Recycling preparation of high-purity tagatose from galactose using one-pot boronate affinity adsorbent-based adsorption-Assisted isomerization and simultaneous purification

Development of a boronate-affinity based adsorption-assisted isomerization strategy: an innovative and sustainable approach for high-efficiency isomerize and simultaneously isolate of high-purity D-tagatose with yield ∼53%, purity>85% and recovery ratio >87%. [Display omitted] •Adsorption-assi...

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Veröffentlicht in:Chemical engineering journal (Lausanne, Switzerland : 1996) Switzerland : 1996), 2022-10, Vol.446, p.137089, Article 137089
Hauptverfasser: Wang, Zihao, Wang, Mingming, Lyu, Xiaomei, Wang, Caiyun, Tong, Yanjun, Hua, Xiao, Yang, Ruijin
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Sprache:eng
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Zusammenfassung:Development of a boronate-affinity based adsorption-assisted isomerization strategy: an innovative and sustainable approach for high-efficiency isomerize and simultaneously isolate of high-purity D-tagatose with yield ∼53%, purity>85% and recovery ratio >87%. [Display omitted] •Adsorption-assisted isomerization strategy based on boronate-affinity is provided.•One-step production and isolation of high-purity D-tagatose is achieved concurrently.•D-galactose-to-D-tagatose isomerization equilibrium is much enhanced up to 53%.•D-tagatose purity > 85% with recovery ratio ∼ 87% is gained via sequential desorption.•Excellent operational stability of the strategy favors its sustainable applications. D-tagatose, one of the most valuable low-calorie rare sugars, is in huge market demand in the current food and medicine industries due to its excellent physiological functions. The production and recovery of high-purity tagatose from galactose isomerization presents two major challenges due to the exist thermodynamically limitation and their high structural similarity. Interestingly, the prepared macroporous polymeric boronate-affinity adsorbent (PBA-adsorbent) exhibited superior binding affinity towards tagatose than galactose. In a 1:1 galactose-to-tagatose binary solution, the PBA-adsorbent presented a much higher adsorption capacity towards tagatose (QTag = 53.94 mg/g) than galactose (QGal = 7.06 mg/g) and therefore enabled an excellent purification efficiency. Herein, a novel strategy for combining the PBA-adsorbent-based adsorption-assisted galactose-to-tagatose isomerization and simultaneous purification of tagatose, where the isomerization of galactose and the recovery of tagatose occur concurrently in the same PBA-adsorbent loaded column system, is presented. Through in situ selective capture of the newly formed tagatose, while leaving behind the galactose, the applied strategy enables an improved galactose-to-tagatose isomerization equilibrium with the yield of tagatose reaching up to 52.92%. Simultaneously, the adsorbed tagatose can be recovered efficiently via a two-stage sequential desorption process, which improves the tagatose purity to ∼ 85% with a promising recovery ratio of 87.42%. Remarkably, both the prepared PBA-adsorbent and the applied strategy exhibited excellent operational stability. Through pH-controlled desorption, the loaded PBA-adsorbent and the column system can be easily regenerated, well proving their good durability and recyclability in
ISSN:1385-8947
1873-3212
DOI:10.1016/j.cej.2022.137089