Gas Chromatography-Mass Spectrometry Based Isotopic Abundance Ratio Analysis of Biofield Energy Treated Methyl-2-napthylether (Nerolin)

Gas Chromatography-Mass Spectrometry Based Isotopic Abundance Ratio Analysis of Biofield Energy Treated Methyl-2-napthylether (Nerolin)
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基于气相色谱-质谱法的生物场能量处理的甲基-2-萘醚(橙花蛋白)的同位素丰度比分析

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2016
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通讯作者:
S. Jana
S. Jana
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作者:
M. Trivedi;A. Branton;Dahryn Trivedi;G. Nayak;K. Sethi;S. Jana

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甲基-2-萘甲醚(橙花碱)是一种有机化合物,在医药和香水工业中有着广泛的应用。稳定同位素比值分析在科学研究的各个领域日益受到重视。本研究采用气相色谱-质谱(GC-MS)分析了生物场能量处理对橙树碱中PM+1/PM (2H/1H或13C/12C或17O/16O)和PM+2/PM (18O/16O)同位素丰度比的影响。将化合物橙花碱分为两部分,一部分作为对照样品(未经处理),另一部分作为生物场能量处理样品,通过Mahendra Kumar Trivedi先生独特的生物场能量传输过程(也称为The Trivedi Effect®)接受生物场能量处理。为了了解生物场能量处理对同位素丰度比随时间的影响,我们在不同的时间间隔内分析了经生物场能量处理后的橙树碱,分别用T1、T2、T3和T4表示。气相色谱-质谱分析表明,在对照和生物场处理的样品中均存在C11H10O+ (m/z 158)分子离子峰,以及C10H7O- (m/z 143)、C10H8 (m/z 128)、C9H7+ (m/z 115)、C7H5+ (m/z 89)、C5H3+ (m/z 63)、C4H3+ (m/z 51)和C3H3+ (m/z 39)分子离子峰。只是,与对照样品相比,处理过的生物场中碎片化离子的相对峰强度随时间发生了显著变化。采用气相色谱-质谱法对橙叶碱进行同位素丰度分析,结果表明,T1、T2、T3和T4处理后的橙叶碱中PM+1/PM的同位素丰度比对照提高了2.38、138.10、13.10和32.14%。同样,与对照样品相比,生物场处理后的橙花碱在T1、T2、T3和T4的PM+2/PM同位素丰度比分别提高了2.38%、138.10、13.10和32.14%。总体而言,与对照样品相比,生物场能量处理样品中PM+1/PM (2H/1H或13C/12C或17O/16O)和PM+2/PM (18O/16O)的同位素丰度比在时间上显著增加。结论是,与对照样品相比,Trivedi先生的生物场能量处理对橙花碱同位素丰度的变化有显著影响。经生物场处理后的橙花碱可能表现出不同的理化性质和反应速率变化,可作为工业上生产药品、化学品和香水的重要中间体。
Methyl-2-napthylether (nerolin) is an organic compound and has the applications in pharmaceutical, and perfume industry. The stable isotope ratio analysis is increasing importance in various field of scientific research. The objective of the current study was to evaluate the effect of the biofield energy treatment on the isotopic abundance ratios of PM+1/PM (2H/1H or 13C/12C or 17O/16O) and PM+2/PM (18O/16O) in nerolin using the gas chromatography-mass spectrometry (GC-MS). The compound nerolin was divided into two parts - one part was control sample (untreated), and another part was considered as biofield energy treated sample which was received the biofield energy treatment through the unique biofield energy transmission process by Mr. Mahendra Kumar Trivedi (also known as The Trivedi Effect®). The biofield energy treated nerolin was analyzed at different time intervals and were represented as T1, T2, T3, and T4 in order to understand the effect of the biofield energy treatment on isotopic abundance ratio with respect to the time. From the GC-MS spectral analysis, the presence of the molecular ion peak C11H10O+ (m/z 158) along with major fragmented peaks C10H7O- (m/z 143), C10H8 (m/z 128), C9H7+ (m/z 115), C7H5+ (m/z 89), C5H3+ (m/z 63), C4H3+ (m/z 51), and C3H3+ (m/z 39) were observed in both control and biofield treated samples. Only, the relative peak intensities of the fragmented ions in the biofield treated nerolin was notably changed as compared to the control sample with respect to the time. The isotopic abundance ratio analysis of nerolin using GC-MS revealed that the isotopic abundance ratio of PM+1/PM in the biofield energy treated nerolin at T1, T2, T3, and T4 was increased by 2.38, 138.10, 13.10, and 32.14%, as compared to the control sample. Likewise, the isotopic abundance ratio of PM+2/PM at T1, T2, T3, and T4 was increased by 2.38, 138.10, 13.10, and 32.14%, respectively in the biofield treated nerolin as compared to the control sample. Overall, the isotopic abundance ratios of PM+1/PM (2H/1H or 13C/12C or 17O/16O) and PM+2/PM (18O/16O) were significantly increased in the biofield energy treated sample as compared to the control sample with respect to the time. It is concluded that Mr. Trivedi’s biofield energy treatment has the significant impact on alteration in isotopic abundance of nerolin as compared to the control sample. The biofield treated nerolin might display different altered physicochemical properties and rate of reaction and could be an important intermediate for the production of pharmaceuticals, chemicals, and perfumes in the industry.
生物场能量从内部治愈。
DOI: 10.1089/acm.2004.10.1107
发表时间: 2004
期刊: Journal of alternative and complementary medicine (New York, N.Y.)
影响因子: --
作者:
Warber,SaraL;Cornelio,Deogracia;Straughn,Jeremy;Kile,Gaia
通讯作者: Kile,Gaia