Diksha Courses Environmental Hazards of Electronic waste (E-waste) Assessment

E-waste management MCQs

E-Waste Management & Sustainable Development Goals: Practice MCQs with Detailed Explanations

Electronic waste (e-waste) is one of the fastest-growing environmental and public health challenges globally. Understanding its sources, hazards, regulatory frameworks, and connection to the United Nations Sustainable Development Goals (SDGs) is essential for students, researchers, and competitive exam aspirants in Environmental Studies.

This guide provides 15 multiple-choice questions (MCQs) complete with verified answers, context-rich explanations, and background information designed to help you master key concepts in e-waste management and sustainable resource production.

Multiple Choice Questions & Detailed Answers

Question 1

  • a. 9
  • b. 6
  • c. 12
  • d. 16

Explanation: Sustainable Development Goal 12 (SDG 12) specifically targets “Responsible Consumption and Production.” It focuses on decoupling economic growth from environmental degradation, reducing resource use, and promoting sustainable supply chains and waste management systems.


Question 2

  • a. Lifestyle changes
  • b. Rise in income levels
  • c. Increased rate of obsolescence of electrical and electronic goods
  • d. All of these

Explanation: Rapid urbanization, higher disposable income, changing lifestyle patterns, and planned obsolescence (where devices are designed to become outdated quickly) collectively drive global overconsumption of raw materials and energy.


Question 3

  • a. Landfills
  • b. Reuse
  • c. Recycle
  • d. Burning

Explanation: Proper recycling in specialized, authorized facilities ensures that valuable secondary raw materials (like gold, silver, and copper) are recovered safely without leaching toxic heavy metals into soil and groundwater or emitting hazardous pollutants into the atmosphere.


Question 4

  • a. Copper
  • b. Nickel
  • c. Acid
  • d. Beryllium

Explanation: Copper is an exceptionally conductive non-ferrous metal widely used in power lines, telecommunications, and internal circuit wiring. Its high scrap value makes it one of the primary targets for recovery in e-waste recycling.


Question 5

  • a. Electrical equipment
  • b. Medical equipment
  • c. Computer equipment
  • d. Telecommunication equipment

Explanation: Information Technology (IT) equipment, particularly personal computers, laptops, and servers, constitutes roughly 70% of India’s total e-waste volume. Telecommunication devices account for around 12%, while medical and household devices make up the remainder.


Question 6

  • a. Industrial waste
  • b. Agricultural waste
  • c. Domestic waste
  • d. Commercial waste

Explanation: Domestic waste (a primary component of municipal solid waste) consists of everyday discarded items originating from residential households, including kitchen scraps, paper, packaging, and small household refuse.


Question 7

  • a. 15
  • b. 19
  • c. 17
  • d. 14

Explanation: In 2015, the UN General Assembly adopted 17 interconnected Sustainable Development Goals as part of the 2030 Agenda for Sustainable Development, serving as a global blueprint for peace, prosperity, and environmental protection.


Question 8

  • a. North America
  • b. Asia
  • c. Europe
  • d. Africa

Explanation: According to the UN Global E-Waste Monitor report, Asia generated the highest absolute quantity of e-waste in 2016 (approximately 18.2 million metric tonnes), driven by large populations and rapid market growth in electronic devices.


Question 9

  • a. 2013
  • b. 2016
  • c. 2014
  • d. 2015

Explanation: The Ministry of Environment, Forest and Climate Change (MoEFCC) notified the E-Waste (Management) Rules, 2016, which replaced the 2012 rules. The 2016 revision introduced Extended Producer Responsibility (EPR), bringing producers, dealers, and refurbishers under strict collection targets.


Question 10

  • a. Exclusive waste
  • b. Environmental waste
  • c. Electronic waste
  • d. Excess waste

Explanation: E-waste stands for Electronic Waste (or Waste Electrical and Electronic Equipment — WEEE). It encompasses all discarded electrical or electronic items, including computers, mobile phones, televisions, and kitchen appliances.


Question 11

  • a. Barium
  • b. Lead
  • c. Mercury
  • d. Arsenic

Explanation: Liquid-in-glass clinical thermometers and sphygmomanometers contain elemental mercury. Mercury is a bioaccumulative neurotoxin that poses severe health risks if spilled or improperly incinerated.


Question 12

  • a. Aluminium
  • b. Lead
  • c. Iron
  • d. Copper

Explanation: Lead is extensively present in Cathode Ray Tube (CRT) glass monitors and printed circuit board soldering. Informal dismantling methods—such as open-air burning or primitive acid leaching—release heavy lead contaminants, causing irreversible brain and kidney damage.


Question 13

  • a. Air
  • b. Water
  • c. Soil
  • d. All of these

Explanation: E-waste contamination impacts all environmental spheres: open burning releases carcinogenic fumes into the air, heavy metals leach into soil, and toxic runoffs corrupt surface and groundwater supplies (water).


Question 14

  • a. Apple
  • b. Sony
  • c. Videocon
  • d. Samsung

Explanation: Apple (USA), Sony (Japan), and Samsung (South Korea) are multinational foreign corporations. Videocon was established in India as an industrial conglomerate manufacturing home appliances and electronics.


Question 15

  • a. 10 million ton
  • b. 25 million ton
  • c. 40 million ton
  • d. 32 million ton

Explanation: International research benchmarks estimate global annual e-waste generation between 40 to 50 million metric tonnes, with total volumes continuing to climb due to decreasing product lifespans and expanding digital infrastructure.

Quick Reference Summary Table

Question #Topic / ConceptCorrect AnswerKey Highlight
Q1SDG Goal Numberc. 12Responsible Consumption & Production
Q2Resource Overconsumptiond. All of theseLifestyles, income & obsolescence
Q3Environmentally Sound E-waste Methodc. RecycleRecovers metals safely
Q4Valuable Wire Materiala. CopperHigh conductivity and reuse value
Q5Largest E-waste Source in Indiac. Computer equipmentAccounts for ~70% of total volume
Q6Household Generated Wastec. Domestic wasteMunicipal residential waste
Q7Total UN SDGsc. 17Global 2030 Agenda targets
Q8Top E-waste Continent (2016)b. Asia18.2 million metric tonnes
Q9Indian E-Waste Rules Revisionb. 2016Enforced Extended Producer Responsibility
Q10Definition of E-Wastec. Electronic wasteDiscarded electrical/electronic devices
Q11Medical Device Hazardc. MercuryThermometers & blood pressure monitors
Q12Informal Recycling Toxic Metalb. LeadPresent in CRTs and soldering
Q13Impact of Improper Disposald. All of theseAir, water, and soil pollution
Q14Indian Device Manufacturerc. VideoconIndian home appliance brand
Q15Global Annual E-waste Volumec. 40 million tonnesStandard benchmark range

Frequently Asked Questions (FAQs)

What is Extended Producer Responsibility (EPR) in E-waste Management?

Extended Producer Responsibility (EPR) is an environmental policy strategy that holds electronics manufacturers and importers accountable for the entire lifecycle of their products, particularly during post-consumer collection, channelized recycling, and eco-friendly disposal.

Why is informal E-waste recycling dangerous?

Informal recycling uses unsafe techniques such as open-air burning, direct acid washing, and unequipped manual dismantling without protective equipment. This exposes workers and local ecosystems to toxic heavy metals like lead, mercury, cadmium, and beryllium.

How does proper E-waste management support SDG 12?

Proper e-waste management supports SDG 12 by reducing global waste generation through prevention, reduction, recycling, and reuse (the 4 Rs), preserving critical raw materials and preventing toxic contamination in natural ecosystems.

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