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1.
以小麦秸秆为原料,通过正交实验对纤维素酶降解秸秆纤维的影响因素进行了研究.结果表明,影响小麦秸秆降解的因素依次为:酶量>酶解时间>料液比>反应温度,其最适条件是:加酶量为40 u/g,酶解时间为10h,反应温度为40℃,料液比为1∶3,总糖含量达到43.24%.以米氏方程为基础,建立起最适酶解条件下总纤维素降解的动力学模型.  相似文献   

2.
本文以肝素效价为指标,探索了固定化胰蛋白酶对小肠黏膜的酶解作用。在单因素试验基础上采用Box-Behnken中心组合试验设计和响应面(RSM)分析法,以肝素效价为响应值,通过考察p H值、加酶量、酶解温度及料液比,优化了固定化胰蛋白酶酶解制备肝素的工艺,建立了二次回归方程。结果表明,p H值、酶解温度、加酶量、及料液比均对肝素提取具有显著影响。固定化酶制备肝素最佳工艺条件为:p H为11,加酶质量分数为0.24%,酶解温度为46℃,料液比为1∶3.3(g/m L),酶解时间为5 h,在此条件下获得肝素酶解液效价为15.28 U。  相似文献   

3.
利用驯化获得的拟康宁木霉菌(Trichoderma koningii)处理甲基橙废水,以脱色率为指标探讨了反应时间、初始甲基橙浓度、pH、葡萄糖用量、不同培养时间等培养因素对拟康宁木霉生长前期降解甲基橙废水效果的影响;在较优条件下以脱色率为指标,探讨了酶在pH、温度、酶液投加量、初始甲基橙浓度、反应时间等条件下的酶促降解反应;并通过正交试验验证其脱色降解甲基橙染料的最佳反应条件,为染料废水的处理提供试验基础。试验表明,培养过程中拟康宁木霉菌降解甲基橙废水的最适条件为初始甲基橙浓度30 mg/L,培养时间72 h,葡萄糖浓度25 g/L,pH 6.5。在较优培养条件下提取的酶,在酶液投加量为0.6 mL,温度为25℃,pH为7.0,处理时间为6 h的处理条件下,其降解率可达85.48%,脱色效果较明显。本研究为拟康宁木霉对甲基橙染料废水的酶促降解条件提供了参考。  相似文献   

4.
目的:以活性炭为载体固定化粪产碱杆菌来源的青霉素G酰化酶,考察固定化酶的性质。方法:对影响酶固定化的因素优化筛选,确定有显著影响的因素:pH、离子强度、酶量、固定化时间进行L934的正交实验,获得最佳固定化条件,并对固定化酶的最适反应温度、pH及批次稳定性进行研究。结果:最佳固定化条件为:载体0.3g,酶量5mL,总反应体系为12mL,离子强度1mol/L,温度4℃,pH 7.0,固定化40h;最高固定化酶活性为135.9U/g湿载体。固定化酶性最适反应温度为55℃,最适pH为10,重复使用12次后没有活性损失。结论:活性炭吸附固定化青霉素G酰化酶的活性高,批次反应稳定,具有工业应用潜力。  相似文献   

5.
响应面法优化红景天总黄酮提取工艺的研究   总被引:4,自引:1,他引:3  
研究了红景天中总黄酮提取率的影响因素,先经单因素实验初步确定影响因素,再用Box-Behnken响应面法建立影响因素的二次回归模型,通过对二次回归模型求解编码转换得知,液料比40:1(ml/g),酶添加量1.2%,酶解时间4.5 h,酶解温度45℃,pH5,超声时间为12 min,超声功率为250w中的高档,超声次数为3次,在这最优条件下总黄酮提取率为3.99%。  相似文献   

6.
主要研究以海参体壁为原料制备胶原蛋白肽的工艺条件,通过单因素和正交试验对酶解条件进行优化。结果表明,使用木瓜蛋白酶的酶解效果最好,最佳酶解条件为:酶解温度55℃、p H值7.0、加酶量2%、料液比1:30和提取时间3 h,此条件下海参胶原蛋白肽水解度达到14.23%。  相似文献   

