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采用机械法和溶剂萃取从半脱脂胭脂树种子中提取胭脂树红:过程集成与经济评估。

Obtaining bixin from semi-defatted annatto seeds by a mechanical method and solvent extraction: Process integration and economic evaluation.

机构信息

LASEFI/DEA/FEA (School of Food Engineering), UNICAMP (University of Campinas), Rua Monteiro Lobato, 80, Campinas, SP CEP: 13083-862, Brazil.

LASEFI/DEA/FEA (School of Food Engineering), UNICAMP (University of Campinas), Rua Monteiro Lobato, 80, Campinas, SP CEP: 13083-862, Brazil.

出版信息

Food Res Int. 2017 Sep;99(Pt 1):393-402. doi: 10.1016/j.foodres.2017.05.032. Epub 2017 May 29.

DOI:10.1016/j.foodres.2017.05.032
PMID:28784497
Abstract

This work involves the application of physical separation methods to concentrate the pigment of semi-defatted annatto seeds, a noble vegetal biomass rich in bixin pigments. Semi-defatted annatto seeds are the residue produced after the extraction of the lipid fraction from annatto seeds using supercritical fluid extraction (SFE). Semi-defatted annatto seeds are use in this work due to three important reasons: i) previous lipid extraction is necessary to recovery the tocotrienol-rich oil present in the annatto seeds, ii) an initial removal of the oil via SFE process favors bixin separation and iii) the cost of raw material is null. Physical methods including i) the mechanical fractionation method and ii) an integrated process of mechanical fractionation method and low-pressure solvent extraction (LPSE) were studied. The integrated process was proposed for processing two different semi-defatted annatto materials denoted Batches 1 and 2. The cost of manufacture (COM) was calculated for two different production scales (5 and 50L) considering the integrated process vs. only the mechanical fractionation method. The integrated process showed a significantly higher COM than mechanical fractionation method. This work suggests that mechanical fractionation method is an adequate and low-cost process to obtain a rich-pigment product from semi-defatted annatto seeds.

摘要

本工作涉及应用物理分离方法来浓缩半脱脂胭脂树种子的色素,半脱脂胭脂树种子是一种富含胭脂树红质色素的优质植物生物质。半脱脂胭脂树种子是在这项工作中使用的,原因有三个:i)之前的脂质提取是从胭脂树种子中回收富含生育三烯酚的油所必需的,ii)通过 SFE 过程初步去除油有利于胭脂树红质的分离,iii)原材料的成本为零。研究了包括 i)机械分级法和 ii)机械分级法和低压溶剂萃取(LPSE)集成工艺在内的物理方法。该集成工艺是为处理两个不同的半脱脂胭脂树材料 Batch1 和 Batch2 而提出的。考虑到综合工艺与仅机械分级法相比,计算了两种不同生产规模(5 和 50L)的制造成本(COM)。综合工艺的 COM 明显高于机械分级法。这项工作表明,机械分级法是从半脱脂胭脂树种子中获得富含色素产品的一种合适且低成本的工艺。

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