羧化 的英文怎麼說

中文拼音 [suōhuà]
羧化 英文
carboxylation
  • : 名詞[化學] (羧基) carboxyl
  1. Using refined cotton, chloroacetic acid, sodium hydroxide and hydrogen peroxide as main feedstock, sodium carboxymethyl cellulose was made by the process of basification, etherification, abstersion and drying

    摘要以精製棉、氯乙酸、氫氧鈉和過氧氫為原料,經過堿、醚、洗滌、乾燥,制得甲基纖維素鈉。
  2. The scheme initially involves acylation of thiophene using a carboxylic acid to afford the acyl thiophene.

    這條路線是先用酸使噻吩已酰制得酸基噻吩。
  3. A review on application of monohydrated sodium bisulfate as catalyst in synthesis of ester, such as monocarboxylic esters, dicarboxylic esters, chloroacetates, hydroxycarboxylic esters, aromatic esters and the reusability of sodium bisulfate with

    摘要介紹了一水硫酸氫鈉在催合成酯(如一元酸酯、二元酸酯、氯乙酸酯、羥基酸脂、芳香酸酯)中的應用及其重復催性能。
  4. An increase in hydrogen ions within cell walls would decrease ionization of carboxyl groupings of the cellulosic fraction.

    細胞壁內部氫離子濃度的增高,能夠降低部分纖維質基的離子作用。
  5. Modified starch. determination of carboxyl group content of oxidized starch

    改性澱粉.氧澱粉基含量的測定
  6. Carboxylase an enzyme that catalyzes the incorporation of carbon dioxide into a substrate molecule

    羧化酶:一類催二氧碳合成底物分子的酶。
  7. The most important carboxylase in plants is ribulose bishosphate carboxylase ( rubisco ), which catalyzes the carboxyation of ribulose bisphosphate, the ‘ carbon - fixing ’ first step in the calvin cycle

    在植物中最重要的羧化酶是核酮糖二磷酸羧化酶,它可以羧化核酮糖二磷酸,在卡爾文循環中是二氧碳固定的第一步。
  8. In these chloroplasts carbon dioxide combines with phosphoenolpyruvate to form oxaloacetic acid, which is transported to the bundle sheath cells, where the carbon dioxide is released, then fixed by the enzyme ribulose bisphosphate carboxylase to form glycerate 3 - phosphate, the first step in the calvin cycle

    在葉肉細胞的葉綠體中二氧碳與磷酸烯醇丙酮酸結合形成草酰乙酸,后被運到鄰近的維管束鞘細胞,在那裡二氧碳被釋放,后被核酮糖二磷酸羧化酶固定形成3磷酸甘油酸,這是卡爾文的循環第一步。
  9. Based on recent molecular phylogenetic analyses using nucleotide sequences of the encoding the large subunit of ribulose 1, 5 - bisphyosphate carboxylase / oxygenase ( rbcl ), hypodematium should be not included in the athyriaceae, it has closely related to dryopteridaceae. on the other hand, athyriaceae, thelypteridaceae, blechnaceae, onocleaceae and woodisaceae form a large clade, so it may explain that tryon & tryon ( 1982 ) and kramer & kato ( 1990 ) putting it forward as dryopteriaceae s. 1

    運用cpdna基因組編碼的磷酸核酮糖羧化酶大亞基( rbcl )的基因序列測定而構建的系統樹,顯示蹄蓋蕨科、金星蕨科、烏毛蕨科以及其他科構成一條與鱗毛蕨科平行的分支,因此可以說明kramer & kato ( 1990 )把蹄蓋蕨科放入廣義的鱗毛蕨科是不合理的。
  10. Catalytic synthesis of n - propyl carboxylate using ammonium ferric sulfate

    硫酸鐵銨催合成酸正丙酯
  11. Catalytic synthesis of cyclohexyl carboxylate with ammonium ferric sulfate

    硫酸鐵銨催合成酸環己酯
  12. The catalytic synthesis of n - propyl carboxylate with ammonium ferric sulfate

    硫酸鐵銨催合成酸正丙酯
  13. Carboxylated polystyrene resin

    羧化聚苯乙烯樹脂
  14. Preparation of carboxylated magnetic nanoparticles by orthogonal experimental design

    正交實驗法優基納米磁性粒子的合成條件
  15. Preparation of cobalt pyridine - 2 - carboxylate and its catalytic activity on oxidative carbonylation of methanol to dimethyl carbonate

    酸鈷的制備及催性能研究
  16. Hydrolysis of carboxylic acid esters catalyzed by cationic gemini surfactant micelle

    雙子陽離子表面活性劑膠束催酸酯水解
  17. This decarboxylation is catalysed by the enzyme glutamic acid decarboxylase.

    這個脫作用是由谷氨酸脫酶催的。
  18. Pyruvate carboxylation, transamination, and gluconeogenesis

    丙酮酸羧化轉氨和糖異生
  19. Glycerate 3 - phosphate is the first product of the dark reactions of photosynthesis, formed by the carboxylation and cleavage of ribulose bisphosphate

    甘油3 ?磷酸是光合作用暗反應的一種產物,在二磷酸核酮糖的羧化分解后形成。
  20. Terrestrial plants are classified into three major photosynthetic types, namely, c3, c4 and crassulacean acid metabolism ( cam ) plants, according to the mechanism of their photosynthetic carbon assimilation. c4 plants have co2 concentrating mechanism and higher photosynthetic efficiency than c3 plants, especially under high light intensity, high temperature, high oxygen partial pressure and drought conditions

    本研究利用c _ 3植物、 c _ 4植物、旱稻與稗草等的雜交後代的材料,進行光合速率的測定,進一步分析植株在光能吸收傳遞、氣孔調節、羧化反應等生理特性,研究高光效的生理機制。
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