Analysis of Ca2+ and Fe2+ Ions in Ngade Water and Tolire Lake Water Ternate, North Maluku
DOI:
https://doi.org/10.33387/tjp.v11i2.5091Keywords:
Ca2 , Fe2 , Ion chromatography, Ngade Lake, Tolire LakeAbstract
This study aims to obtain optimal and valid conditions for the analysis of inorganic ions Ca2+ and heavy metal Fe2+ and the comparison between inorganic ions Ca2+ and heavy metal ions Fe2+ contained in the water of Lake Ngade and Lake Tolire, using ion chromatography and UV-Vis spectrophotometry. This type of research is experimental laboratory. Based on the results of the research, the concentrations obtained from Ca2+ ions and Ca2+ ions are for the highest concentration of Ca2+ ions in Lake Ngade water at 1.259 ppm, Big Tolire Lake water at 3.410 ppm and Small Tolire Lake water at 6.154 ppm. Meanwhile, the highest concentration of Fe2+ ions is in Lake Ngade water at 5.606 ppm, Big Tolire Lake water at 5.500 ppm, and Small Tolire Lake water at 5.379 ppm.
References
Abdel-Lateef, M. A., Almahri, A., Alzahrani, E., Pashameah, R. A., Abu-Hassan, A. A., & El Hamd, M. A. (2022). Sustainable PVP-Capped Silver Nanoparticles as a Free-Standing Nanozyme Sensor for Visual and Spectrophotometric Detection of Hg2+ in Water Samples: A Green Analytical Method. Chemosensors, 10(9), 358. https://doi.org/10.3390/chemosensors10090358
Amin, M. (2020). Penentuan Secara Serempak Kadar Minor Anion (F-, Cl-, NO2-, Br-, NO3-, SO42–dan PO43-) dalam Sampel Air Botol Kemasan dengan Teknik Kromatografi Ion Kinerja Tinggi. Techno: Jurnal Penelitian, 9(1), 287-296. https://doi.org/10.33387/tjp.v9i1.1744
Acikara, Ö. B. (2013). Ion-exchange chromatography and its applications. Column chromatography, 10, 55744. https://doi.org/10.5772/55744
Coskun, O. (2016). Separation Tecniques: Chromatography. Northern Clinics of Istanbul, 3(2), 156–160. https://doi.org/10.14744/nci.2016.32757
Eisele, T. C., & Gabby, K. L. (2014). Review of Reductive Leaching of Iron By Anaerobic Bacteria. Mineral Processing and Extractive Metallurgy Review, 35(2), 75–105. https://doi.org/10.1080/08827508.2012.703627
Fatimah, Z., Susilawati, & Doyan, A. (2022). The Process of Making BaM (BaFe12O19) Samples Based on Natural Iron Sand Doped With Metal (Co-Cu-Zn) Using The Coprecipitation Method. Journal of Physics: Conference Series, 2165(1). https://doi.org/10.1088/1742-6596/2165/1/012007
Flanagan, K., Blecken, G. T., Osterlund, H., Nordqvist, K., & Viklander, M. (2021). Contamination of Urban Stormwater Pond Sediments: A Study of 259 Legacy and Contemporary Organic Substances. Environmental Science and Technology, 55(5), 3009–3020. https://doi.org/10.1021/acs.est.0c07782
Gierl, L., Horn, H., & Wagner, M. (2022). Impact of Fe2+ and Shear Stress on the Development and Mesoscopic Structure of Biofilmsâ€â€A Bacillus subtilis Case Study. Microorganisms, 10(11), 2234. https://doi.org/10.3390/microorganisms10112234
Kyomugasho, C., Gwala, S., Christiaens, S., Kermani, Z. J., Van Loey, A. M., Grauwet, T., & Hendrickx, M. E. (2017). Pectin Nanostructure Influences Pectin-Cation Interactions and in Vitro-Bioaccessibility of Ca2+, Zn2+, Fe2+ and Mg2+-ions in Model Systems. Food Hydrocolloids, 62, 299-310. https://doi.org/10.1016/j.foodhyd.2016.07.030
Ma, M., Liu, S., Su, M., Wang, C., Ying, Z., Lin, Y., & Yang, W. (2022). Corrigendum to" Spatial Distribution and Potential Sources of Microplastics in The Songhua River Flowing Through Urban Centers in Northeast China" [Environ. Pollut. 292 (2022) 118384]. Environmental Pollution (Barking, Essex: 1987), 301, 118928. https://doi.org/10.1016/j.envpol.2022.118928
Maskan, M. (2006). Production of Pomegranate (Punica Granatum L.) Juice Concentrate by Various Heating Methods: Colour Degradation and Kinetics. Journal of Food Engineering, 72(3), 218–224. https://doi.org/10.1016/j.jfoodeng.2004.11.012
Mu, Y., Jia, F., Ai, Z., & Zhang, L. (2017). Iron Oxide Shell Mediated Environmental Remediation Properties of Nano Zero-Valent Iron. Environmental Science: Nano, 4(1), 27–45. https://doi.org/10.1039/C6EN00398B
Ngteni, R., Hossain, M. S., Kadir, M. O. A., Asis, A. J., & Tajudin, Z. (2020). Kinetics and Isotherm Modeling for The Treatment of Rubber Processing Euent using Iron (II) Sulphate Waste as A Coagulant. Water (Switzerland), 12(6). https://doi.org/10.3390/W12061747
