6. Waste water from a food processing industry has a BOD5 of 200 mg/L and a reaction rate k of 0.26 day*. Total Kjeldahl nitrogen content (TKN) is 40 mg / L. [5] a. calculate ultimate CBOD. [5) b. calculate ultimate NBOD [5] c. determine the remaining BOD (CBOB + NBOD) after 5 days.
6. Waste water from a food processing industry has a BOD5 of 200 mg/L and a reaction rate k of 0.26 day*. Total Kjeldahl nitrogen content (TKN) is 40 mg / L. [5] a. calculate ultimate CBOD. [5) b. calculate ultimate NBOD [5] c. determine the remaining BOD (CBOB + NBOD) after 5 days.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![6. Waste water from a food processing industry has a BOD5 of 200 mg/L and a reaction
rate k of 0.26 day. Total Kjeldahl nitrogen content (TKN) is 40 mg / L.
[5] a. calculate ultimate CBOD.
[5] b. calculate ultimate NBOD
[5] c. determine the remaining BOD (CBOB + NBOD) after 5 days.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F48dd87db-e283-4b2c-a1f2-3b48968accf7%2Fd3a55e2a-7b40-4f4e-b08d-07cf69b5e073%2Ftk0g6s_processed.png&w=3840&q=75)
Transcribed Image Text:6. Waste water from a food processing industry has a BOD5 of 200 mg/L and a reaction
rate k of 0.26 day. Total Kjeldahl nitrogen content (TKN) is 40 mg / L.
[5] a. calculate ultimate CBOD.
[5] b. calculate ultimate NBOD
[5] c. determine the remaining BOD (CBOB + NBOD) after 5 days.
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