All Issue

2025 Vol.62, Issue 3 Preview Page

Research Paper

30 June 2025. pp. 203-212
Abstract
References
1

Baldwin, D.S., Rees, G.N., Mitchell, A.M., Watson, G., and Williams, J., 2006. The short-term effects of salinization on anaerobic nutrient cycling and microbial community structure in sediment from a freshwater wetland, Wetlands, 26, p.455-464.

10.1672/0277-5212(2006)26[455:TSEOSO]2.0.CO;2
2

Boyle, J., 2004. A comparison of two methods for estimating the organic matter content of sediments, Journal of Paleolimnology, 31, p.125-127.

10.1023/B:JOPL.0000013354.67645.df
3

Busenberg, E. and Clemency, C.V., 1973. Determination of the cation exchange capacity of clays and soils using an ammonia electrode, Clays and Clay Minerals, 21, p.213-217.

10.1346/CCMN.1973.0210403
4

Chen, M., Ding, S., Liu, L., Xu, D., Gong, M., Tang, H., and Zhang, C., 2016. Kinetics of phosphorus release from sediments and its relationship with iron speciation influenced by the mussel (Corbicula fluminea) bioturbation, Science of the Total Environment, 542, p.833-840.

10.1016/j.scitotenv.2015.10.15526556747
5

Dang, C., Lu, M., Mu, Z., Li, Y., Chen, C., Zhao, F., Yan, L., and Cheng, Y., 2019. Phosphorus fractions in the sediments of Yuecheng Reservoir, China, Water, 11(12), 2646.

10.3390/w11122646
6

Emerson, K., Russo, R.C., Lund, R.E., and Thurston, R.V., 1975. Aqueous ammonia equilibrium calculations: Effect of pH and temperature, Journal of the Fisheries Research Board of Canada, 32(12), p.2379-2383.

10.1139/f75-274
7

He, S., Zhang, Y., Li, N., Shi, K., Zhang, Y., Qin, B., Zhu, G., Liu, M., and Shao, K., 2024. Summer heatwaves promote harmful algal blooms in the Fuchunjiang Reservoir, an important drinking water source, Journal of Environmental Management, 359, 121056.

10.1016/j.jenvman.2024.12105638704957
8

Huo, L., Yang, P., Yin, H., and Zhang, E., 2024. Enhanced nutrient control efficiency in sediments using modified clay inactivation coupled with aquatic vegetation in the confluence area of a eutrophic lake, Science of the Total Environment, 907, 168149.

10.1016/j.scitotenv.2023.16814937898219
9

Kim, H., Jo, B.Y., and Kim, H.S., 2017. Effect of different concentrations and ratios of ammonium, nitrate, and phosphate on growth of the blue-green alga (cyanobacterium) Microcystis aeruginosa isolated from the Nakdong River, Korea, Algae, 32(4), p.275-284.

10.4490/algae.2017.32.10.23
10

Kim, K.W., Baek, Y.J., Lee, K.Y., Chung, D.Y., and Moon, J.K., 2016. Treatment of radioactive waste seawater by coagulation-flocculation method using ferric hydroxide and poly acrylamide, Journal of Nuclear Science and Technology, 53, p.439-450.

10.1080/00223131.2015.1055313
11

Kim, S.Y. and Koretsky, C.M., 2011. Influence of NaCl and CaCl2 on lake sediment biogeochemistry, Applied Geochemistry, 26, S198-S201.

10.1016/j.apgeochem.2011.03.103
12

Korea National Institute of Environmental Research, 2024. Water Pollution Test Process Standards, File Nos. ES 04357.1 and ES 04358.1b

13

Korea Rural Community Corporation, 2020. Study on Sedimental Characteristics of Reservoirs in the Yeongsan and Seomjin River Basins, 11-1480356-000110-14, Gwangju, Korea, 293p.

14

Korea Water Resources Corporation, 2017. Algal Blooming Characteristic and Best Management Practices of Youngsan River Considering Pollutant Load from Tributaries, 11-1480356-000087-01, Gwangju, Korea, 94p.

