The reaction between copper and concentrated sulfuric acid required heating. Under heating conditions, copper gradually dissolved and bubbles were formed. The gas produced could turn purple litmus red or the fuchsia solution faded. After cooling, the solution diluted and turned blue. The reaction equation was: CuSO4 + SO2 → +2H2O. At the same time, there are side reactions such as 5Cu +4H2SO4 (concentrated)(heating)= 3CuSO4 + Cu2S +4H2O. Read more exciting novels for free
The reaction rate of concentrated sulfuric acid with copper was faster than that of diluted sulfuric acid with copper. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Acetic anhydryride-concentrated sulfuric acid reaction (Liebermann-Burchard reaction) can be used to identify tripenoid and steroid side. The specific identification method was as follows: dissolve the sample in vinegar and add concentrated sulfuric acid-vinegar (1:20). If the final color was red or purple, it was triterpene soap. If the final color was blue-green, it was steroid soap. During the reaction process, color changes such as red → purple → blue → green → dirty green would occur in turn, and finally the color would fade. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The chemical equation of the reaction between concentrated sulfuric acid and copper dioxide is CuO +2HQ = CuCl2 + H2 O. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
At room temperature, concentrated sulfuric acid would have a slow corrosive effect on the polythene, and at 90 - 100 ° C, concentrated sulfuric acid would rapidly erode the polythene, causing it to be destroyed or decomposed. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction between copper and sulfuric acid could be divided into two situations. If it was a reaction between copper and concentrated sulfuric acid, the phenomenon would be extremely obvious. The copper plate would quickly dissolve, and the solution would turn from colorless to blue-green. At the same time, a large amount of reddish-brown gas would be produced, which was nitrogen dioxide. What if copper reacted with dilute sulfuric acid? The copper would slowly dissolve, and the solution would turn blue, but the gas produced would be colorless nitrogen dioxide. However, the nitrogen dioxide would react with the oxygen in the air and turn into reddish-brown nitrogen dioxide. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Anhydrous copper sulfuric acid can react with water to form copper sulfuric acid. After heating copper sulfuric acid to lose crystal water, it can be restored to blue crystal copper sulfuric acid if it is put into alcohol or water-containing organic matter. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Since the carbon-oxygen bond of Butanol was a polar bond, the electron negativity of the oxygen atom was greater than that of the carbon atom, so the carbon-oxygen bond was easy to break and an elimination reaction occurred. For example, the elimination reaction of 1-Butanol under the effect of concentrated sulfuric acid, the removal of the hydrogen atom from the alpha carbon atom, and the removal of the hydrogen atom from the beta carbon atom (also known as beta elimination reaction), the reaction produces 1-Buten and water, the reaction formula is CH3CH20H = CH3CH2CH = CH2 + H2O; 2-Butanol and concentrated sulfuric acid mixed together at 170 ° C will also undergo elimination reaction, forming CH2 = CH-CH2-CH3 + H2O or CH3CH = CH-CH3 + H2O; If the molecular dehydration reaction (reaction temperature is 140 degrees), the reaction formula is 2CH3-CH (CH)-CH2-CH3-concentrated sulfuric acid, 140 degrees-CH3-CH-OCHCH3/<CH2CH3CH2CH3>. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
1. 铁与浓硝酸反应: - 常温下铁在浓硝酸中会钝化,不反应。 - 加热时,若铁少量:\(Fe + 6HNO_{3}(浓)=\triangle=Fe(NO_{3})_{3}+3NO_{2}\uparrow+3H_{2}O\); - 若铁过量:\(Fe + 4HNO_{3}(浓)=\triangle=Fe(NO_{3})_{2}+2NO_{2}\uparrow+2H_{2}O\)。 2. 铁与稀硝酸反应: - 若铁少量:\(Fe + 4HNO_{3}(稀)=Fe(NO_{3})_{3}+NO\uparrow+2H_{2}O\); - 若铁过量:\(3Fe + 8HNO_{3}(稀)=3Fe(NO_{3})_{2}+2NO\uparrow+4H_{2}O\)。 <a href="/?from=ask_words" style="color:red" target="_blank">点击前往免费阅读更多精彩小说</a>
Elemental sulfur can undergo an oxido-reduction reaction with concentrated sulfuric acid under heating conditions. Sulfur is oxided to sulfuric acid with a +6 valency, and concentrated sulfuric acid is reduced to nitrogen dioxide with a +4 valency. The reaction equation is: S +6HNO= heating = H ^SO+ 6NO ^+2H ^O. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction between copper dioxide and diluted sulfuric acid would cause such a phenomenon. Copper dioxide was a black solid. When it reacted with diluted sulfuric acid, the black copper dioxide would gradually dissolve, as if the small black particles were slowly disappearing. At the same time, the solution would slowly turn from colorless to blue. This was because the reaction between copper dioxide and diluted sulfuric acid produced copper sulfuric acid and water, and the copper sulfuric acid solution was blue. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>