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Pectinases yeast production using grape skin as carbon source 被引量:1
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作者 María Arévalo-Villena mercedes fernández +1 位作者 Jesús López Ana Briones 《Advances in Bioscience and Biotechnology》 2011年第2期89-96,共8页
Pectinases are used in Enology for some different utilities. Enzymatic preparations from moulds are a mixed of different enzymes with strong and unspe-cific activities. Some Saccharomyces cerevisiae pro-duce pectinase... Pectinases are used in Enology for some different utilities. Enzymatic preparations from moulds are a mixed of different enzymes with strong and unspe-cific activities. Some Saccharomyces cerevisiae pro-duce pectinases which can be used instead of com-mercial preparations. The objectives of this work were to study the enzyme secretion by one Saccharo-myces cerevisiae (CECT 11783) for growing on grape skin (industry oenological by-product) as carbon source. Preliminary experiments showed that the strain produced pectinases for growing on grape skin without any other carbon source. Statistical treat-ment (factorial design 25) was applied to evaluate the influences of related factors (agitation, temperature, presence of peptone and detergent in the medium and time of growth) Variables with the most significant interactions for pectinase production were agitation and nitrogen source concentration. Response surface methodology showed that a first order model was not adequate for results. Nevertheless, the built of a sec-ond order model offered a polynomial equation which surface predicted a maximum of activity (52.68 enzymatic units) for specific values of the studied variables (147.8 rpm of agitation and 15.9 g of pep-tone/ L culture medium). 展开更多
关键词 PECTINASE ENZYME From YEAST Enology GRAPE SKIN Statistical Treatment Response Surface Methodology
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生物可降解聚(丁烯二对苯二甲酸丁二酯)与聚(羟基氨基醚)在包装上的应用
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作者 Ainara Sangroniz Leire Sangroniz +2 位作者 Nora Aranburu mercedes fernández Antxon Santamaria 《绿色包装》 2018年第7期83-83,共1页
研究了通过添加聚(氢化氨基醚)(PHAE)来提高可生物降解聚对苯二甲酸丁二酯(PBAT)的性能.通过DSC、DMTA、FTIR和TEM分析表明,共混物具有部分混溶性,具有细小分散的液滴/基体形态.除了形貌、氢氧基和叔胺之间的氢键外,还可以用纯聚... 研究了通过添加聚(氢化氨基醚)(PHAE)来提高可生物降解聚对苯二甲酸丁二酯(PBAT)的性能.通过DSC、DMTA、FTIR和TEM分析表明,共混物具有部分混溶性,具有细小分散的液滴/基体形态.除了形貌、氢氧基和叔胺之间的氢键外,还可以用纯聚(氢氧基醚)和共聚物中的羰基(丁烯己二烯-对苯二甲酸酯)得到线性粘弹性性质和时间弛豫谱.富含聚(氢化氨基醚)的共混物具有最高的弛豫时间和随之的应变硬化行为,这有助于包装薄膜的细化.通过加入聚(氢化氨基醚)来测量对水蒸气、柠檬烯和二氧化碳的渗透率,从而大大降低PBAT的渗透率,特别是对二氧化碳的渗透率.共混物的力学性能与形成基体的聚合物相似.总的来说,这项工作旨在阐明第二种成分对可生物降解聚合物性能的影响,以便为包装应用设计合适的材料. 展开更多
关键词 聚对苯二甲酸丁二酯 可生物降解 包装薄膜 应用 丁烯 聚合物性能 羟基
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