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Regenerated Silica Gel as Stationary Phase on Vacuum Column Chromatography to Purify Temulawak's Extracts

机译:再生硅胶作为真空柱色谱法的固定相,纯化TemulaWak的提取物

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Commercial silica gel only used once by many researchers and affected high cost for purification process, also less support the green chemistry program. This research focused in regeneration silica gel that used purification of temulawak's extracts (Curcuma xanthorrhiza Roxb) by vacuum column chromatography. Sample extracts (contains 10.1195±0.5971% of curcuminoids) was purified by vacuum column chromatography (pressure: 45 kPa, column: 100mm on length and 16mm on diameter). Ethanol 96% and acetone were compared as eluent. The amount of solvent and yield of curcuminoids used as indicator purification. The silica gel was regenerated with heating in 600°C for 8 hours The silica gels were analyzed by IR. spectroscopy and X-ray diffraction. Furthermore, regenerated silica gel was used as the stationary phase in vacuum column chromatography under the same conditions with the previous purification. All the purification experiments were performed in three repetitions. Based on regression equation, y=0.132x+0.0011 (r~2=0.9997) the yield of curcuminoids on purified products using ethanol as the eluent was improved 4.26% (to 14.3724±0.5749%) and by acetone was improved 3,03% (to 13.1450 ±0.6318%). The IR spectrum of both silica gel showed the same vibration profile and also there were three crystallinity peaks missing on its X-ray diffraction. Regenerated silica gel has the same performance with new silica gel in purification of temulawak's extract: by ethanol has increased 4.08% (14.1947±0.7415%) and 2.93% (13.0447±0.4822) by acetone. In addition, all purification products showed similar TLC profiles. Purification using regenerated silica gel as the adsorbent on vacuum column chromatography has exactly same potential with the new silica gel.
机译:商用硅胶仅供多项研究人员使用一次,并影响净化过程的高成本,也少支持绿色化学计划。本研究专注于再生硅胶,通过真空柱色谱法纯化Temulawak提取物(Curcuma Xanthorrhiza Roxb)。通过真空柱色谱法(压力:45kPa,柱子:长度为16mm,含有10.1195±0.5971%的姜黄素)纯化(含有101195±0.5971%的姜黄素)。将乙醇96%和丙酮与洗脱剂进行比较。用作指示剂纯化的溶剂量和姜黄素的产率。将硅胶在600℃下加热再生8小时,通过IR分析二氧化硅凝胶。光谱学和X射线衍射。此外,在与先前纯化的相同条件下,使用再生硅胶作为真空柱色谱中的固定相。所有纯化实验都在三次重复中进行。基于回归方程,Y = 0.132倍+ 0.0011(R〜2 = 0.9997)使用乙醇作为洗脱液的纯化产物的姜黄素产量提高了4.26%(至14.3724±0.5749%),丙酮提高了3,03% (至13.1450±0.6318%)。两种硅胶的IR光谱显示出相同的振动曲线,并且其X射线衍射上缺少三个结晶度峰。再生硅胶具有与新硅胶相同的性能,纯化TemulaWak的提取物:通过丙酮增加4.08%(14.1947±0.7415%)和2.93%(13.0447±0.4822)。此外,所有净化产品显示出类似的TLC型材。使用再生硅胶作为吸附剂在真空柱色谱上具有完全相同的硅胶纯化,具有新的硅胶。

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