15

Lee, H.W., Lee, Y.S., Kim, J., Lim, K.J., and Choi, J.H., 2019. Contribution of internal nutrients loading on the water quality of a reservoir, Water, 11(7), 1409.

10.3390/w11071409
16

Li, X., Xie, Y., Jiang, F., Wang, B., Hu, Q., Tang, Y., Luo, T., and Wu, T., 2020. Enhanced phosphate removal from aqueous solution using resourceable nano-CaO2/BC composite: Behaviors and mechanisms, Science of the Total Environment, 709, 136123.

10.1016/j.scitotenv.2019.13612331905557
17

Lv, Y., Zhang, M., and Yin, H., 2024. Phosphorus release from the sediment of a drinking water reservoir under the influence of seasonal hypoxia, Science of the Total Environment, 917, 170490.

10.1016/j.scitotenv.2024.17049038296100
18

Mermillod-Blondin, F., Gautreau, E., Pinasseau, L., Gouze, E., Vallier, F., Volatier, L., and Nogaro, G., 2024. Interactions between sediment characteristics and oxygen conditions at the sediment-water interface of reservoirs: influences on nutrient dynamics and eutrophication, Hydrobiologia, 851, p.3433-3452.

10.1007/s10750-024-05508-3
19

National Institute of Environmental Research, 2007. Investigation of Mechanisms and Processes of Eutrophication in the Yeongsan and Sumjin River Systems, Gwangju, Korea, 211p.

20

Parsons, C.T., Rezanezhad, F., O'Connell, D.W., and Cappellen, P.V., 2017. Sediment phosphorus speciation and mobility under dynamic redox conditions, Biogeosciences, 14(14), p.3585-3602.

10.5194/bg-14-3585-2017
21

Piepenbrock, A., Schröder, C., and Kappler, A., 2014. Electron transfer from humic substances to biogenic and abiogenic Fe(III) oxyhydroxide minerals, Environmental Science and Technology, 48(3), p.1656-1664.

10.1021/es404497h24400782
22

Reddy, K.R., Patrick, W.H., and Broadbent, F.E., 1984. Nitrogen transformations and loss in flooded soils and sediments, CRC Critical Reviews in Environmental Control, 13(4), p.273-309.

10.1080/10643388409381709
23

Smith, L., Watzin, M.C., and Druschel, G., 2011. Relating sediment phosphorus mobility to seasonal and diel redox fluctuations at the sediment-water interface in a eutrophic freshwater lake, Limnology and Oceanography, 56(6), p.2251-2264.

10.4319/lo.2011.56.6.2251
24

Song, Q., Huang, S., Yang, S., and Zheng, Z., 2024. Relationship between algal bloom and phosphorus in water environment in Zhushan Bay, Taihu Lake, Water, Air, and Soil Pollution, 235, 69.

10.1007/s11270-023-06866-9
25

Su, W., Wu, C., Sun, X., Lei, R., Wang, L., and Zhu, X., 2024. Environmental dynamics of nitrogen and phosphorus release from river sediments of arid areas, Journal of Arid Land, 16, p.685-698.

10.1007/s40333-024-0099-7
26

Tammeorg, O., Nürnberg, G.K., Tõnno, I., Toom, L., and Nõges, P., 2024. Spatio-temporal variations in sediment phosphorus dynamics in a large shallow lake: Mechanisms and impacts of redox-related internal phosphorus loading, Science of the Total Environment, 907, 168044.

10.1016/j.scitotenv.2023.16804437898204
27

Tomaso, D.J. and Najjar, R.G., 2015. Long-term variations in the dissolved oxygen budget of an urbanized tidal river: The upper Delaware Estuary, Journal of Geophysical Research: Biogeosciences, 120(6), p.1027-1045.

10.1002/2014JG002758
28

van Dijk, G., Smolders, A.J.P., Loeb, R., Bout, A., Roelofs, J.G.M., and Lamers, L.P.M., 2015, Salinization of coastal freshwater wetlands; effects of constant versus fluctuating salinity on sediment biogeochemistry, Biogeochemistry, 126, p.71-84.

