一种葡萄糖浓缩流加装置

CN224506288UActive Publication Date: 2026-07-17NEW TUOYANG BIO-ENG CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NEW TUOYANG BIO-ENG CO LTD
Filing Date
2025-08-20
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

During glucose concentration, the sugar solution in the pipeline gradually loses heat, leading to decreased fluidity, easy crystallization, and blockage of the pipeline, thus affecting production efficiency.

Method used

By installing a heat tracing pipe and a recovery device in the feed pipeline, hot water is supplied to the heat tracing pipe using a water pump to maintain the temperature of the sugar solution, prevent crystallization, and save water resources through the recovery device.

Benefits of technology

It stabilized the fluidity of the sugar solution, prevented pipe blockage, improved production efficiency, and reduced water waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

本实用新型提供一种葡萄糖浓缩流加装置,属于葡萄糖生产设备技术领域,包括流加管道,流加管道底部设置有下弧形套,下弧形套内沿流加管道轴向设有多根伴热管,多个伴热管的进水端共连通设置有一个第一集水仓,多个伴热管的出水端共连通设置有一个第二集水仓,第一集水仓进水端连通设置有供热装置,第二集水仓出水端连通设置有回收装置,本实用新型通过供水泵使热水流经热水管道供应至第一集水仓内,再通过第一集水仓把热水供应至伴热管内,进而对流加管道增热,使流加管道内的糖液保持在正常流动的温度,防止在流加过程中管道内的糖液逐步失去热能,从而稳定糖液的流动性,防止糖液结晶,进而使管道不易堵塞,从而稳定生产效率。
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Claims

1. A glucose concentration flow-through device comprising a flow-through conduit (100), characterized in that: The bottom of the feed pipe (100) is provided with a lower arc-shaped sleeve (101). The lower arc-shaped sleeve (101) is hollow. Multiple heat tracing pipes (102) are provided in the lower arc-shaped sleeve (101) along the axial direction of the feed pipe (100). The inlet ends of the multiple heat tracing pipes (102) are connected to a first water collection tank (103). The outlet ends of the multiple heat tracing pipes (102) are connected to a second water collection tank (104). The inlet end of the first water collection tank (103) is connected to a heating device (200). The outlet end of the second water collection tank (104) is connected to a recovery device (300). The heating device (200) and the recovery device (300) are connected to each other.

2. The glucose concentration flow addition device according to claim 1, wherein: The heating device (200) includes a hot water pipe (201) connected to the first water collection tank (103), and a heating water tank (202) is connected to the inlet end of the hot water pipe (201), and a water supply pipe (203) is connected to one side of the heating water tank (202).

3. A glucose concentration flow addition device as claimed in claim 2, characterized in that: A check valve (204) is installed on the hot water pipe (201). A first valve (205) is installed on one side of the check valve (204), and a water supply pump (206) is installed on the other side of the check valve (204).

4. A glucose concentration flow addition device as claimed in claim 3, characterized in that: The recycling device (300) includes a recycling pipe (301) connected to the second water collection tank (104). The outlet end of the recycling pipe (301) is connected to a recycling water tank (302). The outlet end of the recycling water tank (302) is connected to a water replenishment pipe (303). The water replenishment pipe (303) is connected to the heating water tank (202).

5. A glucose concentration flow addition device as claimed in claim 4, characterized in that: The recovery pipe (301) is equipped with a second valve (304), and the water replenishment pipe (303) is equipped with a third valve (305).

6. A glucose concentration flow addition device as claimed in claim 5, characterized in that: The water supply pipe (203) is connected to a clean water tank (400) at its inlet end. A water replenishment pump (401) is installed on the water supply pipe (203), and a fourth valve (402) is installed on the front side of the water replenishment pump (401).

7. A glucose concentration flow addition device as claimed in claim 6, characterized in that: The lower arc sleeve (101) is provided with an upper arc sleeve (500) on its upper part. The lower arc sleeve (101) and the upper arc sleeve (500) are connected by a sealing strip (501). The lower arc sleeve (101) and the upper arc sleeve (500) can form a circle. The inner walls of the lower arc sleeve (101) and the upper arc sleeve (500) are provided with a heat-insulating coating.