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glucose相关的网络例句

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与 glucose 相关的网络例句 [注:此内容来源于网络,仅供参考]

Even in healthy people, glucose levels in the blood always rise after a meal, but they soon return to normal as the glucose is used up or stored.

即使在健康人,血糖水平在血液中始终崛起后一餐,但他们尽快恢复正常,因为葡萄糖是用罄或储存。

You抣l need to carry snacks or glucose tablets with you at all times to bring low blood glucose back up.

你需要随身携带小点心或者葡萄糖片以在发生低血糖的时候可以马上采取措施。

In order to research the relations of carbon sources to structure of PHAs, six kinds of PHAs sample were synthesized by activated sludge with six different carbon sources respectively in the aerobic-anaerobic-anoxic process. Their structures were determined by 〓HNMR、〓CNMR and GC-MS. When the carbon source was acetate, the unit composition of PHAs was 93. 91mol% 3-hydroxybutanoic acid and 6. 09mol% 3-hydroxypentanoic acid ; When the carbon source was propionate, the unit composition of PHAs was 28. 66mol% HB, 63. 13mol%HV, 2. 55mol% 2-methy-3-hydroxy-butanoic acid (2MHB) and 5. 66mol% 2-methyl-3-hydroxypentanoic acid (2MHV); When the carbon source was 80% butyrate and 20% 1, 4-butanediol, the unit composition of PHAs was 65. 03mol% HB, 28. 06mol%HV, 1. 91mol%2MHB, 2. 69mol% 2MHV, 0.73mol% 4-hydroxy butanoic acid (4HB), 0.78mol% 4-methyl-3-hydroxy-pentanoic acid (4MHV), 0.80mol% 3-hydroxyhexanoic acid ; When the carbon source was 20% butyrate and 80% 1, 4-butanediol, the unit composition of PHAs was 61. 39mol% HB, 23. 01mol%HV, 4. 58mol%2MHB, 5. 97mol% 2MHV, 0.91mol% 4HB, 2. 37mol% 4MHV, 1. 77mol% HHx; When the carbon source was 60% pentanoate and 40%glucose, the unit composition of PHAs was 41. 24mol% HB, 58. 76mol%HV; When the carbon source was 60% benzoate and 40% glucose, the unit composition of PHAs was 65. 48mol% HB and 34. 52mol% HV.

为了研究不同碳源与产物PHAs结构的关系,采用好氧-厌氧-缺氧模式利用6种不同碳源培养活性污泥得到6种不同的PHAs样品,通过〓HNMR、〓CNMR和GC-MS谱图确定了这6种PHAs的单体成分和比例:以乙酸钠培养活性污泥得到的PHAs的单体组成是93.91mol%3-羟基丁酸和6.09mol%3-羟基戊酸;以丙酸钠培养活性污泥得到的PHAs的单体组成除28.66mol%HB、63.13mol%HV外,另外还有2.55mol%3-羟基2-甲基丁酸(2MHB)和5.66mol%3-羟基2-甲基戊酸(2MHV);以80%丁酸钠和20%1,4-丁二醇混合溶液培养活性污泥得到的PHAs含有七种单体组成:65.03mol%HB,28.06mol%HV,1.91mol%2MHB,2.69mol%2MHV,0.73mol%4-HB(4-羟基丁酸),0.78mol%4MHV(3-羟基-4-甲基戊酸),0.80%HHx(3-羟基己酸);以20%丁酸钠和80%1,4-丁二醇培养活性污泥所得到的PHAs含有与3#样品相同的七种单体,只是比例不同,分别是61.39mol%,23.01mol%,4.58mol%,5.97mol%,0.91mol%,2.37mol%,1.77mol%;以60%戊酸钠和40%葡萄糖培养活性污泥所得到的PHAs由HB和HV组成,比例是41.24 mol%∶58.76 mol%;以60%苯甲酸钠和40%葡萄糖培养活性污泥所得到的PHAs也由HB和HV组成,比例是65.48 mol%∶34.52 mol%。

Part two reports that a glucose oxidase electrode is made of a platinum electrode modified by glucose oxidase in polyvinyl butyral membrane and tris(2,2-bipyridyl)cobalt perchlorate as an electron mediator in the solution.

