Download Careers360 App
Arsenic: Properties, Characteristics, Uses, Effects on Health

Arsenic: Properties, Characteristics, Uses, Effects on Health

Edited By Team Careers360 | Updated on Jul 02, 2025 05:21 PM IST

The chemical element arsenic has the atomic number 33 and the letter As as its symbol. Numerous minerals include arsenic, which can also be found as a pure elemental crystal. It typically occurs alongside sulphur and metals. Metalloids include arsenic. There are several allotropes of it, but the grey form with a metallic look is the only one that is significant for the industry.

This Story also Contains
  1. Properties
  2. Chemical And Physical Characteristics
  3. Arsenic's Uses
  4. Effects Of Arsenic On Health
  5. Arsenic's Effects On The Environment
Arsenic: Properties, Characteristics, Uses, Effects on Health
Arsenic

Arsenic is mostly used in lead alloys (for example, in car batteries and ammunition). A typical n-type dopant in semiconductor electronic devices is arsenic. Additionally, it is a part of the semiconductor III-V compound gallium arsenide. Pesticides, treated wood products, herbicides, and insecticides are all made with arsenic and its byproducts, particularly trioxide.

Properties

The valence of arsenic can be -3, 0, +3, or +5. There are two main allotropes of the elemental solid, while there are more allotropes that have been reported. While grey or metallic arsenic has a specific gravity of 5.73, yellow arsenic has a specific gravity of 1.97. The most common stable form of arsenic is grey, which has a melting point of 817°C (28 atm) and a sublimation point of 613°C. Semi-metallic grey arsenic is an extremely brittle solid. It is crystalline, steel-grey in colour, easily tarnishes in the air, and when heated, it quickly oxidises to arsenic oxide (As2O3) (arsenic oxide exudes the odour of garlic). Poisonous compounds made with arsenic exist.

Chemical And Physical Characteristics

The following is a list of arsenic's physical and chemical characteristics:

  • Arsenic has an atomic number of 33. In other words, the nucleus of an atom of arsenic contains 33 protons.

  • Arsenic has an atomic mass of 74.92.

  • At a temperature of 20 °C, it is discovered to be solid.

  • It appears to be metallic grey.

  • 816.8 °C is its melting point.

  • Arsenic has a boiling point of 614 °C.

  • At 616 °C, it reaches its boiling point.

  • The rhombohedral crystal structure is seen.

  • It has a density of 5.72 g/cm3.

  • Arsenic combines with wet air to produce the arsenic oxide, which coats the element's surface in a dark coating. You should take note of the fact that arsenic does not react with water or dry air in this situation. Below is a list of arsenic reactions with oxygen.

NEET Highest Scoring Chapters & Topics
This ebook serves as a valuable study guide for NEET exams, specifically designed to assist students in light of recent changes and the removal of certain topics from the NEET exam.
Download EBook

4As_{(s)} + 5O_{2(g)} \longrightarrow As_4O_{10(s)}

1706520359673

4As_(s) + 3O_{2(g)} \longrightarrow As4O_{6(s)}

1706520359854

  • Arsenic interacts with fluorine to produce the colourless compound arsenic pentafluoride in the presence of halogens.

2As_{(s)} + 5F_{2(g)} \longrightarrow 2AsF_{5(g)}

1706520359362

  • Under regulated circumstances, arsenic can also react with other halogens including chlorine, bromine, and iodine to produce arsenic trichloride, which is colorless, arsenic tribromide, which is pale yellow, and arsenic triiodide, which is red. The following are responses.

2As_{(s)} + 3C_{l2(g)} \longrightarrow 2AsC_{l3(l)}

1706520359598

2As_{(s)}+ 3Br_{2(g)} \longrightarrow 2AsBr_{3(s)}

1706520359754

Arsenic's Uses

A tiny quantity of this element is utilized in alloys and most of it is used in compounds.

In the past, it was also used to prepare the lead shot, though the amount used for these purposes has declined. These applications can easily release arsenic into the environment. To create transistors, germanium and silicon are given a certain amount. Arsenic-based gallium arsenide is used to create light-emitting diodes (LEDs). These LEDs create illuminated numbers on clocks, watches, handheld calculators, and other electronic gadgets.

