Arylsulphonates example sentences

Related (10): sulphonate, phenolsulphonate, aryl, anilinesulphonate, sulfonates, sulfonation, sulfonamide, sulfones, sulfonated, sulfonating

"Arylsulphonates" Example Sentences

1. "Arylsulphonates" are known to be toxic and carcinogenic.
2. The compound "arylsulphonates" is a major component of detergents.
3. "Arylsulphonates" are used as surfactants in many industrial applications.
4. "Arylsulphonates" are commonly used as intermediates in the production of pharmaceuticals.
5. "Arylsulphonates" can be used as corrosion inhibitors in oil and gas production.
6. The solubility of "arylsulphonates" in water is very low.
7. The reaction of "arylsulphonates" with acids produces toxic gases.
8. The "arylsulphonates" used in detergents are highly biodegradable.
9. The toxicity of "arylsulphonates" is highly dependent on the type of compound.
10. "Arylsulphonates" are used as flame retardants in many plastics.
11. The degradation of "arylsulphonates" in the environment is slow.
12. The production of "arylsulphonates" requires the use of hazardous chemicals.
13. "Arylsulphonates" are used as emulsifiers in food products.
14. The use of "arylsulphonates" in cosmetics is strictly regulated.
15. The decomposition of "arylsulphonates" produces toxic by-products.
16. "Arylsulphonates" can be used as surfactants in detergents and shampoos.
17. The reaction of "arylsulphonates" with metals produces hazardous compounds.
18. The solubility of "arylsulphonates" in organic solvents is very low.
19. The use of "arylsulphonates" in pharmaceuticals is strictly regulated.
20. The "arylsulphonates" used in detergents are biodegradable and non-toxic.
21. The production of "arylsulphonates" requires the use of specialized equipment.
22. The toxicity of "arylsulphonates" is dependent on the type of compound.
23. The decomposition of "arylsulphonates" produces hazardous by-products.
24. The reaction of "arylsulphonates" with acids produces corrosive compounds.
25. The use of "arylsulphonates" as flame retardants is strictly regulated.
26. The degradation of "arylsulphonates" in the environment is slow and can be difficult to measure.
27. The solubility of "arylsulphonates" in water is very low, making them difficult to remove from aqueous systems.
28. The use of "arylsulphonates" in consumer products is strictly regulated.
29. The "arylsulphonates" used in detergents are biodegradable and non-toxic, making them a safe choice for use in the home.
30. The reaction of "arylsulphonates" with metals produces hazardous compounds that can be toxic to humans and animals.
31. The production of "arylsulphonates" requires the use of specialized equipment and reactants, making it a costly process.
32. The toxicity of "arylsulphonates" is highly dependent on the type of compound and the concentration used.
33. The decomposition of "arylsulphonates" produces toxic by-products that can be hazardous to human health.
34. The use of "arylsulphonates" as surfactants in detergents and shampoos is strictly regulated to ensure safety.
35. The solubility of "arylsulphonates" in organic solvents is very low, making them difficult to remove from these systems.
36. The reaction of "arylsulphonates" with acids produces corrosive compounds that can be hazardous to human health.
37. The degradation of "arylsulphonates" in the environment is slow and can be difficult to measure, making it difficult to assess the potential impact on the environment.
38. The use of "arylsulphonates" as flame retardants in many plastics is strictly regulated to ensure safety.
39. The production of "arylsulphonates" requires the use of hazardous chemicals, making it a potentially dangerous process.
40. The use of "arylsulphonates" in cosmetics is strictly regulated to ensure safety and efficacy.

Common Phases

1. Synthesis of arylsulphonates;
2. Characterization of arylsulphonates;
3. Reactivity of arylsulphonates;
4. Application of arylsulphonates;
5. Analysis of arylsulphonates;
6. Isolation of arylsulphonates;
7. Purification of arylsulphonates;
8. Transformation of arylsulphonates;
9. Stability of arylsulphonates;
10. Storage of arylsulphonates.

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