Our Environment

Complete Class 10 Science Notes

I. Environment and Ecosystem Dynamics

The term environment refers to the surrounding physical and biological conditions in which organisms live, where all components interact continuously. Environmental issues are regularly discussed globally in summits involving both developed and developing countries due to the widespread impact of human activities on natural balances.

Definition and Components of an Ecosystem

An ecosystem is formed by all the interacting living organisms in a given area interacting together with the non-living physical constituents of the environment to maintain balance in nature.

Ecosystems consist of two main categories of components:

Classification of Ecosystems

Natural Ecosystems

Naturally occurring ecosystems that function without human intervention, such as forests, ponds, and lakes.

Human-Made (Artificial) Ecosystems

Man-made and artificially maintained systems, such as gardens, crop-fields, and aquariums.
Example — Garden Ecosystem: Contains various plants (grasses, trees, flower-bearing plants like rose, jasmine, and sunflower) and animals (frogs, insects, birds) whose growth, reproduction, and activities interact with abiotic factors like soil and weather.
Example — Aquarium Ecosystem (Activity 13.1): Requires free swimming space, water, oxygen provided via an aerator (oxygen pump), and fish food. Adding aquatic plants and animals can turn it into a self-sustaining system. Unlike natural ponds and lakes, artificial aquariums require regular cleaning because dead fish and plants accumulate in the absence of complete natural decomposer cycles.

II. Functional Classification of Organisms

Organisms within an ecosystem are categorized into three main functional groups based on their mode of obtaining sustenance.
Functional Group Definition & Description Examples
Producers (Autotrophs) Organisms that synthesize organic compounds (such as sugar and starch) from inorganic raw materials using radiant solar energy in the presence of chlorophyll via photosynthesis. They fix solar energy for all heterotrophs. All green plants, certain photosynthetic bacteria
Consumers (Heterotrophs) Organisms that depend directly or indirectly on producers for sustenance by consuming food made by producers or by feeding on other consumers. Divided into herbivores, carnivores, omnivores, and parasites
Decomposers Microorganisms that break down the dead remains and waste products of plants and animals. They convert complex organic substances into simple inorganic substances that return to the soil for reuse by plants. Microorganisms comprising bacteria and fungi

Role of Decomposers

III. Food Chains, Food Webs, and Energy Flow

A food chain is a sequential series of organisms at various biotic levels feeding on one another.

Trophic Levels

Each step or functional level in a food chain is called a trophic level:

[ Producers (Autotrophs) ] → [ Primary Consumers (Herbivores) ] → [ Secondary Consumers (Carnivores) ] → [ Tertiary Consumers (Top Carnivores) ]

Energy Flow Dynamics and the 10% Law

Food serves as a chemical fuel to provide energy for metabolic activities and biological work.

The 10% Law: On average, only 10% of the food consumed is converted into an organism's own body mass and made available for the next consumer level.

Limitations on Trophic Levels & Population Distribution

Characteristics of Energy Flow

Food Web

Real-world feeding relationships are rarely simple straight lines; individual organisms are typically eaten by two or more types of organisms. A complex network of interconnected, branching feeding relationships is known as a food web.

IV. Biological Magnification

Biological Magnification is the phenomenon of chemical concentration increasing progressively at successive trophic levels in a food chain.

Mechanism of Entry and Accumulation

Impact on Humans: Since human beings occupy the top position in most food chains, the maximum concentration of non-degradable pesticides accumulates in human bodies. Food grains (wheat, rice), fruits, vegetables, and meat contain varying pesticide residues that cannot be completely removed by washing or other ordinary means.

V. Depletion of the Ozone Layer

Properties and Importance of Ozone

Ozone (O3) is a molecule formed by three oxygen atoms.

Mechanism of Ozone Formation

Ozone in the upper atmosphere is produced by high-energy UV radiation acting on molecular oxygen (O2):

High-energy UV radiation splits molecular oxygen into free oxygen (O) atoms:

O2 →UV O + O

Free oxygen atoms combine with molecular oxygen to synthesize ozone (O3):

O + O2 → O3 (Ozone)

Causes of Depletion and International Mitigation

UNEP Montreal Action (1987): In 1987, the United Nations Environment Programme (UNEP) forged an international agreement to freeze CFC production at 1986 levels. Today, it is legally mandatory for manufacturing companies worldwide to produce CFC-free refrigerators.

VI. Waste Generation and Management

Enzyme Specificity and Biodegradability

Types of Waste Materials

Biodegradable Waste

Substances broken down by biological processes carried out by saprophytic microorganisms.

Examples: Vegetable peels, spoilt food, paper, used tea leaves, and natural fabrics.

Non-Biodegradable Waste

Substances that cannot be broken down by biological processes. They remain inert, persist in the environment for long periods, or cause toxicity.

Examples: Plastics, glass, metal medicine strips, synthetic packaging, and e-waste.

Environmental Impact of Changing Lifestyles

Case Study: Disposable Tea Cups in Indian Railways

Historical Context: Tea on trains was originally served in reusable plastic glasses that were returned to vendors after use.
Shift to Disposable Plastic Cups: Introduced to improve hygiene standards, but resulted in millions of non-biodegradable plastic cups being discarded daily, creating massive waste problems.
Attempted Shift to Clay Cups (Kulhads): Clay cups were proposed as a natural alternative, but large-scale production would have resulted in severe loss of fertile top-soil.
Current Solution: Disposable paper cups are now widely used because paper is biodegradable and avoids top-soil degradation.

Waste Disposal Practices

Quick Revision

Ecosystem Components

Biotic (living) and Abiotic (non-living physical factors).

Functional Groups

Producers, Consumers, and Decomposers.

Solar Energy Capture

Green plants capture only ~1% of solar energy.

10% Law

Only 10% energy is transferred to the next trophic level.

Energy Flow

Unidirectional and progressively diminishes.

Biological Magnification

Toxic chemical concentration increases up the food chain; highest in humans.

Ozone Formula

O3, formed by UV action on molecular oxygen (O2).

Ozone Depletion Cause

Chlorofluorocarbons (CFCs) used in refrigeration & fire extinguishers.

Montreal Protocol (1987)

UNEP agreement to freeze CFC production at 1986 levels.

Enzyme Specificity

Enzymes break specific bonds; why plastics are non-biodegradable.

Waste Types

Biodegradable (organic/decomposable) and Non-Biodegradable (persistent/plastics).

Railway Cups Solution

Paper cups selected over plastic (pollution) and kulhads (top-soil loss).