10.1007/s10533-015-0140-1
29

Wang, F., Wang, J., Cao, T., Ji, X., Yan, J., Ding, S., and Chen, N., 2024b. Seasonal hypoxia enhances sediment iron-bound phosphorus release in a subtropical river reservoir, Science of the Total Environment, 936, 173261.

10.1016/j.scitotenv.2024.17326138761934
30

Wang, M., Xu, X., Wu, Z., Zhang, X., Sun, P., Wen, Y., Wang, Z., Lu, X., Zhang, W., Wang, X., and Tong, Y., 2019. Seasonal pattern of nutrient limitation in a eutrophic lake and quantitative analysis of the impacts from internal nutrient cycling, Environmental Science and Technology, 53(23), p.13675-13686.

10.1021/acs.est.9b0426631599576
31

Wang, P., Han, D., Yu, F., Wang, Y., Teng, Y., Wang, X., and Liu, S., 2024a. Changing climate intensifies downstream eutrophication by enhancing nitrogen availability from tropical forests, Science of the Total Environment, 955, 176959.

10.1016/j.scitotenv.2024.17695939419221
32

Wang, W.H., Wang, Y., Yang, P.L., Wang, M., and Zhou, K., 2022. Physi-chemical mechanism and control effect of CaO2 inhibiting phosphorus release from sediments under different dosing modes, Chemosphere, 303, 135283.

10.1016/j.chemosphere.2022.13528335688200
33

Woodward, K.B., Rendle, D., David, S., and Hofstra, D., 2024. Nutrient release dynamics in relation to stages of Lagarosiphon major decay following treatment with diquat herbicide, Hydrobiologia, 851, p.2205-2214.

10.1007/s10750-023-05446-6
34

Wu, Y., Wen, Y., Zhou, J., and Wu, Y., 2014. Phosphorus release from lake sediments: Effects of pH, temperature and dissolved oxygen, KSCE Journal of Civil Engineering, 18(1), p.323-329.

10.1007/s12205-014-0192-0
35

Wu, Z., Liu, Y., Liang, Z., Wu, S., and Guo, H., 2017. Internal cycling, not external loading, decides the nutrient limitation in eutrophic lake: A dynamic model with temporal Bayesian hierarchical inference, Water Research, 116, p.231-240.

10.1016/j.watres.2017.03.03928343059
36

Xu, H., McCarthy, M.J., Paerl, H.W., Brookes, J.D., Zhu, G., Hall, N.S., Qin, B., Zhang, Y., Zhu, M., Hampel, J.J., Newell, S.E., and Gardner, W.S., 2021. Contributions of external nutrient loading and internal cycling to cyanobacterial bloom dynamics in Lake Taihu, China: Implications for nutrient management, Limnology and Oceanography, 66(4), p.1492-1509.

10.1002/lno.11700
37

Yang, J., Ma, Y., Li, S., Wang, J., Jin, Z., Li, D., and Wang, Y., 2024a. Phosphorus release flux and mechanism at the sediment-water interface of the Three Gorges Reservoir in the Yangtze River basin, China, Journal of Soils and Sediments, 24, p.1814-1825.

10.1007/s11368-023-03591-y
38

Yang, L.Y., Jiao, S.L., Wang, L., Li, Y.J., Yang, M., Feng, Y.L., Li, J., and Wei, Z.X., 2024b. Characteristics and release risk of phosphorus from sediments in a karst canyon reservoir, China, Applied Sciences, 14(6), 2482.

10.3390/app14062482
39

Zhou, Z., Huang, T., Li, Y., Ma, W., Zhou, S., and Long, S., 2017. Sediment pollution characteristics and in situ control in a deep drinking water reservoir, Journal of Environmental Sciences, 52, p.223-231.

10.1016/j.jes.2016.05.00628254042
Information
  • Publisher :The Korean Society of Mineral and Energy Resources Engineers
  • Publisher(Ko) :한국자원공학회
  • Journal Title :Journal of the Korean Society of Mineral and Energy Resources Engineers
  • Journal Title(Ko) :한국자원공학회지
  • Volume : 62
  • No :3
  • Pages :203-212
  • Received Date : 2025-05-09
  • Revised Date : 2025-06-16
  • Accepted Date : 2025-06-16