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   synthesis 在 轻工业手工业 分类中 的翻译结果: 查询用时:0.175秒
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synthesis
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  合成
    The Study on Chemical Modification of Lanolin for Environmental Friendly Fatliqour Synthesis and Its Property
    羊毛脂化学改性与环境友好加脂剂的合成及其性能研究
短句来源
    Study on Synthesis of New Phenylfluorone Reagents and Their Application in Food Analysis
    新苯基荧光酮试剂合成及在食品分析中的应用
短句来源
    Research on Synthesis of β-Carotene and Canthaxanthin
    β-胡萝卜素及角黄素合成研究
短句来源
    Study on the Synthesis and Dyeing and Finishing Behaviours of Ionic Sulphur Dyes
    离子型硫化染料的合成及其染整行为研究
短句来源
    Study on Synthesis and Antimicrobial Activity of Furfuryl Fumarates
    丁烯二酸糠醇酯的合成及其抗菌活性研究
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  制备
    Study on the Graft Copolymerization of Lignosulfonate and the Synthesis, Flocculation Property of Lignin-base Amphoteric Flocculant LSDC
    木质素磺酸盐的接枝共聚反应及两性木质素基絮凝剂LSDC的制备与性能研究
短句来源
    Synthesis and Applications of Y-TiOPc
    Y-TiOPc的合成制备及应用
短句来源
    This experiment were designed by orthogonal test. The range analysis and synthesis score method were applied to the assessment of results. The optimum technological condition were:percentage of ethanol 50%,pH value 10,the ratio of glycerin and wheat gluten 3/10,heating temperature 80℃.
    研究了制备小麦谷朊粉可食性膜的条件,分析了各种条件对其综合性能的影响,对正交实验结果采用极差分析和综合评分法进行评定,得到制备可食性膜综合性能好的最佳成膜条件为:乙醇体积份数为50%,成膜溶液的pH为10,甘油体积与谷朊粉比值为3/10,热处理温度为80℃。
短句来源
    The Study of the Synthesis and the Properties of Phosphated Lanolin Fatliquor
    磷酸化羊毛脂加脂剂制备及性能的研究
短句来源
    Study on the Synthesis and Application of Triethanolamine Fatty Acid Ester Quaternary Ammonium Salt
    三乙醇胺脂肪酸酯铵盐及季铵盐的制备和应用研究
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  合成
    The Study on Chemical Modification of Lanolin for Environmental Friendly Fatliqour Synthesis and Its Property
    羊毛脂化学改性与环境友好加脂剂的合成及其性能研究
短句来源
    Study on Synthesis of New Phenylfluorone Reagents and Their Application in Food Analysis
    新苯基荧光酮试剂合成及在食品分析中的应用
短句来源
    Research on Synthesis of β-Carotene and Canthaxanthin
    β-胡萝卜素及角黄素合成研究
短句来源
    Study on the Synthesis and Dyeing and Finishing Behaviours of Ionic Sulphur Dyes
    离子型硫化染料的合成及其染整行为研究
短句来源
    Study on Synthesis and Antimicrobial Activity of Furfuryl Fumarates
    丁烯二酸糠醇酯的合成及其抗菌活性研究
短句来源
更多       
  “synthesis”译为未确定词的双语例句
    The Optimum Synthesis of Looper Mechanism of Industrial Sewing Machine Type GK10-3
    GK10-3型缝纫机弯针机构优化
短句来源
    Synthesis Of Elliptic The Design and Calculation of the Instyument for Measuring Carpet Warp Tension
    地毯经线张力测试仪的理论设计与计算
短句来源
    The Synthesis of the Pigment Dyeing Binder PD and Its Application
    PD涂料染色粘合剂(固着剂)的研制及应用
短句来源
    Research on the Synthesis and Applications of Desizing Agent FZ-D
    退浆剂FZ—D的研制与应用
短句来源
    Research on the Synthesis and Applications of Dyeing Promoter DDA
    促染剂DDA的研制与应用
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  synthesis
In the early 1960s research into radar signal synthesis produced important formulas describing the action of the two-dimensional Fourier transform on auto- and crossambiguity surfaces.
      
