首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Design and development of pyrolyser to extract medicinal oil from the stem of Ziziphus jujuba
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Design and development of pyrolyser to extract medicinal oil from the stem of Ziziphus jujuba

机译:从枣树茎中提取药用油的热解器的设计与开发

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Pyrolysis as an extraction method of phytochemicals from plant parts for medicinal applications is less explored. Practitioners of traditional Indian medicine use a process which is a crude equivalent of pyrol-ysis, to extract oily substances from stem parts of plants and use them in treatment of various ailments. In this study, a prototype pyrolyser is fabricated to simulate the traditional method and the stem part of Ziziphus jujuba is subjected to pyrolysis using the pyrolyser under controlled conditions. Based on the principle of applied pyrolysis, the engineering design is conceptualized and drawing for a prototype extractor is made. Material selection for the main reactor vessel and the heating system with controller is finalized. The prototype is fabricated. The oily extract obtained is compared with the extract from the traditional method for compositional identity and phyto chemistry to validate the process. The chemi-cal similarities of the extracts from both methods establishes pyrolsis as the basic principle behind the traditional method and this validates the design of the pyrolyser. The FTIR and GC-MS analysis of the extracted oily substance from both methods reveals the presence of various cyclic, nitrogenous, long chain and heterocyclic compounds which are believed to be the pyrolysates of various cyclopeptide alka-loids reportedly present in the stem ofZiziphus jujuba. These phytochemicals have sedative property and are likely to be responsible for the curative nature of the oil used in the treatment of various human disorders and the research substantiates the stem's historical use by traditional practitioners.
机译:热解作为一种从药用植物中提取植物化学物质的方法很少被研究。传统印度医学的从业者使用的过程相当于吡咯分解,可以从植物的茎中提取油性物质,并将其用于治疗各种疾病。在这项研究中,制造了原型热解器以模拟传统方法,并且在控制条件下使用热解器对枣树的茎部进行了热解。基于应用热解原理,对工程设计进行了概念化,并绘制了原型萃取器的图纸。完成对主反应堆容器和带有控制器的加热系统的材料选择。原型制作完成。将获得的油性提取物与传统方法的提取物进行成分鉴定和植物化学比较,以验证该过程。两种方法提取物的化学相似性将热解法确立为传统​​方法的基本原理,这验证了热解器的设计。两种方法提取的油性物质的FTIR和GC-MS分析表明,存在着各种环状,含氮,长链和杂环化合物,据信这是枣树茎中存在的各种环肽生物碱的热解产物。这些植物化学物质具有镇静作用,可能是治疗各种人类疾病所用油的治疗性质的原因,该研究证实了传统从业者对茎的历史使用。

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