其次,研究了以聚乙烯醇缩丁醛为固定GOD的载体,将GOD附在铂丝电极上并采用高氯酸三-2,2'-联吡啶合钴[Co_3(ClO_4)_3]作为电子媒介体制得电流型葡萄糖酶电极。

Chapter 4 comprises two part. Part reports on the manufacture and characterization of glucose oxidase -silver sol-polyvinyl butyral modified platinum electrodes with naphthol green B as an electron transfer mediator in the glucose solution.

将纳米Ag溶胶与聚乙烯醇缩丁醛构成复合固酶膜基质,采用溶胶-凝胶法固定GOD修饰铂丝电极,并以葡萄糖溶液中的萘酚绿B为电子媒介体组成葡萄糖生物传感器。

Part two describes the manufacture and characterization of glucose oxidase -silver sol-polyvinyl butyral modified platinum electrodes with tris(2,2-bipyridyl)cobalt perchlorate as an electron transfer mediator in the glucose solution.

用纳米Ag溶胶固定GOD,采用聚乙烯醇缩丁醛为辅助固酶膜基质修饰铂丝电极,并以葡萄糖溶液中的CO恤pyh(CIO4)3为电子媒介体组成葡萄糖氧化酶生物传感器。

Aqua, Kaolin, Illite, Glycerin, Clyceryl stearate SE, Bentonite, Theobroma cacao seed butter, Ceteareth-20, Butyrospermum parkii, Theobroma cacao shell powder, Sea salt, Aroma, Glucose, Lactoperoxidase, Citric acid, Glucose oxidase, Cl 77491, Cl 77492, Cl77499 Iron oxides

水 ,高岭土,伊利石,甘油,硬脂酸Clyceryl东南,膨润土,可可可可种子黄油, Ceteareth - 20 , Butyrospermum parkii ,可可可可壳粉,海盐,香气,糖,乳过氧化物酶,柠檬酸,葡萄糖氧化酶,氯77491 ,氯77492 , Cl77499

Cholesterol–cholesterol oxidase and glucose-glucose oxidase reactions were both coupled with different H2O2 production reactions to demonstrate the ability of biological luminescence and chromogen quantification and potential for diverse clinical diagnosis.

胆固醇–胆固醇氧化酵素和葡萄糖-葡萄糖氧化酵素氧化反应皆各自与不同过氧化氢光学反应结合,证明其具备冷光物质及发色物质定量能力,极具应用於不同临床分析的潜力。

The most suitable range of temperature is 25~30℃ and lethal temperature is 56℃ for hypha growth, the most suitable temperature is 25℃ for produce more conidiospore and lethal temperature is 56℃ for conidiospore. Within the pH range of 3~11 the hypha could grow and produce conidiospore. The optimum pH is 5~7 for hypha growth and 3, 9, 10 for produce more conidiospore. The range of glucose concentration is 2%~8% for hypha growth, the most suitable glucose concentration is 2% for hypha growth and produce more conidiospore. The effect of illumination on Bipolaris cynodontis was significance to the growth hypha and spore numbers. The whole light is advantage of hypha growth, but could not produce conidiospore. Alternation of light and darkness for 12 hours is advantage of hypha growth, as well as produce conidiospore.

菌丝最佳生长温度是25~30℃之间,在25℃时最利于产孢,菌丝生长和分生孢子的致死温度是56℃;该菌在pH 3~11范围内均能生长,产生分生孢子,菌丝生长的最适pH 5~7,产孢量最大的pH是3,9,10;糖浓度在2%~8%菌丝能生长,在糖浓度为2%时菌丝生长最好,产孢量最高;光照对病原菌的菌丝生长和产孢有明显影响,在全光照的条件下有利于菌丝的生长,但不会产孢,黑暗12h光照12h既利于菌丝生长又利于产孢,而全黑暗的条件下不利于菌丝生长和产孢。

The lactate diffuses into the bloodstream ang is carried to the liver .her it is converted to glucose by gluconeogenesis .the glucose is released into the bloodstream and become available for uptake by muscle (as well as other tissues, including brain ).this cycle of reaction is called the Cori cycle.

乳酸扩散到血流中并被携带到肝脏。在这里它被糖异生作用转化为葡萄糖。葡萄糖被释放到血流中即能被肌肉(以及其他组织,包括脑)吸收。这一循环反应称为 Cori 循环。

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