Changes
On February 8, 2023 at 3:15:06 PM UTC, Abiha Inam:
-
Added resource export_data_1675869290.csv to Accumulation of radionuclides in selected marine biota from Manjung coastal area
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8 | "author": "Abdullah, Anisa; Hamzah, Zaini; Saat, Ahmad; Wood, Ab | 8 | "author": "Abdullah, Anisa; Hamzah, Zaini; Saat, Ahmad; Wood, Ab | ||
9 | Khalik; Alias, Masitah;", | 9 | Khalik; Alias, Masitah;", | ||
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16 | "license_title": "IAEA Terms of Use", | 16 | "license_title": "IAEA Terms of Use", | ||
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22 | "name": | 22 | "name": | ||
23 | -of-radionuclides-in-selected-marine-biota-from-manjung-coastal-area", | 23 | -of-radionuclides-in-selected-marine-biota-from-manjung-coastal-area", | ||
24 | "notes": "Distribution of radionuclides from anthropogenic | 24 | "notes": "Distribution of radionuclides from anthropogenic | ||
25 | activities has been intensively studied due to the accumulation of | 25 | activities has been intensively studied due to the accumulation of | ||
26 | radionuclides in marine ecosystem. Manjung area is affected by rapid | 26 | radionuclides in marine ecosystem. Manjung area is affected by rapid | ||
27 | population growth and socio-economic development such as heavy | 27 | population growth and socio-economic development such as heavy | ||
28 | industrial activities including coal fired power plant, iron | 28 | industrial activities including coal fired power plant, iron | ||
29 | foundries, port development and factories, agricultural runoff, waste | 29 | foundries, port development and factories, agricultural runoff, waste | ||
30 | and toxic discharge from factories.It has radiological risk and toxic | 30 | and toxic discharge from factories.It has radiological risk and toxic | ||
31 | effect when effluent from the industries in the area containing | 31 | effect when effluent from the industries in the area containing | ||
32 | radioactive materials either being transported to the atmosphere and | 32 | radioactive materials either being transported to the atmosphere and | ||
33 | deposited back over the land or by run off to the river and flow into | 33 | deposited back over the land or by run off to the river and flow into | ||
34 | coastal area and being absorbed by marine biota. Radionuclides | 34 | coastal area and being absorbed by marine biota. Radionuclides | ||
35 | presence in the marine ecosystem can be adversely affect human health | 35 | presence in the marine ecosystem can be adversely affect human health | ||
36 | when it enters the food chain. This study is focusing on the | 36 | when it enters the food chain. This study is focusing on the | ||
37 | radionuclides [thorium (Th), uranium (U), radium-226 (226Ra), | 37 | radionuclides [thorium (Th), uranium (U), radium-226 (226Ra), | ||
38 | radium-228 (228Ra) and potassium-40 (40K)] content in marine biota and | 38 | radium-228 (228Ra) and potassium-40 (40K)] content in marine biota and | ||
39 | sea water from Manjung coastal area. Five species of marine biota | 39 | sea water from Manjung coastal area. Five species of marine biota | ||
40 | including Johnius dussumieri (Ikan Gelama), Pseudorhombus malayanus | 40 | including Johnius dussumieri (Ikan Gelama), Pseudorhombus malayanus | ||
41 | (Ikan Sebelah), Arius maculatus (Ikan Duri), Portunus pelagicus (Ketam | 41 | (Ikan Sebelah), Arius maculatus (Ikan Duri), Portunus pelagicus (Ketam | ||
42 | Renjong) and Charybdis natator (Ketam Salib) were collected during | 42 | Renjong) and Charybdis natator (Ketam Salib) were collected during | ||
43 | rainy and dry seasons. Measurements were carried out using Inductively | 43 | rainy and dry seasons. Measurements were carried out using Inductively | ||
44 | Coupled Plasma Mass Spectrometer (ICPMS). The results show that the | 44 | Coupled Plasma Mass Spectrometer (ICPMS). The results show that the | ||
45 | concentration of radionuclides varies depends on ecological | 45 | concentration of radionuclides varies depends on ecological | ||
46 | environment of respective marine biota species. The concentrations and | 46 | environment of respective marine biota species. The concentrations and | ||
47 | activity concentrations are used for the assessment of potential | 47 | activity concentrations are used for the assessment of potential | ||
48 | internal hazard index (Hin), transfer factor (TF), ingestion dose rate | 48 | internal hazard index (Hin), transfer factor (TF), ingestion dose rate | ||
49 | (D) and health risk index (HRI) to monitor radiological risk for human | 49 | (D) and health risk index (HRI) to monitor radiological risk for human | ||
50 | consumption.", | 50 | consumption.", | ||
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53 | "organization": { | 53 | "organization": { | ||
54 | "approval_status": "approved", | 54 | "approval_status": "approved", | ||
55 | "created": "2023-02-06T08:37:57.637524", | 55 | "created": "2023-02-06T08:37:57.637524", | ||
56 | "description": "The IAEA is the world's centre for cooperation in | 56 | "description": "The IAEA is the world's centre for cooperation in | ||
57 | the nuclear field and seeks to promote the safe, secure and peaceful | 57 | the nuclear field and seeks to promote the safe, secure and peaceful | ||
58 | use of nuclear technologies.", | 58 | use of nuclear technologies.", | ||
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64 | "state": "active", | 64 | "state": "active", | ||
65 | "title": "The International Atomic Energy Agency", | 65 | "title": "The International Atomic Energy Agency", | ||
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69 | "preferred_form_of_citation": "IAEA MARIS, 2023. IAEA Marine | 69 | "preferred_form_of_citation": "IAEA MARIS, 2023. IAEA Marine | ||
70 | Radioactivity Information System. In: Division of IAEA Environment | 70 | Radioactivity Information System. In: Division of IAEA Environment | ||
71 | Laboratories [online]. Monaco. [Cited DATE] https://maris.iaea.org", | 71 | Laboratories [online]. Monaco. [Cited DATE] https://maris.iaea.org", | ||
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83 | "title": "Accumulation of radionuclides in selected marine biota | 142 | "title": "Accumulation of radionuclides in selected marine biota | ||
84 | from Manjung coastal area", | 143 | from Manjung coastal area", | ||
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