Under certain conditions, the reaction between nitrogen and nitrogen can occur. For example, in the presence of oxygen, the reaction between nitrogen and nitrogen can produce nitrogen.(4NH2 + 3O2 = ignition = 2N2 + 6H2 O); The synthetic nitrogen reaction is the reaction of nitrogen and hydrogen to produce nitrogen gas (N2 + 3H2 2NH2, catalyst, high temperature and high pressure). This is a irreversible reaction. From the reverse process of this reaction, nitrogen gas can also be converted to nitrogen and hydrogen under certain conditions; The reaction of nitrogen dioxide and nitrogen gas can produce nitrogen and water (4NH3 + 6NO = 5N2 + 6H2O). However, if it was simply a reaction between nitrogen and nitrogen, they would not react under normal circumstances. This was because nitrogen was a very inactive chemical gas that did not easily react with other substances. As for the discussion on this issue on Zhihu, he could not tell them exactly because he did not find any relevant content. Read more exciting novels for free
You're not asking about online novels. Sulfur dioxide (MoS2) and nitrogen (NH2) can react under certain conditions. However, this reaction was more complicated and required specific temperature, pressure, and other reaction conditions to promote the reaction. From a chemical point of view, it might involve chemical processes such as the breaking and reassembly of chemical bonds. However, if he wanted to understand the specific situation of their reactions in detail, he would have to study the information of the chemistry major or do relevant experimental research. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
There was no reaction between hydrogen and slaked lime. The method of producing hydrogen is to use the reaction of hydrogen chlorideand slaked lime. The reaction principle is 2NHCl2 + CaCl2 + 2NHCl2 + 2HCl2, which means that the reaction of hydrogen chlorideand slaked lime produces hydrogen, rather than the reaction of hydrogen chlorideand slaked lime. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The nitrogen would not react with water to form hydrogen. The chemical properties of nitrogen were very passive. At room temperature, nitrogen did not react with water, and there were no conditions or ways to make it react with water to form hydrogen. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Under normal temperature and pressure, nitrogen and water did not react. The chemical properties of nitrogen were very unactive. Even under certain conditions, through the reaction of the catalyst, it would produce nitrogen and oxygen instead of hydrogen. Under high temperature, high pressure, and catalyst conditions, nitrogen could react with hydrogen to form hydrogen, but nitrogen would not react with water to form hydrogen. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction of the lithium ion with the soda. Under normal circumstances, the ion equation is <<p>[</p>></p>>>[<p>><p>><p>>/p><<</p><& l Therefore, it was wrong to say that there was no reaction when the lithium radical was added to the solution. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
In the detection of nitrogen and nitrogen, the blank light absorption referred to the light absorption obtained by measuring the light source, the cuvette, and other optical systems without any sample. The blank absorption range of nitrogen nitrogen was a key factor in the process of nitrogen nitrogen detection. It played an important role in ensuring the accuracy and reliability of the test results. The reagent blank for the determination of nitrogen and nitrogen shall have an absorption value of not more than 0.030 (10mm cuvette), and the test water blank shall have an absorption value of not more than 0.030 to meet the requirements of determining the absence of nitrogen and nitrogen. "Little Fox Fairy" is equally exciting. Everyone is welcome to click and read it!
Under high-temperature discharge conditions, nitrogen and hydrogen react to produce hydrogen, which is then oxided to produce an aminium salt. In addition, nitrogen can be directly reduced to an aminium salt by a nitrogen fixing organism. Professor Braunschweig's research group used the main group element borlene compound to reduce nitrogen to an aminium salt in a one-pot method at room temperature. In nature, lightning discharge caused nitrogen and oxygen to react and transform into nitrogen dioxide. The nitrogen dioxide reacted with oxygen to form nitrogen dioxide. The nitrogen dioxide dissolved in water to form sulfuric acid. The sulfuric acid then reacted with nitrogen to form nitrates. In some processes, nitrates could also be transformed into nitrogen compounds. At the same time, under certain geological and climate conditions, nitrogen would form compounds such as nitrates and ammines. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
The reaction equation of water and nitrogen is [NH3 + H2O = NH3·H2O], and the partial ionisation of nitrogen and nitrogen gives rise to the formation of hydrogen ions [NH3·H2O NH4 ^+ + CH ^-]. In the process of sublimation, the water and the nitrogen could be distilled together. This was because the water formed by the two was unstable and easily decomposed by heat. The nitrogen produced by the decomposition would be distilled together with the water. It was not that there was no reaction, but that the product formed after the reaction would decompose in reverse under certain conditions (such as heating), so that nitrogen could exist together with water in the sublimation process and be distilled. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Under normal temperature and pressure, nitrogen and water did not react because the chemical properties of nitrogen were very stable. However, under certain conditions, the two could react: 1. Under high temperature and high pressure and a catalyst (such as TiO2), nitrogen and water can react to form hydrogen and oxygen. 2. Under extreme conditions (such as high temperature and high pressure, electric discharge, etc.), nitrogen and water may react to form phosphorous acid (HNO <2>) and phosphorous acid (HNO <2>). <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>
Based on context alone Iron Sulphate (Fe2 (SO)) and nitrogen nitrogen (usually in the form of NHin solution) will react. In the solution, iron ions (Fe3) will be produced by the dissolution of iron sulfuric acid, and the iron ions will undergo a double decomposition reaction with the lithium ions (NH3). Iron ions were decomposed to produce iron (III), while the nitrogen ions were decomposed to produce nitrogen (III). The nitrogen ions were unstable and would decompose to produce nitrogen (III). The reaction equation was roughly as follows: Fe₂(SO₄)₃ + 6NH₄⁺ + 6H₂O = 2Fe(OH)₃↓+ 3(NH₄)₂SO₄ + 6H⁺ (NH The reaction will continue to proceed to the right, and the nitrogen ions will be further decomposed to produce hydrogen gas that escapes from the system. <a href="/?from=ask_words" style="color:red" target="_blank">Read more exciting novels for free</a>