The study on the metal concentrations, acidity levels, and flow velocity of tailings discharged through deep sea tailing placement at the Ramu Nickel-Cobalt project in Papua New Guinea highlights the effectiveness of the DSTP method in maintaining environmental compliance and minimizing immediate threats to the local marine ecosystem. By implementing regular monitoring, utilizing the DSTP method, and ensuring proper pH levels, the study demonstrates that the method used at the Basamuk Refinery operates in compliance with regulations and protects the marine environment from contamination.

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Research at the Ramu Nickel-Cobalt project in Papua New Guinea focused on monitoring metal concentrations, acidity levels, and flow velocity of tailings discharged through deep sea tailing placement. The study found that the DSTP method is effective in meeting environmental standards and reducing immediate risks to the local marine ecosystem. By consistently monitoring these parameters and maintaining proper pH levels, the Basamuk Refinery can operate in accordance with regulations and prevent contamination of the marine environment. The study highlights the importance of regular monitoring to ensure compliance with environmental regulations and protect the local ecosystem. Utilizing the DSTP method has been shown to be an effective approach in minimizing environmental impact from tailings disposal. Overall, the research emphasizes the significance of implementing sustainable practices to safeguard the marine environment from pollution.