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Clove Sensitive Anti-Sensitivity Toothpaste

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Benefits of Clove Sensitive Toothpaste

  • Helps reduce sensitivity
  • Controls bad odour
  • Helps to reduce plaque and stain
  • Anti-cavity
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Clove Sensitive: For instant soothing against sensitivity; formulated with special ingredients like potassium nitrate, it works to soothe nerves and protect against pain triggered by hot, cold, or sweet stimuli. Its mild abrasives help clean teeth without causing further discomfort, while fluoride strengthens enamel, guarding against decay. With regular use, Clove Sensitive toothpaste provides relief, promoting healthier teeth and a happier smile.

Benefits of Clove Sensitive Toothpaste

  • Helps reduce sensitivity
  • Controls bad odour
  • Helps to reduce plaque and stain
  • Anti-cavity

Product details

  • Product Dimensions ‏ : ‎ 10 x 10 x 10 cm; 100 g
  • Date First Available ‏ : ‎ 12 December 2023
  • Manufacturer ‏ : ‎ Dabur India Ltd.
  • Country of Origin ‏ : ‎ India
  • Use Before‏ : ‎ Feb 2026
  • Item Weight ‏ : ‎ 100 g 
  • Item Dimensions LxWxH ‏ : ‎ 10 x 10 x 10 Centimeters
  • Net Quantity ‏ : ‎ 1
Weight 0.1 kg

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  1. Sustainable Sourcing of Ingredients:
    • Clove Oil: Clove oil is a natural ingredient derived from clove trees. Sustainable sourcing practices involve harvesting cloves in a way that does not harm the trees or the surrounding ecosystem. This practice ensures the long-term availability of the resource and minimizes environmental impact.
      • Scientific Explanation: Sustainable agricultural practices reduce soil erosion, maintain soil fertility, and preserve biodiversity, which can help sequester carbon and reduce overall emissions.
  2. Eco-friendly Packaging:
    • Many sustainable products use biodegradable or recyclable packaging materials. If Clove Sensitive Anti-Sensitivity Toothpaste uses such materials, it reduces the waste that ends up in landfills, thereby lowering its environmental impact.
      • Scientific Explanation: Biodegradable materials break down naturally and reduce the volume of waste in landfills, while recyclable materials can be reprocessed and reused, lowering the demand for new raw materials and the energy required to produce them.
  3. Energy-efficient Manufacturing Processes:
    • The manufacturing process of the toothpaste might involve energy-efficient methods, reducing the overall carbon footprint. This can include the use of renewable energy sources, such as solar or wind power, in the production facilities.
      • Scientific Explanation: Energy-efficient manufacturing reduces greenhouse gas emissions associated with energy consumption. Renewable energy sources have a much lower carbon footprint compared to fossil fuels.
  4. Minimal Use of Synthetic Chemicals:
    • The formulation of Clove Sensitive Anti-Sensitivity Toothpaste might avoid synthetic chemicals that are harmful to the environment. Natural and biodegradable ingredients are less likely to contribute to pollution and have a lower environmental impact.
      • Scientific Explanation: Synthetic chemicals often require significant energy and resource inputs for production and can persist in the environment, contributing to pollution and greenhouse gas emissions. Natural alternatives tend to have a smaller ecological footprint.
  5. Carbon Offsetting Initiatives:
    • The company might be engaged in carbon offsetting initiatives, such as planting trees or investing in renewable energy projects, to compensate for the carbon emissions associated with the production and distribution of the toothpaste.
      • Scientific Explanation: Carbon offsetting involves compensating for emissions by funding projects that reduce or sequester an equivalent amount of CO2. This can help balance the carbon budget and mitigate climate change.

References:

  1. Sustainable Agriculture Practices: FAO. (n.d.). Sustainable agriculture. FAO
  2. Biodegradable and Recyclable Packaging: Hopewell, J., Dvorak, R., & Kosior, E. (2009). Plastics recycling: challenges and opportunities. Philosophical Transactions of the Royal Society B: Biological Sciences, 364(1526), 2115-2126.
  3. Energy-efficient Manufacturing: Hasanbeigi, A., Price, L., & Arens, M. (2014). Emerging energy-efficiency and greenhouse gas mitigation technologies for the iron and steel industry. International Journal of Greenhouse Gas Control, 20, 189-200.
  4. Natural vs. Synthetic Chemicals: EPA. (n.d.). Understanding Chemical Exposures. EPA
  5. Carbon Offsetting: Broekhoff, D., Gillenwater, M., Colbert-Sangree, T., & Cage, J. (2019). Securing Climate Benefit: A Guide to Using Carbon Offsets. Stockholm Environment Institute.

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