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玉米秸稈AFEX預處理纖維素酶解特性研究
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國家自然科學基金面上項目(31571569)


Enzymatic Hydrolysis Characteristics of Cellulose in AFEX Pretreated Corn Stover
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    摘要:

    為了探究氨纖維膨脹(Ammonia fiber expansion,AFEX)預處理產(chǎn)生的酚類物質和木質素暴露程度的變化對酶解的影響,,對玉米秸稈(CK)進行了高,、低兩個溫度水平的AFEX預處理(L-AFEX:90℃、5min,;H-AFEX:140℃,、15min,載氨量和含水率分別為1g/g和60%),,對預處理后玉米秸稈的木質纖維成分,、酚類物質含量及纖維素、木質素的表面暴露程度的變化進行了系統(tǒng)表征,,并分析了這些變化對酶解的影響,。研究表明,,L-AFEX和H-AFEX預處理將玉米秸稈的酶解葡萄糖得率分別提高至37.57%和74.74%,隨著AFEX預處理溫度的升高,,玉米秸稈中纖維素和半纖維素含量不變,,酸溶木質素增多,木質素親水性增強,,減弱了酶解時木質素與纖維素酶間的非生產(chǎn)性吸附,,同時產(chǎn)生了更多的酚類物質。AFEX預處理上清液中的酚類物質對纖維素酶水解能力的抑制作用顯著,,L-AFEX和H-AFEX預處理的抑制率分別為4.10%和10.40%,,酚類物質對H-AFEX固體殘余物酶解的抑制率為5.06%。AFEX預處理顯著增大了纖維素酶可及的表面積,,將纖維素表面積從316.08m2/g(CK)增大至430.97m2/g(L-AFEX)和422.27m2/g(H-AFEX),,將木質素表面積從293.13m2/g(CK)減小至271.25m2/g(L-AFEX)和215.23m2/g(H-AFEX),使纖維素與木質素表面積的比值從1.08(CK)增大至1.59(L-AFEX)和1.96(H-AFEX),,有效降低了木質素對纖維素酶解的空間阻礙,,提高了酶解效率。

    Abstract:

    In order to further explore the changes of free total phenols content and lignin exposure after AFEX pretreatment and their effects on enzymatic hydrolysis, AFEX pretreatment experiments were conducted on corn stover(CK)under two conditions: L-AFEX (1g/g, 60% moisture content, 90℃, 5min) and H-AFEX (1g/g, 60% moisture content, 140℃, 15min). The changes of lignocellulosic composition, content of free total phenols, and exposure of cellulose and lignin of CK, L-AFEX pretreated corn stover, and H-AFEX pretreated corn stover were systematically characterized, and their effects on enzymatic hydrolysis were analyzed. The results showed that L-AFEX and H-AFEX enhanced the glucose yield of enzymatic hydrolysis of corn stover to 37.57% and 74.74%, respectively. As the condition of AFEX pretreatment was increased, the content of cellulose and hemicellulose in corn stover remained unchanged, the content of acid soluble lignin was increased, the hydrophilicity of lignin was enhanced which might weaken the non-productive adsorption between lignin and cellulase during enzymatic hydrolysis, and more phenols were produced. The inhibition effects of the phenols produced during AFEX pretreatment on cellulase hydrolysis ability were significant (4.10% for L-AFEX and 10.40% for H-AFEX). Moreover, the enzymatic hydrolysis of H-AFEX-pretreated solid residue was inhibited (5.06%) by phenols. After AFEX pretreatment, the cell wall structure was destroyed, the enzyme-accessible surface area was increased, surface area of cellulose was increased from 316.08m2/g (CK) to 430.97m2/g (L-AFEX) and 422.27m2/g (H-AFEX), surface area of lignin was decreased from 293.13m2/g (CK) to 271.25m2/g (L-AFEX) and 215.23m2/g (H-AFEX), and the ratio of cellulose surface area to lignin surface area was increased from 1.08 (CK) to 1.59 (L-AFEX) and 1.96 (H-AFEX), which effectively reduced the steric hindrance of lignin and enhanced the enzymatic hydrolysis efficiency.

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李駿寶,陸敏生,張海燕,韓魯佳.玉米秸稈AFEX預處理纖維素酶解特性研究[J].農(nóng)業(yè)機械學報,2021,52(1):294-302. LI Junbao, LU Minsheng, ZHANG Haiyan, HAN Lujia. Enzymatic Hydrolysis Characteristics of Cellulose in AFEX Pretreated Corn Stover[J]. Transactions of the Chinese Society for Agricultural Machinery,2021,52(1):294-302.

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  • 收稿日期:2020-03-19
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  • 在線發(fā)布日期: 2021-01-10
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