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Which of the following statements is not correct? (a) Phosphates enhance the growth of algae in surface water. (b) Melting of the polar ice cap will result in a rise in sea levels. (c) Heavy metal toxicity can result from the presence of metal compounds of lead, cadmium, and mercury in water supplies. (d) Reverse osmosis is a good way to effect desalination.

Short Answer

Expert verified
All statements are scientifically correct.

Step by step solution

01

Analyze Each Statement

Read each of the given statements carefully to understand what is being claimed. Look for any scientific or logical inconsistencies in the statements related to environmental science and water treatment processes.
02

Evaluate Statement (a)

Consider the statement: 'Phosphates enhance the growth of algae in surface water.' Phosphates act as nutrients for algae, causing algae blooms. This statement is scientifically accurate as high nutrient levels support algal growth.
03

Evaluate Statement (b)

Consider the statement: 'Melting of the polar ice cap will result in a rise in sea levels.' Melting ice caps add more water to the oceans, increasing sea levels. Therefore, this statement is scientifically accurate.
04

Evaluate Statement (c)

Consider the statement: 'Heavy metal toxicity can result from the presence of metal compounds of lead, cadmium, and mercury in water supplies.' It's well-documented that these metals can cause health issues when present in water. This statement is scientifically accurate.
05

Evaluate Statement (d)

Consider the statement: 'Reverse osmosis is a good way to effect desalination.' Reverse osmosis is widely used to desalinate water by forcing water through a semi-permeable membrane. This statement is correct.
06

Identify the Incorrect Statement

All sentences are factually correct based on current scientific understanding. The question asks which is 'not correct,' so it must be carefully considered why each is correct, and a misinterpretation of the question may occur if it implies one must be wrong.

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Key Concepts

These are the key concepts you need to understand to accurately answer the question.

Phosphates and Algal Growth
Phosphates play a crucial role in aquatic ecosystems, often acting as fertilizers for algae. These compounds, commonly found in detergents, fertilizers, and human waste, enhance the growth of algae in surface water. When phosphates are present in excessive amounts, they lead to what is known as "eutrophication."
This process results in algal blooms, which can severely disrupt aquatic environments. Algal blooms can deplete oxygen levels as the algae decompose, leading to the death of fish and other marine life. Key points about phosphates and algal growth include:
  • Phosphates stimulate rapid algal growth.
  • Algal blooms negatively impact oxygen levels in water.
  • Excessive phosphates often result from agricultural runoff.
By understanding the relationship between phosphates and algal growth, we can better manage water quality and protect aquatic ecosystems.
Sea Level Rise
The melting of polar ice caps is a significant contributor to sea level rise. As global temperatures increase, ice sheets and glaciers melt, releasing massive amounts of water into the oceans.
This not only causes sea levels to rise but also affects coastal communities and ecosystems. Here are essential aspects of sea level rise:
  • Melting ice adds water to oceans, raising sea levels.
  • Sea level rise threatens coastal cities and habitats.
  • Climate change is a primary driver of polar ice melting.
The impact of rising sea levels is profound, leading to more frequent flooding, erosion of coastlines, and damage to marine habitats. Understanding these dynamics helps in planning and mitigating these changes.
Heavy Metal Toxicity
Heavy metals like lead, cadmium, and mercury are highly toxic and can contaminate water supplies. Their presence in water poses serious health risks to humans and wildlife.
When consumed, these metals can lead to various health issues, including damage to the nervous system, kidneys, and other vital organs. Main points about heavy metal toxicity include:
  • Heavy metals are harmful even in small concentrations.
  • Sources include industrial discharge and mining activities.
  • Removal of these metals from water involves complex treatments.
Awareness and mitigation strategies are essential to prevent heavy metal contamination and protect both ecosystems and public health.
Reverse Osmosis
Reverse osmosis is a sophisticated water purification process, widely utilized for desalination. It involves forcing water through a semi-permeable membrane that effectively removes impurities, including salts and other contaminants.
This makes it an ideal method for producing potable water from seawater or brackish water. Components of reverse osmosis include:
  • Use of a semi-permeable membrane for filtration.
  • Effective removal of various impurities.
  • Commonly applied in areas with limited freshwater resources.
While highly effective, reverse osmosis systems require energy and maintenance. Understanding how reverse osmosis works is fundamental for its successful application in water treatment and desalination efforts.

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Most popular questions from this chapter

Steps have been taken to limit phosphorus in surface water. However, the amounts of nitrogen-containing species in surface water can also be a problem because they also promote excessive growth of algae and water plants. What are likely sources of this nitrogen? What nitrogen compounds are likely to be present in surface water?

Many chemical reactions that occur in the atmosphere and stratosphere involve free radicals. Free radical formation occurs when a photon of light is absorbed and the energy of the radiation being absorbed causes a chemical bond in the compound to break. Which of the following bonds requires the most energy (and the most energetic radiation) to be broken? (a) The oxygen-oxygen bond in \(\mathrm{O}_{2}\) (b) The chlorine-carbon bond in \(\mathrm{CCl}_{2} \mathrm{F}_{2}\) (c) The oxygen-oxygen bond in \(\mathrm{O}_{3}\)

What is the correlation between ocean \(\mathrm{pH}\) and atmospheric \(\mathrm{CO}_{2} ?\) (a) As \(\mathrm{CO}_{2}\) increases, the pH decreases. (b) As \(\mathrm{CO}_{2}\) increases, the pH also increases. (c) As \(\mathrm{CO}_{2}\) increases, the pH does not change.

The enthalpy of combustion of isooctane \(\left(\mathrm{C}_{8} \mathrm{H}_{18}\right)\) one of the many hydrocarbons in gasoline, is \(5.45 \times 10^{3} \mathrm{kJ} / \mathrm{mol} .\) Calculate the enthalpy change per gram of isooctane and per liter of isooctane \((d=0.688 \mathrm{g} / \mathrm{mL})\)

Assume the average \(\mathrm{CO}_{2}\) concentration in the atmosphere is 406 ppm (as of January 2017 ). The actual concentration of \(\mathrm{CO}_{2}\) at different sites will vary. Speculate on whether the concentration of \(\mathrm{CO}_{2}\) would be expected to be higher, lower, or the same as this average value in a typical large city.

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