摘要:19.双氧水(H2O2)是一种极弱电解质.也是一种“绿色氧化剂 .为了贮存.运输的方便.工业上将其转化为固态过碳酸钠(2Na2CO4·3H2O2).该物质具有Na2CO3与H2O2的双重性质.请回答下列问题: (1)写出H2O2的电子式: .并写出它与SO2反应的化学方程式 . (2)若把H2O2看成二元弱酸.写出它在水中第一步电离的方程式 . (3)下列物质不会使过碳酸钠失效的是 A.MnO2 B.NaHCO3 C.H2S D.CH3COOH (4)H2O2成为“绿色氧化剂 的理由是

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双氧水(H2O2)是一种极弱电解质,也是一种“绿色氧化剂”。为了贮存、运输的方便,工业上将其转化为固态过碳酸钠(2Na2CO4·3H2O),该物质具有Na2CO3与H2O2的双重性质。请回答下列问题:

(1)写出H2O2的电子式:                                                                                      ,并写出它与SO2反应的化学方程式                                                                                                                          

(2)若把H2O2看成二元弱酸,写出它在水中第一步电离的方程式                                              

(3)下列物质不会使过碳酸钠失效的是                                                                         

A.MnO2                    B.NaHCO3                           C.H2S                    D.CH3COOH

(4)稀H2SO4不与Cu反应,但在稀H2SO4中加入H2O2后则可使Cu溶解,写出该反应的化学方程式,并用单线桥标明电子转移的方向和数目。                                                                                                            

(5)H2O2成为“绿色氧化剂”的理由是                                                                                                                                                                                                                                      

 

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双氧水(H2O2)是一种极弱电解质,也是一种“绿色氧化剂”。为了贮存、运输的方便,工业上将其转化为固态过碳酸钠(2Na2CO4·3H2O),该物质具有Na2CO3与H2O2的双重性质。请回答下列问题:
(1)写出H2O2的电子式:                                                                                     ,并写出它与SO2反应的化学方程式                                                                                                                          
(2)若把H2O2看成二元弱酸,写出它在水中第一步电离的方程式                                              
(3)下列物质不会使过碳酸钠失效的是                                                                         

A.MnO2B.NaHCO3C.H2SD.CH3COOH
(4)稀H2SO4不与Cu反应,但在稀H2SO4中加入H2O2后则可使Cu溶解,写出该反应的化学方程式,并用单线桥标明电子转移的方向和数目。                                                                                                            
(5)H2O2成为“绿色氧化剂”的理由是                                                                                                                                                                                                                                     

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双氧水(H2O2)是一种极弱电解质,也是一种“绿色氧化剂”。为了贮存、运输的方便,工业上将其转化为固态过碳酸钠(2Na2CO4·3H2O),该物质具有Na2CO3与H2O2的双重性质。请回答下列问题:

(1)写出H2O2的电子式:                                                                                      ,并写出它与SO2反应的化学方程式                                                                                                                          

(2)若把H2O2看成二元弱酸,写出它在水中第一步电离的方程式                                              

(3)下列物质不会使过碳酸钠失效的是                                                                         

A.MnO2                    B.NaHCO3                           C.H2S                    D.CH3COOH

(4)稀H2SO4不与Cu反应,但在稀H2SO4中加入H2O2后则可使Cu溶解,写出该反应的化学方程式,并用单线桥标明电子转移的方向和数目。                                                                                                            

(5)H2O2成为“绿色氧化剂”的理由是                                                                                                                                                                                                                                      

 

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双氧水(H2O2)是一种极弱电解质,也是一种“绿色氧化剂”。为了贮存、运输的方便,工业上将其转化为固态过碳酸钠(2Na2CO4·3H2O),该物质具有Na2CO3与H2O2的双重性质。请回答下列问题:
(1)写出H2O2的电子式:                                                                                     ,并写出它与SO2反应的化学方程式                                                                                                                          
(2)若把H2O2看成二元弱酸,写出它在水中第一步电离的方程式                                              
(3)下列物质不会使过碳酸钠失效的是                                                                         
A.MnO2B.NaHCO3C.H2SD.CH3COOH
(4)稀H2SO4不与Cu反应,但在稀H2SO4中加入H2O2后则可使Cu溶解,写出该反应的化学方程式,并用单线桥标明电子转移的方向和数目。                                                                                                            
(5)H2O2成为“绿色氧化剂”的理由是                                                                                                                                                                                                                                     
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