysis showed the 29.59% increase in the melting temperature of treated bio peptone sample as compared to the control. Thermogravimetric analysis (TGA) showed the increase in onset of degradation temperature by 3.31% in the treated sample with respect to the control. The Fourier transform infrared (FT-IR) study revealed the changes in the wavenumber of functional groups such as O-H stretching from 3066 cm~(-1) to 3060 cm~(-1); C-H stretching from 2980, 2893, and 2817 cm~(-1) to 2970, 2881, and 2835 cm~(-1), respectively; N-H bending from 1589 cm~(-1) to 1596 cm~(-1); C=C stretching from 1533 cm~(-1) to 1525 cm~(-1); and P=O stretching from 1070 cm~(-1) to 1078 cm~(-1) in treated sample as compared to the control. The UV-vis spectroscopy showed the similar patterns of absorbance maxima (λ_(max)) i.e. at 259 nm and 257 nm in both the control and treated samples, respectively. Overall, the analytical results suggested that Mr. Trivedi's biofield energy treatment has substantial effect on physicochemical and spectral properties of bio peptone. Owing to this, the treated bio peptone might be more effective as culture medium than the corresponding control.
机译:生物蛋白ept是动物组织和酪蛋白酶消化的混合物;通常用于多种微生物的生长。本研究的目的是研究生物场能量处理对生物蛋白ept的物理化学和光谱性质的影响。本研究分为两组,即对照组和治疗组。对照组不做任何治疗,而治疗组则接受特里维迪先生的生物场能量治疗。随后,使用多种分析技术对两个样品进行了评估。 X射线衍射图(XRD)显示了两个样品中XRD峰的光晕图案。粒径分析显示,与对照相比,处理过的生物蛋白ept的d_(50)(平均粒径)和d_(99)(粒径低于99%的颗粒)分别增加了约4.70%和17.58%。 。表面积分析表明,与对照相比,处理样品的比表面积增加了253.95%。差示扫描量热法(DSC)分析显示,与对照相比,处理过的生物蛋白one样品的解链温度提高了29.59%。热重分析(TGA)表明,相对于对照,处理后的样品中降解温度的起始升高了3.31%。傅立叶红外光谱(FT-IR)研究表明,O-H等官能团的波数从3066 cm〜(-1)扩展到3060 cm〜(-1)。 C-H分别从2980、2893和2817 cm〜(-1)拉伸到2970、2881和2835 cm〜(-1); N-H从1589 cm〜(-1)到1596 cm〜(-1)弯曲; C = C从1533 cm〜(-1)延伸到1525 cm〜(-1);与对照相比,处理后的样品中P = O从1070cm-1延伸至1078cm-1。紫外-可见光谱显示在对照样品和处理样品中最大吸光度(λ_(max))的相似模式,即分别在259 nm和257 nm处。总体而言,分析结果表明,特里维迪先生的生物场能量处理对生物蛋白ept的物理化学和光谱性质具有重大影响。因此,处理过的生物蛋白ept作为培养基可能比相应的对照更有效。

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