7.
研究了利用超声波辅助复合酶法提取杏鲍菇黄酮的最优条件。在单因素试验的基础上,固定其他影响因素,选择料液比、超声时间、酶解温度和酶解pH进行四因素三水平的正交试验。结果表明:料液比为1∶50 (g/mL)、超声时间为6 min、酶解温度为50℃、酶解pH为54的条件下,获得的黄酮提取率最高,可达3352%。  相似文献   

8.
对一株霉菌B45固态发酵产木聚糖酶的培养基组分进行优化,通过单因素实验观察了不同碳源、氮源、无机盐、水料比4种因素对产木聚糖酶的影响,确定了4种最佳的单因素成分。在单因素的基础上,再通过正交实验确定了所试因素的最佳组合,并对其粗酶的酶学性质进行了研究。结果表明,在培养基组分为玉米芯与麸皮的比例=7∶3,硫酸铵为1.5%,KH2PO4为0.8%,水料比为2.1∶1时,得到的酶活力最高,产酶量可达1 079.93 U/g。其粗酶液的最适反应温度为60℃,最适反应pH为5,在pH5~pH6的范围内酶活性较稳定。但粗酶液的热稳定较差,在40℃条件下酶活力开始下降,当温度升至70℃时酶活力损失85%以上。  相似文献   

9.
魔芋飞粉总生物碱的提取工艺研究   总被引:1,自引:0,他引:1  
目的:研究魔芋飞粉总生物碱提取的最佳条件。方法:以盐酸小檗碱为对照,采用酸性染料比色法测定总生物碱含量;通过单因素试验,考察乙醇浓度、料液比、pH、温度、时间、提取次数等对总生物碱提取效果的影响;通过正交实验确定最佳工艺条件。结果:影响魔芋飞粉总生物碱提取效果的因素的主次顺序是:pH>乙醇浓度>料液比>提取温度,其中pH对魔芋飞粉总生物碱提取效果影响显著(P<0.05)。魔芋飞粉总生物碱最佳提取工艺条件为:料液比为1:15,温度为50℃,乙醇浓度为70%,pH值为1。在此工艺条件下,总生物碱提取量可达到89.79mg/100g。结论:本文建立的优化方法简单可行,可为魔芋飞粉的总生物碱提取工业提供理论依据。  相似文献   

10.
氯苯降解菌的筛选及降解条件研究   总被引:1,自引:0,他引:1  
从活性污泥中筛选到一株具有降解氯苯功能的菌株JH02,依据菌落特征形态和生理生化反应鉴定该菌株属于链球菌属(Streptococcus)。分别考察培养温度、培养时间、氯苯浓度、pH值、菌悬液接种量及摇床转速等因素对菌株降解性能的影响。确定菌株StreptococcusJH02的对氯苯的最适降解条件为:培养温度为37℃,培养时间24 h,菌悬液接种量体积分数为4%,pH8.0,摇床转速140 r.min-1,此条件下氯苯的降解率可达94.7%。  相似文献   

11.
Enzymatic hydrolysis of cellulose is potentially an attractive method for converting cellulose into glucose which can then be used as a chemical feed or as a growth substrate for a number of microorganisms to produce microbial products. An enzymatic hydrolysis of wheat straw with cellulase preparation “Trichocease” was made. The wheat straw used was pretreated mechanically and with NaOH. A procedure of pretreatment was investigated in 26 variants. The dynamics of enzymatic hydrolysis was studied. An assay of this dynamics based on the amount of reducing sugars formed during the cellulase reaction and depending upon enzyme and substrate concentration and time of action was carried out.  相似文献   

12.
Autohydrolyzed and ethanol-alkali pulped wheat straw was examined as a candidate feedstock for both cellulase and xylanase production and enzymatic hydrolysis. Submerged cultures of Trichoderma reesei F-522 grown on hydrothermally modified straw provided culture supernatants of the highest enzymatic activities, whereas the maximal efficiency of enzymatic hydrolysis was recorded in straw treated with ethanol-NaOH mixture. Some culture conditions were optimized to improve the growth and cellulase production by T. reesei on autohydrolyzed wheat straw.  相似文献   

