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    2. Lishui Nanming Chemical Co.,Ltd.
      Home Chinese English  
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      Address:NO.19 Tongji Road Shuige industrial zone, Lishui city
      Postal Code: 323000
      Tel: +86-578-2134101,2697830
      Fax:+86-578-2126428
      URL:www.clockwork-atrium.com
      E-mail:sales@nanmingchem.com
      Purchasing:+86-578-2697809


       
       Main Technologies:  Further Technologies:
       - continuous esterification
       - C-Alkylation
       - Friedel - Crafts reaction
       - N-Acylating Reaction
       - Catalytic Transfer Hydrogenation
       - σ-rearrangement reaction
       - Oxidation over Different Catalysts
       - amination reaction
       - New Decomposition Technology
       - High press hydrogenation Technology
       - Cryogenic reaction Technology

       Product Groups:  Equipment:
       - fatty acid ester of polyol
       - fatty alcohol of polyol
       - Acetophenone derivate
       - Nitrile with aromatic or alkyl group
       - other pharmaceutical intermediate
       - 50 pieces of REACTION VESSELs (100—20000L)
       - 42 stirred vessels(1.0 to 20 m3) stainless steel
       - glasslined,mile steel,polymer lined
       - Fractionation columns

       Extensive solid handling systems(filter nutsches,centrifuge,belt filter,vacuum dryers)


       Tank farm (23 tanks with total storage volume of ca.2000 m3)
       - Off gas absorption system
       - laboratory analysis equipment (HPLC GC)

       Special Features:
       - Membrane Separations Technology
       - special high-effective Filler rectification separating technology
       - medium or low pressure continuous hydrogenation Technology

       Regulatory:
       - ISO 9001 certified

       


       The type of reaction


       1. continuous esterification
            R2OH
       R1COOH  R2COOR1

       2. C-Alkylation
             R2CO3
       R1CH2CN  R1CHR2CN

       3. Friedel - Crafts reaction

       ArH  ArCOR

       4. N-Acylating Reaction

       R1NH  NCOR2 

       5. Catalytic Transfer Hydrogenation
              H2
       R1COOR2  R1CH2OH

       6. σ-rearrangement reaction

       R1COR2  R1COCH2R2

       7. Oxidation over Different Catalysts

             O2
       R1CH2OH  R1COR2

           O2
       ArCH3  ArCOOH

       8. amination reaction

       R1COCH2R2  R1COCH(NR)HR2

       

       

       
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