Ondigo, D. A., Tshentu, Z. R., & Torto, N. (2013). Electrospun Nanofiber Based Colorimetric Probe for Rapid Detection of Fe2+ in Water. Analytica Chimica Acta, 804, 228–234. https://doi.org/10.1016/j.aca.2013.09.051
Onyelowe, K. C., Kontoni, D. P. N., Ebid, A. M., Dabbaghi, F., Soleymani, A., Jahangir, H., & Nehdi, M. L. (2022). Multi-objective Optimization of Sustainable Concrete Containing Fly Ash Based on Environmental and Mechanical Considerations. Buildings, 12(7), 948. https://doi.org/10.3390/buildings12070948
Paper, C. (2019). Implementation of Freundlich Equation Absorption of Calcium and Magnesium Ions on Saturated Salt Solution. 2018(2018), 242–248. https://doi.org/10.11594/nstp.2019.0232
Pretsch, E., Bühlmann, P., Badertscher, M., Pretsch, E., Bühlmann, P., & Badertscher, M. (2020). UV/Vis Spectroscopy. Structure Determination of Organic Compounds: Tables of Spectral Data, 445-464. https://doi.org/10.1007/978-3-662-62439-5_9
Rahmani, A. R., Jorfi, S., Asgari, G., Zamani, F., Almasi, H., & Masoumi, Z. (2018). A Comparative Study on The Removal of Pentachlorophenol Using Copper-Impregnated Pumice and Zeolite. Journal of Environmental Chemical Engineering, 6(2), 3342-3348. https://doi.org/10.1016/j.jece.2018.05.014
Setyawati, A., Mardyaningrum, L. W., & Damayanti, T. (2020). Formulation, physical stability test and anti-bacterial test of nanoemulsion from water and n-hexane extract of Cinnamomum burmanii. In AIP Conference Proceedings (Vol. 2229, No. 1, p. 030031). AIP Publishing LLC. https://doi.org/10.1063/5.0002799
Siddiqui, J., Modupe, O., Vatandoust, A., & Diosady, L. L. (2022). Predicting the Stability of Double Fortified Salt by Determining the Coating Quality of the Encapsulated Iron Premix. Journal of Food Quality, 2022. https://doi.org/10.1155/2022/7812022
Sonia, S. G. R., Fachri, B. A., & Palupi, B. (2022). Extraction of Antioxidant Compounds from Sargassum sp . Using Water as A Solvent and Ultrasound Assisted Extraction Method as A Derivation of Green Chemistry Principles. Journal of Biobased Chemicals, 2(2), 31 – 42. https://doi.org/10.19184/jobc.v2i1.118
Sriram, G., Bhat, M. P., Patil, P., Uthappa, U. T., Jung, H. Y., Altalhi, T., Kumeria, T., Aminabhavi, T. M., Pai, R. K., Madhuprasad, & Kurkuri, M. D. (2017). Paper-based Microfluidic Analytical Devices for Colorimetric Detection of Toxic Ions: A Review. Trends in Analytical Chemistry, 93(2017), 212–227. https://doi.org/10.1016/j.trac.2017.06.005
Tiwow, V. M., Hafid, I. W., & Supriadi, S. (2016). Analisis Kadar Kalsium (Ca) dan Fosforus (P) pada Limbah Sisik dan Sirip Ikan Mujair (Oreochromis mossambicus) dari Danau Lindu Sulawesi Tengah. Jurnal Akademika Kimia, 5(4), 159-165. https://doi.org/10.22487/j24775185.2016.v5.i4.8064
Tran, H. N., You, S. J., Hosseini-Bandegharaei, A., & Chao, H. P. (2017). Mistakes and Inconsistencies Regarding Adsorption of Contaminants from Aqueous Solutions: A Critical Review. Water Research, 120, 88–116. https://doi.org/10.1016/j.watres.2017.04.014
Visschedijk, M., Hendriks, R., & Nuyts, K. (2005). How to set up and manage quality control and quality assurance. Quality Assurance Journal, 9(2), 95–107. https://doi.org/10.1002/qaj.325
Wang, C., Lin, X., Schäfer, C. G., Hirsemann, S., & Ge, J. (2021). Spray Synthesis of Photonic Crystal Based Automotive Coatings with Bright and Angular-Dependent Structural Colors. Advanced Functional Materials, 31(9), 1–11. https://doi.org/10.1002/adfm.202008601
Zheng, X., Cheng, W., Ji, C., Zhang, J., & Yin, M. (2020). Detection of Metal Ions in Biological Systems: A Review. Reviews in Analytical Chemistry, 39(1), 231–246. https://doi.org/10.1515/revac-2020-0118
Downloads
Additional Files
Published
Issue
Section
License
Techno Jurnal Penelitian with ISSN(e): 2580-7129, is published by the Research and Community Service, Khairun University (LPPM Unkhair). Techno Jurnal Penelitian has been accredited The Director General of Research and Development Strengthening, Ministry of Research, Technology, and Higher Education, Republic of Indonesia (Kemenristekdikti RI) decision Number 36/E/KPT/2019 which is valid for five years since enacted on 26 September 2019.

Techno Jurnal Penelitian is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.