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Jang, H. L.

Publications and source records attributed to Jang, H. L..

2 recordsLinked to original sources

Machine Learning Approaches Reveal Future Harmful Algae Blooms in Jeju, Korea

Cyanobacterial algae blooms have proven to suppress diversity and abundance of other organisms while previous research shows the direct correlation between the growth of cyanobacteria and increasing global temperatures. Freshwater temperatures in Jeju island are most prone to climate change within the Korean peninsula, but research on Harmful Algae Blooms (HABs) in these environments has been scarcely conducted. The purpose of this study is to predict the cell numbers of the four HAB species in Jeju islands four water supply sources in 2050 and 2100. Using the water quality data across the last 24 years, Scikit-learn GBM was developed to predict cell numbers of HAB based on four variables determined through multiple linear regression: temperature, pH, EC, and DO. Meanwhile, XGBoost was designed to predict four different levels of HAB bloom warnings. Future freshwater temperature was obtained through the linear relationship model between air and freshwater temperature. The performances of the Scikit-learn GBM on the cell numbers of each species were as follows (measured by MAE and R2): Microcystis (132.313; 0.857), Anabaena (36.567; 0.035), Oscillatoria (24.213; 0.672), and Apahnizomenon (65.716; 0.506). This model predicted that Oscillatoria would increase by 31.04% until 2100 and the total cell number of the four algeas would increase 376,414/ml until 2050 and reach 393,873/ml in 2100 (247.088; 0.617). The XGboost model predicted a 17% increase in the Warning level of the Algae Alert System until 2100. The increase in HABs will ultimately lead to agricultural setbacks throughout Jeju; algae blooms in dams will produce neurotoxins and hapatotoxins, limiting the usage of agricultural water. Immediate solutions are required to suppress the growth rate of algae cells brought by global climate change in Jeju freshwaters.

ecology↗

Assessing Arthrospira platensis Growth Rates in three Jeju Local Medium, Including Jeju Magma Seawater.

Jeju Magma Seawater (JMS), naturally formed beneath the bedrocks of Jeju island, consists of high micronutrient concentrations such as Zinc (Z, 0.019 mg/L), Iron (F, 0.015 mg/L), Manganese (M, 0.008 mg/L), Vanadium (V, 0.015 mg/L), Selenium (S, 0.013 mg/L) and Germanium (G, 0.002 mg/L). Despite the extensive research conducted upon the conventional Zarrouk medium used in Arthrospira platensis culture industry, the commercial potential of JMS on the growth of Arthrospira platensis has been poorly investigated. With respect to growth rate and cost efficiency, the purpose of the study is to discern and compare the growth of Arthrospira platensis in JMS with other accessible mediums on Jeju island. This study investigated the effects of three different growth mediums: Jeju Magma Seawater (JMS), Jeju seawater (JS), and Artificial seawater (AS) to assess their impact on the growth of Arthrospira platensis measured by biomass concentration (g L-1). The ANOVA results showed that JMS exhibited higher growth levels compared to JS ((p = 0.001) < 0.05) and AS (p=0.001). The results of the t-test revealed a statistically significant disparity between mean mass growth in JMS micronutrient-present environment and JMS micronutrient-absent environment (T = 7.94, p (= 4.57e-05) < 0.05). However, based on the growth rate over this experiment, it is estimated that the cost of cultivation required to obtain the same amount of mass is more than seven times higher in JMS compared to conventional Zarrouk medium. Therefore, it is believed that there are limitations to immediate commercialization.

ecology↗