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棕榈油废料作为产脂肪酶的原料及生物催化剂的应用/再利用

Palm oil wastes as feedstock for lipase production by and biocatalyst application/reuse.

作者信息

Fraga Jully L, Souza Camila P L, Pereira Adejanildo da S, Aguieiras Erika C G, de Silva Laís O, Torres Alexandre G, Freire Denise G, Amaral Priscilla F F

机构信息

Departamento de Engenharia Bioquímica, Escola de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ 21941-909 Brazil.

Departamento de Bioquímica, Instituto de Química, Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ 21941-909 Brazil.

出版信息

3 Biotech. 2021 Apr;11(4):191. doi: 10.1007/s13205-021-02748-1. Epub 2021 Mar 25.

Abstract

Palm oil production chain generates a greasy residue in the refining stage, the Palm Oil Deodorizer Distillate (PODD), mainly composed of free fatty acids. Palm oil is also used industrially to fry foods, generating a residual frying oil (RFO). In this paper, we aimed to produce lipase from palm agro-industrial wastes using an unconventional yeast. RFO_palm, from a known source, consisted of 0.11% MAG + FFA, 1.5% DAG, and 97.5 TAG, while RFO_commercial, from a commercial restaurant, contained 6.7% of DAG and 93.3% of TAG. All palm oil wastes were useful for extracellular lipase production, especially RFO_commercial that provided the highest activity (4.9 U/mL) and productivity (465 U/L.h) in 75 h of processing time. In 48 h of process, PODD presented 2.3 U/mL of lipase activity and 48.5 U/L.h of productivity. RFO_commercial also showed the highest values for lipase associated to cell debris (843 U/g). This naturally immobilized biocatalyst was tested on hydrolysis reactions to produce Lipolyzed Milk Fat and was quite efficient, with a hydrolysis yield of 13.1% and 3-cycle reuse. Therefore, oily palm residues seem a promising alternative to produce lipases by the non-pathogenic yeast  and show great potential for industrial applications.

摘要

棕榈油生产链在精炼阶段会产生一种油腻残渣,即棕榈油脱臭馏出物(PODD),其主要成分是游离脂肪酸。棕榈油在工业上还用于油炸食品,会产生残留煎炸油(RFO)。在本文中,我们旨在利用一种非传统酵母从棕榈农业工业废料中生产脂肪酶。已知来源的RFO_palm含有0.11%的甘油单酯+游离脂肪酸、1.5%的甘油二酯和97.5%的甘油三酯,而来自商业餐厅的商业RFO_commercial含有6.7%的甘油二酯和93.3%的甘油三酯。所有棕榈油废料都可用于细胞外脂肪酶的生产,尤其是RFO_commercial,在75小时的处理时间内提供了最高活性(4.9 U/mL)和生产力(465 U/L·h)。在48小时的处理过程中,PODD的脂肪酶活性为2.3 U/mL,生产力为48.5 U/L·h。RFO_commercial与细胞碎片相关的脂肪酶值也最高(843 U/g)。这种天然固定化生物催化剂用于水解反应以生产水解乳脂肪,效果相当显著,水解产率为13.1%,可重复使用3次。因此,油棕残渣似乎是通过非致病性酵母生产脂肪酶的一种有前景的替代物,并且在工业应用中显示出巨大潜力。

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本文引用的文献

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Use of Lipase Immobilized in Cell Debris for the Production of Lipolyzed Milk Fat (LMF).
Int J Mol Sci. 2018 Oct 31;19(11):3413. doi: 10.3390/ijms19113413.
5
Biotechnological applications of Yarrowia lipolytica: Past, present and future.
Biotechnol Adv. 2015 Dec;33(8):1522-46. doi: 10.1016/j.biotechadv.2015.07.010. Epub 2015 Aug 4.
7
Chemistry of deep-fat frying oils.
J Food Sci. 2007 Jun;72(5):R77-86. doi: 10.1111/j.1750-3841.2007.00352.x.
8
Prediction of gas chromatographic retention of polyunsaturated fatty acid methyl esters.
J Chromatogr A. 2006 Mar 31;1110(1-2):171-80. doi: 10.1016/j.chroma.2006.01.092. Epub 2006 Feb 7.
9
Yeasts from marine and estuarine waters with different levels of pollution in the state of rio de janeiro, Brazil.
Appl Environ Microbiol. 1981 Jan;41(1):173-8. doi: 10.1128/aem.41.1.173-178.1981.

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