A method for separating p-hydroxyphenylglycine and ammonium sulfate from glycine mother liquor

A technology of p-hydroxyphenylglycine and glycine mother liquor, applied in chemical instruments and methods, ammonium sulfate, preparation of organic compounds, etc., can solve the problems of waste, high human risk, high energy consumption, etc., and reduce equipment investment. , Significant economic benefits, the effect of reducing operating costs

Active Publication Date: 2016-03-16
XIAMEN STARMEM TECH
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] The synthesis mother liquor of p-hydroxyphenylglycine contains a large amount of phenol and ammonium sulfate and other substances, and direct discharge will lead to high COD content in wastewater, causing environmental pollution; in addition, because the mother liquor contains p-hydroxyphenylglycine, etc., if it is discharged outside, it will cause waste
In the prior art, the treatment of p-hydroxyphenylglycine synthesis mother liquor is mostly purified by distillation, the quality of the extracted product is poor, and the phenol in the waste water is easy to exceed the standard, and the environmental pollution is relatively large
CN102060311A discloses a method of concentrating glycine mother liquor at atmospheric pressure and then using methanol to separate ammonium sulfate and p-hydroxyphenylglycine. This method requires the use of methanol, which is dangerous to humans, and is prone to produce organic solvent residues and introduce new impurities ; CN101967106A discloses a method for treating L-p-hydroxyphenylglycine desalination mother liquor by using bipolar membrane electrodialysis technology combined with alkali adjustment or ion exchange resin activation process. There are certain safety hazards in the application of medicine, coupled with the increase in energy consumption, it has not been able to truly achieve low-carbon environmental protection
CN101759583A discloses a new technology for recycling DL-p-hydroxyphenylglycine waste, which is to add water, recycled materials, hydrochloric acid, and activated carbon in a certain proportion, add activated carbon to decolorize and filter after heating and dissolving, and adjust the pH value of the filtered mother liquor to a certain level with ammonia water. range, centrifugation to obtain qualified p-hydroxyphenylglycine, this method also has the problems of cumbersome operation and high energy consumption

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  • A method for separating p-hydroxyphenylglycine and ammonium sulfate from glycine mother liquor
  • A method for separating p-hydroxyphenylglycine and ammonium sulfate from glycine mother liquor
  • A method for separating p-hydroxyphenylglycine and ammonium sulfate from glycine mother liquor

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Embodiment Construction

[0024] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0025] Such as figure 1 As shown, the continuous chromatographic separation system adopted in this embodiment has 20 built-in separation units, and each separation unit is filled with a strong acid type cation exchange resin; the continuous chromatographic separation system is divided into five areas, and each area is composed as follows:

[0026] Adsorption zone (11# separation unit): Contains 1 separation unit, adopts the forward feeding method, the raw material liquid passes through the separation unit in turn, and the intermediate feed liquid flowing out of the 12# separation unit enters the intermediate material tank;

[0027] The first separation and washing area (4#-10# separation unit): It contains 7 separation units, and the separation unit adsorbed by the adsorption area adopts the forward series connection of pure water into the wate...

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Abstract

The invention discloses a method for separating p-hydroxyphenylglycine and ammonium sulfate from glycine mother liquor, which is characterized in that the pH of glycine mother liquor containing p-hydroxyphenylglycine and ammonium sulfate is adjusted to 3.0-8.0, Under the conditions, enter the continuous chromatographic separation system filled with strong acid type cation exchange resin, use water as the eluent to elute, collect the eluent and residual liquid respectively, and obtain two products, p-hydroxyphenylglycine and ammonium sulfate, and realize p-hydroxyphenylglycine Efficient separation of glycine and ammonium sulfate. The beneficial effects of the present invention are: compact equipment, simplified system, reduced pipeline and less occupied area; due to continuous operation under non-interrupted operation, the composition and concentration of the product remain basically stable; The change of rotation speed is automatically adjusted; the operating cost and equipment investment are reduced; the separation effect is good, and the purity of p-hydroxyphenylglycine after separation is high.

Description

technical field [0001] The invention relates to a technology for separating and purifying p-hydroxyphenylglycine from p-hydroxyphenylglycine mother liquor, in particular to a method for separating p-hydroxyphenylglycine and ammonium sulfate from glycine mother liquor by using chromatographic technology, which belongs to the field of chemical separation. Background technique [0002] The synthesis mother liquor of p-hydroxyphenylglycine contains a large amount of phenol and ammonium sulfate and other substances, and direct discharge will lead to high COD content in wastewater, causing environmental pollution; in addition, because the mother liquor contains p-hydroxyphenylglycine, etc., if it is discharged outside, it will cause waste . In the prior art, distillation is often used in the treatment of p-hydroxyphenylglycine synthesis mother liquor, the quality of the extracted product is poor, and the phenol in the waste water is easy to exceed the standard, causing serious env...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): C07C229/36C07C227/40C01C1/24
Inventor 卢伯福彭广生孙洪贵张松北虞美辉李振峰陈洪景雷细良
Owner XIAMEN STARMEM TECH
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