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How are non metals extracted explain with equations?
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Extraction of Metals

Metals can be categorized into three parts on the basis of their reactivity: most reactive, medium reactive and least reactive.

Steps of Extraction of Metals

Extraction of Metals - Class 10


Extracting Metals in the Middle of the Activity Series

  • The metals in the middle of the activity series (Zn, Fe, Pb, etc.) are moderately reactive.
  • They are found in the earth’s crust mainly as oxides, sulphides or carbonates.
  • It is easy to extract metal from their oxide, as compared to their sulphides and carbonates. Therefore before extracting metals form their respective ores, the metal sulphides and carbonates must be converted into metal oxides. For instance, sulphide and carbonate ores of zinc are heated to convert into their oxides.

Extraction of Metals - Class 10

  • This conversion of sulphide ores into their oxides by heating strongly in the presence of excess air is known as roasting.

Extraction of Metals - Class 10

  • This conversion of carbonate ores into their oxides by heating strongly in limited air in the presence of suitable reducing agents such as carbon is known as calcination.
  • Sometimes displacement reaction is also used to derive the metal from their ores. Highly reactive metals displace the low reactive metals from their compounds. For instance, manganese dioxide is heated with aluminium powder.

Extraction of Metals - Class 10

The displacement reactions are highly exothermic and hence the metals are produced in the molten state. In fact, the reaction of iron (III) oxide (Fe2O3) with aluminium is used for joining railway tracks or cracked machinery parts. This reaction is known as the Thermit reaction.

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FAQs on Extraction of Metals - Class 10

1. What is the process of extraction of metals?
Ans. The process of extraction of metals involves several steps. Firstly, the ore is obtained from the earth's crust. Then, the ore is crushed and concentrated using various techniques. After that, the metal is extracted from the concentrated ore by different methods such as smelting, roasting, or leaching. Finally, the extracted metal is purified to obtain the desired form.
2. What are the different methods used for the extraction of metals?
Ans. There are several methods used for the extraction of metals. Some common methods include smelting, roasting, and leaching. Smelting is used for extracting metals from their ores using heat and reducing agents. Roasting involves heating the ore in the presence of excess air to remove impurities. Leaching is a method in which a solvent is used to extract the desired metal from the ore.
3. What is the role of carbon in the extraction of metals?
Ans. Carbon plays a significant role in the extraction of metals. It is used as a reducing agent in the process of smelting. When carbon reacts with metal oxides, it reduces them to the corresponding metals. This is because carbon has a high affinity for oxygen and readily combines with it, leaving behind the pure metal.
4. What are the environmental impacts of metal extraction?
Ans. Metal extraction can have various environmental impacts. The extraction process requires energy, which often leads to the burning of fossil fuels, contributing to air pollution and greenhouse gas emissions. Mining activities can also lead to deforestation, habitat destruction, and soil erosion. The disposal of mining waste can contaminate water bodies and affect aquatic life.
5. How is the extracted metal purified after the extraction process?
Ans. The extracted metal is purified to remove any impurities present. Purification methods depend on the nature of the impurities and the metal being purified. Common purification techniques include electrolysis, distillation, and fractional crystallization. These methods help in obtaining a pure form of the metal with the desired properties.
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