Fig. 8. The concentration profiles of chlorogenic acid and gallic acid translation - Fig. 8. The concentration profiles of chlorogenic acid and gallic acid English how to say

Fig. 8. The concentration profiles

Fig. 8. The concentration profiles of chlorogenic acid and gallic acid in the SMB at cyclic steady state at (a) the start of switching time and (b) the end of switching time. Fig. 8a and 8b. show the concentration profiles at the start of switching time and the end of switching time respectively in the SMB columns under cyclic steady state (CSS) that reached around 96 cycles after the starting of SMB operation. เมื่อสังเกต รูป 8a ใน zone I จะเห็นได้ว่า tailing edge of gallic acid overlap at the extract port เพียงเล็กน้อย ส่งผลให้เมื่อเก็บ extract product จะทำให้มีการเจือปนเล็กน้อย แต่ purity of extract product ก็ยังมากถึง 99% ในขณะเดียวกันที่ zone III ในรูป 8b. ที่ the end of switching time, front edge of chlorogenic acid ยังไม่ออกไปจาก the exit zone III ส่งผลให้ไม่มีสิ่งเจือปนใน raffinate product ทำให้ high purity of gallic acid was collected. นอกจากนี้เมื่อสังเกต zone I ใน Fig. 8b. จะเห็นได้ว่า zone นี้ completely regeneration เพื่อรองรับ feed ใน switching ถัดไปเพื่อที่จะเพิ่มความเข้มข้นของสารทั้งสอง อาจจะมีการประยุกต์ใช้ partial collection ในงานวิจัยที่จะต่อยอดในอนาคต งานวิจัยนี้จะช่วยเป็นแนวทางที่ทำให้รู้ว่าการแยก chlorogenic acid from gallic acid
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Fig. 8. The concentration profiles of chlorogenic acid and gallic acid in the SMB at cyclic steady state at (a) the start of switching time and (b) the end of switching time.<br>Fig. 8a and 8b. Show the concentration profiles at the start of switching time and the end of switching time respectively in the SMB columns under cyclic steady state (CSS) that reached around 96 cycles after the starting of SMB operation. When observing Figure 8a. in zone I can see that the tailing edge of gallic acid overlap at the extract port a little. As a result, when the store extract product will result in the contamination, but purity of extract product was 99% in the same time zone III in Figure 8b. At the end of switching time, front edge of chlorogenic acid is not removed. from the exit zone III a result, no impurities in the raffinate product making high purity of gallic acid was collected. also, when the zone I in Fig. 8b. it can be seen that the zone is completely regeneration for feed in switching to.<br><br><br>In order to increase the concentration of the two substances. There may be a partial collection of the application of the research will continue in the future. This research will help guide the isolation that chlorogenic acid from gallic acid.
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The concentration profiles of chlorogenic acid and gallic acid in The SMB at cyclic steady state at (a) the start of switching time and (b) the end of switching time.. show The concentration profiles at the start of The switching time and the end of switching time respectively in the SMB columns under cyclic steady state (CSS) that reached around 96 cycles after The starting of SMB operation. When a figure is observed 8a in zone I can see that the tailing edge of gallic acid overlap at the extract port just slightly resulting when the extract product is made to a slight contaminant, but purity of extract product is also very up to 99% at the same time zone III in Figure 8a. At the end of switching time, front edge of chlorogenic acid did not go out of the exit zone III, resulting in no impurity in raffinate product, making high purity of gallic acid was collected. Also, when observing zone I in Fig. 8a. You can see that zone completely regeneration to support feed in the next switching.<br><br><br>In order to increase the concentration of the two compounds, the partial collection application in research will be capped in the future. This research helps guide you to know how to isolate chlorogenic acid from gallic acid.
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Stable ring states of chlorogenic acid and galytic acid in SMB at Fig.8. M concentration“ End of switching time and B □ switching time.<br>5. 8a and 8b show the concentration profile at the beginning and end of the switching time. In a stable state, after the SMB column "CSS 41" reaches about 96 cycles, the SMB operation begins to observe. The 8A map of region I shows that the acid covered edge of galic is slightly higher than that of extraction. The product will have a small thorn, but the purity of the product reaches 99% s, while in Zone 8 III. At the end of the switching time, the edge of chlorogenic acid does not leave zone III, resulting in no impurities in the traffic. The results show that this area has high purity of acid production. Feed regeneration at next switch<br>In order to improve the concentration of these two substances, it is possible to apply the particle in the future research. The method of separating chlorogenic acid from chlorogenic acid<br>
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