Effects Of Arsenic On Health

One of the most dangerous substances that can be found in arsenic. Inorganic arsenic bonding does exist on earth naturally, despite having a harmful effect. Arsenic exposure in humans can happen through food, drink, or air. Skin contact with arsenic-containing water or soil can also lead to exposure.

Arsenic levels in food are relatively low because it is not added because of their toxicity. However, because fish absorb arsenic from the water they live in, levels of arsenic in fish and seafood may be high. Luckily this is mostly the rather innocuous organic form of arsenic, but fish that have significant amounts of inorganic arsenic may be a hazard to human health.

Arsenic's Effects On The Environment

Due to human intervention in the arsenic cycle, there is now a significant amount of arsenic in the environment as well as in living things. Arsenic is mostly released during the manufacture of copper, although it is also produced during the production of lead and zinc and in agriculture. Once it has gotten into the environment, it cannot be eliminated, so the amounts we contribute can spread and affect people and animals' health in many different parts of the world.

Frequently Asked Questions (FAQs)

1. What is the purpose of arsenic?

For solid-state devices, arsenic is used as a doping agent in semiconductors (gallium arsenide). It can be used for pyrotechnics, hardening shot, and bronze. Speciality glass can be made with arsenic compounds, and it can also preserve the wood.

2. Is arsenic toxic?

Arsenic is particularly dangerous when it is in its inorganic form. Contaminated water used for drinking, food preparation, and agriculture irrigation poses the most threat to human health from arsenic. Arsenic poisoning from food and drink can eventually cause cancer and skin blisters.

3. Is arsenic a component of medicine?

A toxin that is frequently utilised is arsenic (As). Few individuals are aware that As is frequently utilised in medication. In the past, as well as its components, have been used to treat conditions like diabetes, psoriasis, syphilis, skin ulcers, and joint issues.

4. What fruit has arsenic in it?

Apple, pear, and grape juice may contain tiny amounts of arsenic because the substance is present in the fruit. Juice from concentrate may contain more arsenic if blended with water that contains arsenic.

5. What are the Drawbacks of Arsenic?

A dangerous element is arsenic. There is proof that athletes have died from its high dosage in the form of formulations. Carcinogenic inorganic arsenic exists. Arsenic is primarily found in drinking water and agricultural products that we consume. Arsenic poisoning, which can have an impact on a variety of organs and organ systems, is brought on by high levels of arsenic in the body. Skin, the cardiovascular system, the immunological system, the endocrine system, the neurological system, the respiratory system, etc. may all be impacted. Organic arsenic compounds are less toxic than elements of arsenic and inorganic arsenic compounds.

