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通过使用创新型电气设备,对 Siddha 药物 Anna Pavala Chendooram 生产过程中的传统 Pudam 工艺进行标准化。

Standardization of the traditional Pudam process in the manufacturing of Siddha medicine Anna Pavala Chendooram by using an innovative electrical device.

作者信息

Kumar A S Ganesh, Selvaraj Senthilvelan, Ravichandran V M, Shunmugam P Selva, Kamalanathan V

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Guwahati, Assam, 781 039, India.

Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Guwahati, Assam, 781 039, India.

出版信息

J Ayurveda Integr Med. 2025 Jun 27;16(4):101156. doi: 10.1016/j.jaim.2025.101156.

Abstract

BACKGROUND

The Siddha medicine system is one of the oldest traditional medicine systems and requires engineering equipment to reduce skill dependency for medicine manufacturing without compromising the efficacy of the medicine.

OBJECTIVE

The objective of the current work was to study the standard manufacturing method for a Siddha medicine anna pavala chendooram as per the conventional method and manufacture it in an electrical device designed for pudam process characterize it.

MATERIAL AND METHODS

Annabedhi (Ferrous sulfate) and kodipavalam (Coral) were taken as raw materials, anna pavala chendooram was prepared in the pit per conventional methods, and the same medicine was prepared in an electrical device for pudam; the prepared medicine from the pit and the device were characterized using modern scientific methods.

RESULTS

The maximum pressure built inside the sealed agal during the pudam was 35 mbar, and the maximum temperature during the pudam captured was 635 °C at the bottom. The XRD analysis reveals that the raw material consists of FeO (HO), 2Fe (OH) SO, and CaSO (HO) and the finished medicine consists of FeO and CaSO. The XRF analysis reveals that the major oxides in finished medicines were FeO(T), SO, CaO, and MgO. The average particle size of finished medicine from the pit is 6.52 μm, and the finished medicine from the device with seelaimann is 6.45 μm, and from the device without seelaimann is 6.28 μm.

CONCLUSION

The pudam process for making anna pavala chendooram can be done using the device for pudam with the temperature profile obtained from the pit.

摘要

背景

悉达医学体系是最古老的传统医学体系之一,需要工程设备来减少药品生产对技能的依赖,同时又不影响药品的疗效。

目的

当前工作的目的是按照传统方法研究悉达药物安娜帕瓦拉钦杜拉姆的标准制造方法,并在为普丹工艺设计的电气设备中进行制造并对其进行表征。

材料与方法

以安娜贝迪(硫酸亚铁)和科迪帕瓦拉姆(珊瑚)为原料,按照传统方法在坑中制备安娜帕瓦拉钦杜拉姆,并在用于普丹的电气设备中制备相同的药物;使用现代科学方法对从坑中和设备中制备的药物进行表征。

结果

普丹过程中密封阿加尔内部产生的最大压力为35毫巴,底部捕获的普丹过程中的最高温度为635℃。X射线衍射分析表明,原料由FeO(HO)、2Fe(OH)SO和CaSO(HO)组成,成品药物由FeO和CaSO组成。X射线荧光分析表明,成品药物中的主要氧化物为FeO(T)、SO、CaO和MgO。坑中成品药物的平均粒径为6.52μm,带有西莱曼的设备制备的成品药物平均粒径为6.45μm,不带西莱曼的设备制备的成品药物平均粒径为6.28μm。

结论

制造安娜帕瓦拉钦杜拉姆的普丹工艺可以使用具有从坑中获得的温度曲线的普丹设备来完成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0db2/12268534/b0279b76b51d/gr1.jpg

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