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Rare Earth Elements (Rees) in Sands Collected from Southern California Sea Beaches
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Rare earth elements (REEs) are considered the limiting resources for advancing clean technologies and electronics. Because global REEs reserve is limited, non-conventional and secondary sources are being investigated for recovery. Here, we investigated wet and dry sand from seven Southern California beaches for sixteen REEs. These include five light REEs, two medium REEs, and nine heavy REEs, separated by their atomic weight. The mass of the magnetically separated metallic compounds ranged from 15.19 – 129.91 g per kg of dry sand in the studied sea beaches in Southern California. The total REEs concentration ranged from 1,168.1 – 6,816.7 µg per kg of wet sand (dry sand basis) and 1,474.7 – 7,483.8 µg per kg of dry sand. Cerium (Ce) and Yttrium (Y) were the most prevalent REEs in these beaches ranging from 387.4 – 2,241.1 µg kg-1 and 104.5 – 2,302.3 µg kg-1 of sand respectively. This study found light REEs concentration accounted for 70 – 80% of total rare earth elements in the studied beaches. The concentrations of the analyzed REEs were significantly different (p < 0.05) from each other in the studied beaches. Additionally, Pearson correlation showed that the REEs were strongly correlated (r ≥ 0.83) with each other in the reported sea beaches, indicating a similar origin of the REEs. The dominant heavy metals in the studied samples were Vanadium (V), Chromium (Cr), Cobalt (Co), Nickel (Ni), Copper (Cu), Zinc (Zn), and Strontium (Sr). Dominant minerals identified in sands were quartz, anorthite, ilmenite, and xenotime. All the beaches are lowly enriched with REEs, and any of the REEs causes no ecological risk or pollution. Similarly, no pollution/ecological risk was observed for the analyzed heavy metals. This study identifies sand as a potential REEs source and demonstrates an easy separation of REEs containing metallic compounds from the sand.
Title: Rare Earth Elements (Rees) in Sands Collected from Southern California Sea Beaches
Description:
Rare earth elements (REEs) are considered the limiting resources for advancing clean technologies and electronics.
Because global REEs reserve is limited, non-conventional and secondary sources are being investigated for recovery.
Here, we investigated wet and dry sand from seven Southern California beaches for sixteen REEs.
These include five light REEs, two medium REEs, and nine heavy REEs, separated by their atomic weight.
The mass of the magnetically separated metallic compounds ranged from 15.
19 – 129.
91 g per kg of dry sand in the studied sea beaches in Southern California.
The total REEs concentration ranged from 1,168.
1 – 6,816.
7 µg per kg of wet sand (dry sand basis) and 1,474.
7 – 7,483.
8 µg per kg of dry sand.
Cerium (Ce) and Yttrium (Y) were the most prevalent REEs in these beaches ranging from 387.
4 – 2,241.
1 µg kg-1 and 104.
5 – 2,302.
3 µg kg-1 of sand respectively.
This study found light REEs concentration accounted for 70 – 80% of total rare earth elements in the studied beaches.
The concentrations of the analyzed REEs were significantly different (p < 0.
05) from each other in the studied beaches.
Additionally, Pearson correlation showed that the REEs were strongly correlated (r ≥ 0.
83) with each other in the reported sea beaches, indicating a similar origin of the REEs.
The dominant heavy metals in the studied samples were Vanadium (V), Chromium (Cr), Cobalt (Co), Nickel (Ni), Copper (Cu), Zinc (Zn), and Strontium (Sr).
Dominant minerals identified in sands were quartz, anorthite, ilmenite, and xenotime.
All the beaches are lowly enriched with REEs, and any of the REEs causes no ecological risk or pollution.
Similarly, no pollution/ecological risk was observed for the analyzed heavy metals.
This study identifies sand as a potential REEs source and demonstrates an easy separation of REEs containing metallic compounds from the sand.
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