6. How does arsenic affect human health through environmental exposure?
Environmental exposure to arsenic can affect human health in several ways:
7. How does arsenic interact with other elements in the environment?
Arsenic interacts with other elements in the environment in complex ways:
8. What are the challenges in removing arsenic from water supplies?
Removing arsenic from water supplies presents several challenges:
9. How does arsenic behave in aqueous solutions?
In aqueous solutions, arsenic's behavior depends on its oxidation state and pH:
10. What are organoarsenic compounds, and why are they important?
Organoarsenic compounds contain carbon-arsenic bonds and are important because:
11. What are some common arsenic compounds, and how are they used?
Some common arsenic compounds and their uses include:
12. What are the main industrial uses of arsenic?
The main industrial uses of arsenic include:
13. What role does arsenic play in the semiconductor industry?
Arsenic plays a crucial role in the semiconductor industry:
14. How does arsenic behave in redox reactions?
Arsenic's behavior in redox reactions is complex:
15. How does the crystal structure of arsenic relate to its properties?
Arsenic's crystal structure significantly influences its properties:
16. What is arsenic and where is it found in the periodic table?
Arsenic is a chemical element with the symbol As and atomic number 33. It is located in the p-block of the periodic table, specifically in group 15 (formerly group VA) and period 4. Arsenic is classified as a metalloid, meaning it has properties of both metals and non-metals.
17. Why is arsenic considered a metalloid?
Arsenic is considered a metalloid because it exhibits properties of both metals and non-metals. It can form alloys with metals and has a metallic luster, but it's also brittle and a poor conductor of electricity. This dual nature is due to its electronic configuration and its position in the periodic table between metals and non-metals.
18. What are the allotropes of arsenic?
Arsenic has several allotropes, which are different structural forms of the same element. The main allotropes of arsenic are:
19. How does the electronic configuration of arsenic explain its chemical behavior?
Arsenic's electronic configuration is [Ar] 3d¹⁰ 4s² 4p³. The presence of three unpaired electrons in the 4p orbital allows arsenic to form covalent bonds and participate in various chemical reactions. This configuration also explains its ability to form compounds with different oxidation states, primarily +3 and +5.
20. What are the common oxidation states of arsenic, and how do they affect its chemistry?
The most common oxidation states of arsenic are +3 and +5. In the +3 state, arsenic tends to form more covalent compounds and is generally more toxic. In the +5 state, it forms more ionic compounds and is generally less toxic. The ability to exist in multiple oxidation states contributes to arsenic's complex chemistry and its various applications.
21. What are the chemical mechanisms behind arsenic's toxicity?
Arsenic's toxicity stems from several chemical mechanisms:
22. How does arsenic's toxicity relate to its chemical properties?
Arsenic's toxicity is closely linked to its chemical properties:
23. What is the biological role of arsenic, if any?
While arsenic is generally considered toxic, recent research has revealed some biological roles:
24. What are the main analytical methods for detecting arsenic?
Main analytical methods for detecting arsenic include:
25. What are the environmental sources of arsenic contamination?
Environmental sources of arsenic contamination include:
26. How does arsenic compare to other elements in its group (Group 15)?
Arsenic is in Group 15 (formerly VA) along with nitrogen, phosphorus, antimony, and bismuth. As you move down the group:
27. What is arsine, and why is it significant in arsenic chemistry?
Arsine (AsH₃) is a colorless, highly toxic gas and the simplest compound of arsenic and hydrogen. It's significant in arsenic chemistry because:
28. How does arsenic form bonds in its compounds?
Arsenic forms bonds in its compounds through several mechanisms:
29. What is the Marsh test, and how does it relate to arsenic detection?
The Marsh test is a highly sensitive method for detecting arsenic. In this test:
30. How does arsenic interact with other elements to form compounds?
Arsenic interacts with other elements in several ways:
31. How does arsenic compare to antimony and bismuth in Group 15?
Comparing arsenic to its heavier Group 15 neighbors, antimony and bismuth:
32. How does arsenic's chemistry affect its behavior in soil?
Arsenic's chemistry in soil is complex:
33. How does arsenic affect plant growth and metabolism?
Arsenic affects plant growth and metabolism in several ways:
34. What are the chemical differences between organic and inorganic arsenic compounds?
Key chemical differences between organic and inorganic arsenic compounds include:
35. How does arsenic interact with sulfur in chemical and biological systems?
Arsenic interacts strongly with sulfur in various ways:
36. What is biomethylation of arsenic, and why is it important?
Biomethylation of arsenic is the process by which living organisms add methyl groups to arsenic compounds. It's important because:
37. How does arsenic's chemistry influence its use in forensic science?
Arsenic's chemistry is relevant to forensic science in several ways:

Articles

Questions related to

Have a question related to ?

Correct Answer: Overexploitation of ground water in the affected areas


Solution : The correct answer is Overexploitation of ground water in the affected areas.

Arsenic, a naturally occurring element present in the Earth's crust, is ubiquitously distributed in the environment, encompassing the atmosphere, bodies of water, and terrestrial regions. In its inorganic state, it poses severe toxicity risks. Arsenic is naturally present in deep underground water reservoirs, and when there is extensive extraction of groundwater, it can lead to the release of arsenic into the surrounding environment. Additionally, sources of arsenic pollution include high-temperature industrial processes such as those seen in coal-fired power plants, volcanic activity, wildfires, and similar phenomena.
 

Correct Answer: Extrinsic semiconducter


Solution : The correct option is Extrinsic semiconductor.

When arsenic atoms are introduced into the germanium lattice, it transforms into an extrinsic semiconductor. Arsenic is a pentavalent impurity, with five valence electrons. When an arsenic atom is introduced into a germanium lattice, it forms four covalent connections with the germanium atoms while retaining one additional electron. This electron is weakly bonded to the arsenic atom and is quickly liberated by heat energy, resulting in a free electron. Because of the presence of free electrons in the germanium lattice, it is a better electrical conductor than pure germanium. Because of this, arsenic-doped germanium is referred to be an n-type semiconductor.
 

View All
Back to top