13.
混合菌群发酵秸秆可有效提高秸秆纤维的降解率及菌体蛋白的转化率,对拓广蛋白饲料来源、减少环境污染起到积极的作用。本研究以小麦秸秆为原料,在纤维素酶水解预处理的基础上,以米曲霉作为先导菌,进一步分解残留的粗纤维,为后期发酵提供充足的碳源。根据不同微生物的代谢特征和协同机理,试验确定了发酵阶段混合菌群的组成为:米曲霉、产朊假丝酵母和枯草芽胞杆菌;接种顺序为:先接种米曲霉,再接种产朊假丝酵母,最后接种枯草芽胞杆菌。正交试验表明,影响发酵主要因素的主次顺序为:秸秆与麸皮配比>接种比例>发酵时间>接种量>发酵温度;发酵的最适条件为:米曲霉的接种量2.5%,发酵12h后接入5%的产朊假丝酵母,继续发酵8h后接入2.5%的枯草芽胞杆菌,发酵温度为28℃,秸秆与麸皮的配比为4∶1,尿素添加量为1.2%;结合动力学分析,将混合菌群的发酵时间优化为35h,发酵产物中粗蛋白含量由原来的5.47%提高到25%左右。对最适发酵条件下的动力学过程进行了探讨,建立了以Logistic方程为基础的数学模型和动力学方程。本研究表明,混合菌群发酵秸秆提高了发酵产物中的粗蛋白含量。动力学分析对于了解发酵机理、掌握整个发酵过程中混合菌群生长的动态变化、优化发酵工艺具有重要的指导意义。  相似文献   

14.
目的:研究月腺大戟根中总黄酮类化合物的提取工艺,为研发新型植物源农药提供理论基础。方法:采用索氏提取法对月腺大戟根总黄酮进行提取,以乙醇体积分数、提取时间、提取温度、料液比为实验因素,以提取的总黄酮含量为指标,对提取工艺进行考察,确定最佳提取条件。结果和结论:根总黄酮提取的优化条件为:提取时间2h,提取温度70℃,料液比1:40,乙醇浓度50%;影响提取的主次顺序为:料液比〉提取时间〉乙醇浓度〉提取温度;其中料液比和提取时间是影响根总黄酮提取效果的显著因素。  相似文献   

15.
Autohydrolysis and ethanol-alkali pulping were used as pretreatment methods of wheat straw for its subsequent saccharification by Trichoderma reesei cellulase. The basic hydrolysis parameters, i.e., reaction time, pH, temperature, and enzyme and substrate concentration, were optimized to maximize sugar yields from ethanol-alkali modified straw. Thus, a 93% conversion of 2.5% straw material to sugar syrup containing 73% glucose was reached in 48 h using 40 filter paper units/g hydrolyzed substrate. The pretreated wheat straw was then fermented to ethanol at 43 degrees C in the simultaneous saccharification and fermentation (SSF) process using T. reesei cellulase and Kluyveromyces fragilis cells. From 10% (w/v) of chemically treated straw (dry matter), 2.4% (w/v) ethanol was obtained after 48 h. When the T. reesei cellulase system was supplemented with beta-glucosidase from Aspergillus niger, the ethanol yield in the SSF process increased to 3% (w/v) and the reaction time was shortened to 24 h.  相似文献   

16.
【目的】鉴定从新疆棉花秸秆高温堆肥中分离出的两株耐热真菌Z1、Z2的属种,并通过优化影响菌株产生纤维素酶的因素来提高菌株对秸秆的降解率。【方法】经形态学和菌株的ITS区克隆与序列分析确定属种,以液体摇瓶发酵产滤纸酶活性(FPA)变化为衡量指标,对Z1、Z2以及二者混合菌(MS)的纤维素酶产生条件进行优化。【结果】菌株Z1为曲霉属烟曲霉(Aspergillus fumigatus Fresen),Z2为蚀丝霉属(Myceliophthora Cost.)。确定Z1以棉秸秆为碳源、以NaNO3为氮源、起始pH 9.5、接种量11%、50°C摇床培养10 d,对棉秸秆降解率为10.19%;Z2以麦秸秆为碳源、以NaNO3为氮源、起始pH 5.5、接种量9%、50°C摇床培养10 d,对麦秆降解率为27.50%;MS以棉花秸秆为碳源、以蛋白胨为氮源、起始pH 5.5、接种量11%、50°C摇床培养10 d,对棉秸秆的降解率为53.45%。【结论】实验表明,MS(Z1、Z2混合)对秸秆的降解效果优于单株菌,降解率达到一半以上,本研究中的两株耐热真菌在降解棉花秸秆、小麦秸秆等农作物废弃秸秆中具有较高的应用价值。  相似文献   

