酶催降解 的英文怎麼說

中文拼音 [cuījiàngjiě]
酶催降解 英文
enzymatic degradation
  • : 名詞[生物化學] (生物體的細胞產生的有機膠狀物質) enzyme; ferment
  • : 降動詞1. (投降) surrender; capitulate 2. (降伏) subdue; vanquish; tame
  • : 解動詞(解送) send under guard
  1. Degradation of chlorophenols catalyzed by laccase

    氯酚類有機污染物
  2. Studies on enzymatic glycerolysis of palm oil by lowering temperature proceedingly in solid state

    程序溫法固相化棕櫚油甘油的研究
  3. The effort of manganese removal was studied and the kinetics of manganese removal was tried to establish. the factors of dissolved oxygen concentration, fe2 + concentration, ph, p concentration and closing of the filter were studied to evaluate their effort for biological manganese removal, and the correlation of residual manganese and oxidation - reduction potential was also discussed. as the iron content of water was high, experiment results showed that the reaction was zero order, as the iron content of water was low, the reaction was first order. the time needed for the cultivation of biological manganese removal was 60 70 days. the filter operated at the filtration rate of 8 10m / h, silica sand of effective size 0. 95 1. 25mm filled the filter to a depth of 1200mm

    試驗結果表明,成熟后濾砂表面濾膜的x射線衍射圖譜與mno _ x ? 5h _ 2o ( x = 1 . 86 )的x射線衍射圖譜一樣,濾膜成熟后的結構在進水物質不發生變化的情況下不發生變化;合適的碳磷比對生物除錳有明顯的促進作用,試驗條件下的投磷量不會對出水造成二次污染;生物除錳需要亞鐵的參與,亞鐵的存在除了能夠促進微生物分泌胞外並刺激其活性外,還通過鐵離子的變價傳遞電子,化錳離子的氧化反應,從而促進對二價錳的
  4. This paper presents the mechanism research on the decontamination of air pollution by plants in recent years, mainly including the following : absorption and sorption of stoma and cuticle on leaf surface, plant metabolism and enzyme redox, and degradation by plant in combination with bacteria in root

    摘要介紹了植物去除空氣污染物的研究現狀及機理,主要包括:通過葉表面的氣孔和表皮吸收、吸附;植物體內代謝或者分泌化氧化還原進人體內的污染物;通過植物聯合根系微生物由於干濕沉進人土壤或者水體中的污染物等。
  5. Chlorophenol ; laccase ; catalytical degradation ; immobilized enzyme

    氯酚漆固定化
  6. Degradation of chlorophenols catalyzed by laccase degradation of chlorophenols catalyzed by laccase

    氯酚類有機污染物
  7. 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

    採用漆化劑,研究2 , 4二氯酚4氯酚和2氯酚的機理,探討了反應時間ph值反應溫度氯酚濃度以及漆濃度對其效果的影響和最適條件。
  8. A single molecule of rta is able to depurinate 1500 - 2000 ribosomes per minute. ricin b chain ( rtb ) is a galactose - specific lectin which binds to the receptors on cell surfaces, and may enhance rta translocation by forming a pore in the membrane of intracellular organelles. ricin enters the cells by receptor - mediated endocytosis

    內吞進入細胞的蓖麻毒素一部分返回到膜表面,一部分經早期內體至晚期內體,最後在溶體中,只有一小部分約5到達高爾基體,隨后逆轉運到粗面內質網,在那裡rta才和rtb離,游離出有化活性的rta 。
  9. The results showed that its yield was inversely proportional to the concentration of - amylase and reaction time when the maize starch was hydrolyzed by - amylase ; the granular maize starch was converted into hollow - porous starch by ct - amylase, furthermore it was cracked to the fragments, it was discovered that there were laminated growth ring structure inside starch granular shown on such cracked granular fragments ; the crystallinity of maize starch granule can not he increased by the enzyme hydrolysis ; the thermodynamic stability of the product was reduced when the hydrolysis time was long

    檢測結果表明, -澱粉化水玉米澱粉時,其收率與的濃度和反應時間成反比;顆粒狀玉米澱粉發生化水時, -澱粉首先使澱粉形成多孔狀結構,並進一步使顆粒破裂,斷裂的顆粒碎片上顯示出澱粉顆粒內部具有層狀的生長環結構;化水不能提高玉米澱粉顆粒的結晶度;時間較長時,產品的熱穩定性低。
  10. Phytases catalyze the hydrolysis of phytic acid or phytate ( myo - inositol hexakisphosphate ) to inositol and inorganic phosphate. their roles in eliminating anti - nutritional effects of phytate in plant fodder or foods, in increasing the efficiencies of protein and various microelement utilizations in the animal body and the animal productivities, in reducing the amount of phosphorus in animal excretions and thus reducing environmental pollutions, etc, have been the research focuses domestically and internationally

    植酸是一類能化植酸及植酸鹽水成肌醇和無機磷酸鹽的,它具有除植物性飼料(或食品)中植酸的抗營養作用、提高機體對蛋白質及多種微量元素的利用率、促進生長發育、提高動物生產性能、減少糞便中磷的排放量、低磷對環境的污染等多種功能,因而受到國內外的廣泛關注。
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