Wavelets, generalized white noise and fractional integration: The synthesis of fractional Brownian motion
      
The Design and Synthesis of a Novel, Orally Active, Selective ETA Antagonist
      
Synthesis and Cytotoxic Activity of 6-(Substituted-Phenyl)Amino-5,8-Quinazolinediones
      
Design, Synthesis and Growth Inhibition Activity of Bis-Epoxyethyl Derivatives of Stallimycin Modified on the Amidino Moiety
      
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“Modown”is the trade name of a new herbicide,first maun factured by theMobile Oil Corporation of America in 1973.Chemical name:methy 1—5—(2,4—dichrorophenoxy)—2—nitrobenzoate.Structural formula:(?)This thesis affords in detail a laboratory method for synthesis of the abovecompound.The method includes Chlornation of benzoyl chloride,purification ofmetachlorobenzoyl chloride by fractional distillation,esterification to isopropylester,nitration,condensation with 2,4—dichlorophenol,and subsequent ester—exchange...

“Modown”is the trade name of a new herbicide,first maun factured by theMobile Oil Corporation of America in 1973.Chemical name:methy 1—5—(2,4—dichrorophenoxy)—2—nitrobenzoate.Structural formula:(?)This thesis affords in detail a laboratory method for synthesis of the abovecompound.The method includes Chlornation of benzoyl chloride,purification ofmetachlorobenzoyl chloride by fractional distillation,esterification to isopropylester,nitration,condensation with 2,4—dichlorophenol,and subsequent ester—exchange to methyl ester.The total yield is 59%,based on meta-chloro-benzoyl-chloride.The purity of“Modown”is 99.8%.The herbicide is specific forbroadleaves grasses.

“茅毒”是一种新除草剂的商品名,首由美国 Mobilc Oil Corp.在1973年合成,其化学名称为5—(2,4—二氯苯氧基)—2—硝基苯甲酸甲酯,化学结构式如下:(?)本文提出了合成此化合物的实验室方法的细节。方法包括了苯甲酰氯的氯化,用分馏法精制间氯苯甲酰氯,它的异丙酯化,硝化及同2.4—二氯苯酚的缩合,最后经过酯交换成为产品,总收率为59%(按间氯苯甲酰氯计),台“茅毒”纯度为99.8%。“茅毒”对杀除阔叶草有特效。

A series of analytical methods for glyphosate "Nanlin Z" production have been investigated and selected which include the methods concerning content determination of the chemicals used for synthesis of chloromethanephosphonyl dichloride, intermediates (such as chloromethylphosphonic acid. C1-ion) and glyphosate in end products. All these methods are reliable and proved to be adoptable for glyphosate "Nanlin Z" preparation process.

对除草剂“镇草宁(南林z型)”的分析方法进行了研究和选择,其中包括用于合成氯甲基膦酰二氯所用的化学原料、中间体(如氯甲基膦酸和氯离子)以及镇草宁中膦甘酸含量的测定。这些方法用于镇草宁(南林z型)的制备过程是可行的。

The rapid development of bioengineering technology will inevitably lead to profound changes in pesticide discipline. The biotechnical products, with stress on the fermentation engineering, have been widely used in plant protection enzyme engineering, taking advantage of the function of microorganisms, has been introduced to organic synthesis so as to improve the production process of pesticides and intermediates. The nsage of new strains can control waste treatment effectively. Cell engineering and genetic...

The rapid development of bioengineering technology will inevitably lead to profound changes in pesticide discipline. The biotechnical products, with stress on the fermentation engineering, have been widely used in plant protection enzyme engineering, taking advantage of the function of microorganisms, has been introduced to organic synthesis so as to improve the production process of pesticides and intermediates. The nsage of new strains can control waste treatment effectively. Cell engineering and genetic engineering technology will open up a new route to artificial synthesis of natural active substances. It is held that industrial research and development in the near future should first of all, concentrate on the fully utilization of natural microorganism resources to establish modern fermentation engineering and make further use of every means of bioengineering technology to raise the production level of existing pesticides, with the aim to achieve better economic efficiencies. Meanwhile, it is necessary to screen new biologically active substances and strive for good results from the hard undergoing chemical reactions and difficult-disposing wastes by means of enzyme engineering.

生物工程技术的迅速发展,必然导致农药学科的深刻变化。以发酵工程为主的生物技术产品已在植保中广泛应用;酶工程,包括借助微生物的作用,已引入有机合成领域,用以改造农药及中间体的生产工艺;利用新菌种,可以有效地治理三废;细胞工程和遗传工程技术将为人工合成天然活性物质开辟新的途径。认为,近期工业研究开发的重点应是,充分利用天然的微生物资源,首先建立现代化的发酵工程,进一步利用一切生物工程手段,提高现有农药的生产水平,尽快取得经济效益。同时筛选新的生物活性物种,通过酶工程,在难于进行的化学反应和难以治理的三废中取得效果。逐步建立基因工程研究。

 
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