17.
采用单因素试验观察了不同C、N源、植物提取残渣与麦麸比例、初始pH和水料比对青霉F10-2菌株产纤维素酶的影响;在此基础上根据Box-w ilson的中心组合试验设计原理,选取蛋白胨、初始pH和水料比等影响因素,采用三因素五水平的响应面分析方法,对瓦克青霉F10-2的固态产纤维素酶条件进行了优化。其优化后的产酶条件为m(川楝树皮残渣)∶m(麦麸)∶m(蛋白胨)∶m(KH2PO4)=80∶20∶1.4∶0.4、初始pH 6.2、水料比2∶1、26℃发酵8 d,在此条件下纤维素酶比酶活可达6.47 U/g,较原始培养条件提高了46.38%。  相似文献   

18.
Bioethanol production from ammonia percolated wheat straw   总被引:2,自引:0,他引:2  
This study examined the effectiveness of ammonia percolation pretreatment of wheat straw for ethanol production. Ground wheat straw at a 10% (w/v) loading was pretreated with a 15% (v/v) ammonia solution. The experiments were performed at treatment temperature of 50∼170°C and residence time of 10∼150 min. The solids treated with the ammonia solution showed high lignin degradation and sugar availability. The pretreated wheat straw was hydrolyzed by a cellulase complex (NS50013) and β-glucosidase (NS50010) at 45°C. After saccharification, Saccharomyces cerevisiae was added for fermentation. The incubator was rotated at 120 rpm at 35°C. As a result of the pretreatment, the delignification efficiency was > 70% (170°C, 30 min) and temperature was found to be a significant factor in the removal of lignin than the reaction time. In addition, the saccharification results showed an enzymatic digestibility of > 90% when 40 FPU/g cellulose was used. The ethanol concentration reached 24.15 g/L in 24 h. This paper reports a total process for bioethanol production from agricultural biomass and an efficient pretreatment of lignocellulosic material.  相似文献   

19.
Cellulase from Trichoderma reesei (Celluclast 1.5 L, Novozyme) was immobilized by sol–gel encapsulation, using binary or ternary mixtures of tetramethoxysilane (TMOS) with alkyl- or aryl-substituted trimethoxysilanes as precursors. Optimization of immobilization conditions resulted in 92 % recovery of total enzymatic activity in the best immobilized preparate. The immobilized cellulase exhibiting the highest activity, obtained from tetramethoxysilane and methyltrimethoxysilane precursors at 3:1 molar ratio, was investigated in the hydrolysis reaction of microcrystalline cellulose (Avicel PH101). Although the optimal values did not change significantly, both temperature and pH stabilities of the sol–gel entrapped cellulase improved compared to the native enzyme. Immobilization also conferred superior resistance against the inactivation effect of glucose. Reuse of the sol–gel entrapped cellulase showed 40 % retention of the initial activity after five batch hydrolysis cycles, demonstrating the potential of this biocatalyst for large-scale application.  相似文献   

20.
蒸汽爆破玉米秸秆酶解动力学   总被引:2,自引:0,他引:2  
为了掌握蒸汽爆破玉米秸秆的酶解特性,研究了不同底物浓度、酶浓度、温度对反应速率的影响。运用米氏方程对酶解动力学过程进行拟合,结果表明,纤维素酶对该玉米秸秆的水解反应在反应前3 h符合一级反应,可用米氏方程对其进行拟合。在转速为120 r/min、酶浓度为1.2 FPU/mL、pH 5.0、温度为45 ℃时米氏常数Km为11.71 g/L,最大反应速率Vm为1.5 g/(L·h)。确立了包括底物浓度、酶浓度、温度在内的酶解动力学模型,该模型适合温度为30 ℃~50 ℃。  相似文献   

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