laccase 中文意思是什麼

laccase 解釋
蟲漆酶
  1. Degradation of chlorophenols catalyzed by laccase

    漆酶催化降解氯酚類有機污染物
  2. The peak times of amylase, cmc enzyme, cellulose, laccase, guaiacol oxidase and polyphenol oxidase were the 10th day, the 12th day, the 12th day, the 14th day, the 16th day and the 16th day respectively. it indicated that phellinus igniarius has the capability of discomposing amylum, cellulose and lignose

    澱粉酶、 cmc酶、纖維素酶、漆酶、愈創木酚氧化酶、多酚氧化酶的活性高峰分別出現在第10d 、第12d 、第12d 、第14d 、第16d 、第16d ,說明桑黃對澱粉類物質、纖維素類、木質素類物質均具有降解能力。
  3. 2. by morphological and molecular methods the strain b3 was identified as diaporthe and could exist under acidic condition, whose laccase had good thermostability

    通過形態學觀察及測定其rdnaits序列對菌株b3進行鑒定,該菌株屬于子囊菌亞門的腐皮殼屬( diaporthe ) 。
  4. Effect of laccase treatment conditions of lignosulphonate on shearing strength of plywood

    漆酶活化木素磺酸鹽條件對膠合板強度的影響
  5. Lignin degradation mechanisms of ligninolytic enzyme system, manganese peroxidase, laccase and lignin peroxidase, produced by wood white rot fungi

    漆酶和木質素過氧化物酶催化分解木質素的機制
  6. Chlorophenol ; laccase ; catalytical degradation ; immobilized enzyme

    氯酚漆酶催化降解酶固定化
  7. The reaction of degradation 2, 4 - dcp catalyzed by laccase followed the first - order reaction and the reaction activation energy is about 44. 8 kjmol

    漆酶降解2 , 4二氯酚的反應屬於一級反應,反應活化能約為44 . 8 kjmol
  8. Cloning and sequence analysis of a laccase gene from mutated strain sah - 12 of trametes gallica

    12漆酶基因的克隆與序列分析
  9. Study on the optimum culture conditions of production laccase by immobilized white rot fungi

    固定化白腐菌產漆酶培養條件的研究
  10. Degradation of chlorophenols catalyzed by laccase degradation of chlorophenols catalyzed by laccase

    漆酶催化降解氯酚類有機污染物
  11. Laccase being catalyzer, the degradation mechanism of 2, 4 - dichlorophenol, 4 - chlorophenol and 2 - chlorophenol is studied. the effects of reaction time, ph, temperature, concentration of chlorophenols and laccase on the removal of chlorophenols are discussed in detail, as well as the optimum reaction condition

    採用漆酶為催化劑,研究2 , 4二氯酚4氯酚和2氯酚的催化降解機理,探討了反應時間ph值反應溫度氯酚濃度以及漆酶濃度對其降解效果的影響和最適降解條件。
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