首页> 外文期刊>Journal of Polymers and the Environment >Physical and Mechanical Properties of Cellulose Nanofibril Films from Bleached Eucalyptus Pulp by Endoglucanase Treatment and Microfluidization
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Physical and Mechanical Properties of Cellulose Nanofibril Films from Bleached Eucalyptus Pulp by Endoglucanase Treatment and Microfluidization

机译:内切葡聚糖酶处理和微流化处理桉木浆纤维素纳米原纤膜的物理力学性能

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摘要

A GH5 hyperthermostable endoglucanase (Ph-GH5) from the archaeon Pyrococcus horikoshii and a commercial endoglucanase (FR) were used to treat bleached eucalyptus pulp (BEP) fibers to produce cellulose nanofibrils (CNF) and subsequently to CNF films. TEM imaging indicated that Ph-GH5 produced longer and more entangled CNF than FR with the same number of microfluidization passes. Physical and mechanical properties of CNF films were characterized. Optical opacity of CNF films from FR (10 mg/g) at 40 passes through the microfluidizer can be as low as 3.7 %, compared with 18.2 % from untreated BEP at the same number of passes. CNF films exhibited similar thermal stability with untreated BEP. Highest specific modulus of CNF films was also obtained from FR (10 mg/g), reaching 56 MNm/kg, approximately 271 % of the CNF films from untreated BEP at 40 passes through the microfluidizer. CNF film from Ph-GH5 (1 mg/g) at 40 passes provided the highest specific maximum tensile strength at 120 kNm/kg.
机译:来自古细菌毕赤酵母的GH5超热内切葡聚糖酶(Ph-GH5)和市售内切葡聚糖酶(FR)被用于处理漂白的桉木浆(BEP)纤维,以生产纤维素纳米原纤维(CNF),随后生产CNF薄膜。 TEM成像表明,在相同的微流化次数下,Ph-GH5生成的CNF比FR更长,更纠缠。表征了CNF膜的物理和机械性能。来自FR(10 mg / g)的CNF薄膜在40次通过微流化器时的光学不透明度可以低至3.7%,而在相同的通过次数下,未经处理的BEP的CNF薄膜的不透明度为18.2%。 CNF膜与未经处理的BEP表现出相似的热稳定性。 CNF膜的最高比模量也可从FR中获得(10 mg / g),达到56 MNm / kg,约271%的未处理BEP的CNF膜在40℃时通过微流化器。来自Ph-GH5的CNF薄膜(1 mg / g)经过40次通过,提供了120 kNm / kg的最高比最大抗张强度。

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