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Q.(a) Write the first step the primary effluent undergoes when it enters the secondary treatment plant and state the purpose.

(b) What is the level of B.O.D indicative of in the secondary treatment plant ? Mention its significance.
CBSECBSE Class XII Board 2023Subjective· 2mImportance★★★★★
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Primary effluent in secondary treatment is first aerated to promote aerobic bacterial growth, which decomposes organic matter; a low BOD at the end signals effective treatment and safe discharge.

When wastewater leaves primary treatment—having shed its floating debris and settleable solids—it still carries a heavy load of dissolved and colloidal organic matter. This is where secondary treatment steps in, and it does so with a fundamentally biological approach rather than a merely physical one.

(a) The First Step: Aeration and Its Purpose

The moment primary effluent enters the secondary treatment plant, it is pumped into large aeration tanks. Here, the effluent is vigorously agitated and air is constantly bubbled through it. This aeration serves a clear purpose: it creates an oxygen-rich environment that encourages the rapid growth of aerobic bacteria and other microorganisms.

These microbes are the workhorses of secondary treatment. They consume the dissolved organic pollutants—proteins, carbohydrates, fats—as their food source, breaking them down through aerobic respiration into simpler, harmless substances like carbon dioxide and water. The constant supply of oxygen ensures that decomposition proceeds efficiently and that the bacterial population remains active and multiplying. Without this aeration, the process would either stall or shift to slower, less efficient anaerobic pathways.

Note

The aeration tank is sometimes called an activated sludge tank because the mass of bacteria and microorganisms that develops is referred to as "activated sludge"—a living, metabolically active community doing the heavy lifting of purification.

(b) BOD Level and Its Significance

Biochemical Oxygen Demand, or BOD, measures the amount of oxygen that microorganisms will consume while decomposing organic matter in water over a specified period (typically five days at 20°C). It is, in essence, an index of organic pollution: the higher the BOD, the more organic waste present, and the more oxygen will be depleted from the water.

In the context of the secondary treatment plant, a significant reduction in BOD is the hallmark of successful treatment. When effluent first enters, its BOD is high—reflecting the burden of organic pollutants. As aerobic bacteria work through the aeration phase, they metabolize this organic load, and the BOD drops sharply.

By the time the effluent is ready to leave secondary treatment, its BOD should be low—typically reduced by 90–95% compared to the incoming wastewater. This low BOD is indicative of two things: …

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