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A double-cycle furfural production system and process

A production process and double-cycle technology, applied in the direction of organic chemistry, can solve the problems of corncob consumption, cellulose and lignin destruction, low utilization rate of raw materials, etc., to reduce side reactions, reduce solubility, and save production procedures. Effect

Active Publication Date: 2020-12-18
山东乔克环境科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The inventors found that the yield of furfural using the one-step sulfuric acid process is low, only about 45%; a large amount of waste water and waste residues are produced, and 1 ton of furfural is produced to produce 24 tons of highly polluted waste water; the raw material utilization rate is low, and 1 ton of furfural is produced, 11 corncobs are consumed. tons; the waste residue is blackened, and the cellulose and lignin are severely damaged
[0005] In addition, furfural prepared by dehydration of pentose sugar will react with xylose intermediates in an acidic environment, or furfural will undergo cross-linking, resulting in a large number of by-products, resulting in a low yield of furfural
Although the extractant has been added in the system prepared by furfural in the prior art, the prepared furfural is removed from the reaction system in time to reduce the side reaction of furfural, but the extraction speed and extraction rate of furfural by using the existing extractant The degree is difficult to guarantee, and then it is difficult to ensure the effective improvement of furfural yield
Moreover, in order to avoid excessive damage to cellulose during the hydrolysis of hemicellulose, organic acids are often used instead of sulfuric acid to provide an acidic environment for the hydrolysis of hemicellulose. However, when furfural is prepared, an extractant is added to the reaction system. The extractant is generally an organic solvent. According to the principle of similar miscibility, most organic acids will also dissolve in the extractant. On the one hand, it is difficult to ensure the direct recycling of organic acids. On the other hand, in the subsequent furfural refining process, it is necessary to increase the separation steps of furfural and organic acids. , which increases the processing procedure, thereby increasing the production cost of furfural

Method used

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  • A double-cycle furfural production system and process

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0058] The above double-cycle furfural production system is used for production, and the production process includes the following steps:

[0059] 1) Add 40 g of crushed dry corn cobs (about 0.5 cm in particle diameter) into an extraction tank, add 370 g of acetic acid and sodium chloride aqueous solution, and the corn cobs will undergo hydrolysis reaction with low-concentration acetic acid to obtain xylose and The mixed solution of acetic acid, the concentration of low-concentration acetic acid is 5%, v / v, mass percentage; The temperature of hydrolysis reaction is 88 ℃, and the pressure of hydrolysis reaction is 1 atmospheric pressure, obtains the xylose that 340ml xylose content is 3.2wt% solution.

[0060] 2) Add acetic acid, sodium chloride and o-nitroanisole to the xylose solution obtained in step 1), so that the concentration of acetic acid is 5%, v / v, and the concentration of sodium chloride is 10%, mass percent The volume ratio of the addition volume of o-nitroanisole...

Embodiment 2

[0068] The above double-cycle furfural production system is used for production, and the production process includes the following steps:

[0069] 1) Add 40 g of crushed dry corn cobs to the extraction tank, add 370 g of acetic acid and sodium chloride aqueous solution, the corn cobs and low-concentration acetic acid undergo a hydrolysis reaction to obtain a mixed solution of xylose and acetic acid, low-concentration acetic acid The concentration of sodium chloride is 1%, v / v, and the concentration of sodium chloride is 5%, mass percent; The temperature of hydrolysis reaction is 90 ℃, and the pressure of hydrolysis reaction is 1 atmospheric pressure, obtains 345ml xylose content and is 3.1wt% xylose sugar solution.

[0070] 2) Add acetic acid, sodium chloride and o-nitroanisole to the xylose solution obtained in step 1), so that the concentration of acetic acid is 6%, v / v, and the concentration of sodium chloride is 13%, mass percent The volume ratio of the addition volume of...

Embodiment 3

[0078] The above double-cycle furfural production system is used for production, and the production process includes the following steps:

[0079]1) Add 40 g of crushed dry corn cobs to the extraction tank, add 370 g of acetic acid and sodium chloride aqueous solution, the corn cobs and low-concentration acetic acid undergo a hydrolysis reaction to obtain a mixed solution of xylose and acetic acid, low-concentration acetic acid The concentration of sodium chloride is 2%, v / v, the concentration of sodium chloride is 5%, mass percentage; The temperature of hydrolysis reaction is 85 ℃, and the pressure of hydrolysis reaction is 1 atmospheric pressure, obtains the xylose that 338ml xylose content is 3wt%. solution.

[0080] 2) Add acetic acid, sodium chloride and o-nitroanisole to the xylose solution obtained in step 1), so that the concentration of acetic acid is 6%, v / v, and the concentration of sodium chloride is 5%, mass percent The volume ratio of the added volume of o-nitro...

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Abstract

The invention discloses a double-circulation furfural production system, and technology. The technology comprises following steps: 1, corn cob and low concentration acetic acid are subjected to hydrolysis reaction so as to obtain a mixed solution of xylose and acetic acid, wherein the concentration of the low concentration acetic acid is controlled to be 1 to 2%, v / v; 2, acetic acid, sodium chloride, and o-nitroanisole are added into the mixed solution of xylose and acetic acid obtained in step 1, wherein the acetic acid concentration is controlled to be 3 to 6%, v / v, the sodium chloride concentration is controlled to be 5 to 10% by mass, the volume ratio of o-nitroanisole to the mixed solution is controlled to be 1:0.8-1.2, and in the reaction process, the reaction system is stirred continuously; 3, after reaction, the obtained reaction system is allowed to stand for a preset time period for layering, an upper layer water phase is recycled back into the step 1 to provide an acidic environment for corn cob hydrolysis, and a lower layer extracted phase is conveyed into a distillation column for separation of crude furfural and o-nitroanisole; and 4, the o-nitroanisole obtained through separation is recycled back into the step 3.

Description

technical field [0001] The disclosure belongs to the technical field of furfural preparation, and in particular relates to a double-cycle furfural production system and process. Background technique [0002] The information disclosed in this Background section is only intended to increase the understanding of the general background of the disclosure, and is not necessarily to be taken as an acknowledgment or any form of suggestion that the information constitutes prior art that is already known to those skilled in the art. [0003] Furfural, also known as furan formaldehyde, is widely used in many production fields such as medicine, petrochemical industry, and food additives. However, furfural can only be produced by hydrolysis of agricultural and forestry products. Plant fibers mainly contain cellulose, hemicellulose and lignin. Among them, pentosan contained in hemicellulose is hydrolyzed to generate pentose, and then furfural is produced by dehydration of pentose . [0...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C07D307/50
CPCC07D307/50
Inventor 肖兵董玉平王仲钢
Owner 山东乔克环境科技有限公司
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