Chemistry Learning Material Solution Mixture Separation and Magnetic Separation
DOI:
10.56566/ijses.v2i1.46Downloads
Abstract
In everyday life, a solution needs to be separated because the particles of solids that are not needed must be separated so they don't interfere with the solution or when taken or used they don't taste bad. Simple separation that can be done is separation using filter paper. Filter paper is a tool used to filter a mixture in the form of a solution through the pores of the filter paper which will leave residual solid particles on the filter paper. Meanwhile, magnetic separation is usually carried out in landfills (TPA) to separate metal, steel and iron objects from other objects besides that. Therefore, a simple experiment was carried out using simple tools, namely filter paper and magnets using simple materials, namely turmeric and paper clips as science learning. The purpose of the experiment was so that students could better understand the separation material
Keywords:
Magnetic; Mixed solutions; Separation of mixturesReferences
Abubakar, A., & Haque, M. (2020). Preparation of medicinal plants: Basic extraction and fractionation procedures for experimental purposes. Journal of Pharmacy And Bioallied Sciences, 12(1), 1. https://doi.org/10.4103/jpbs.JPBS_175_19
Bopp, S. K., Kienzler, A., Richarz, A.-N., van der Linden, S. C., Paini, A., Parissis, N., & Worth, A. P. (2019). Regulatory assessment and risk management of chemical mixtures: challenges and ways forward. Critical Reviews in Toxicology, 49(2), 174–189. https://doi.org/10.1080/10408444.2019.1579169
Chen, K.-J., Madden, D. G., Mukherjee, S., Pham, T., Forrest, K. A., Kumar, A., Space, B., Kong, J., Zhang, Q.-Y., & Zaworotko, M. J. (2019). Synergistic sorbent separation for one-step ethylene purification from a four-component mixture. Science, 366(6462), 241–246. https://doi.org/10.1126/science.aax8666
Drakvik, E., Altenburger, R., Aoki, Y., Backhaus, T., Bahadori, T., Barouki, R., Brack, W., Cronin, M. T. D., Demeneix, B., Hougaard Bennekou, S., van Klaveren, J., Kneuer, C., Kolossa-Gehring, M., Lebret, E., Posthuma, L., Reiber, L., Rider, C., Rüegg, J., Testa, G., … Bergman, Å. (2020). Statement on advancing the assessment of chemical mixtures and their risks for human health and the environment. Environment International, 134, 105267. https://doi.org/10.1016/j.envint.2019.105267
Fardhilah, N. (2020). Memahami Unsur, Senyawa, dan Campuran. Alprin.
Kochemirovsky, V., Kochemirovskaia, S., Malygin, M., Kuzmin, A., Novomlinsky, M., Fogel, A., & Logunov, L. (2019). Low-Frequency Magnetic Scanning Device and Algorithm for Determining the Magnetic and Non-Magnetic Fractions of Moving Metallurgical Raw Materials. Applied Sciences, 9(10), 2001. https://doi.org/10.3390/app9102001
Liu, Y., Zhou, X., You, Z., Ma, B., & Gong, F. (2019). Determining Aggregate Grain Size Using Discrete-Element Models of Sieve Analysis. International Journal of Geomechanics, 19(4). https://doi.org/10.1061/(ASCE)GM.1943-5622.0001376
Martin, O., Scholze, M., Ermler, S., McPhie, J., Bopp, S. K., Kienzler, A., Parissis, N., & Kortenkamp, A. (2021). Ten years of research on synergisms and antagonisms in chemical mixtures: A systematic review and quantitative reappraisal of mixture studies. Environment International, 146, 106206. https://doi.org/10.1016/j.envint.2020.106206
Prume, J. A., Gorka, F., & Löder, M. G. J. (2021). From sieve to microscope: An efficient technique for sample transfer in the process of microplastics’ quantification. MethodsX, 8, 101341. https://doi.org/10.1016/j.mex.2021.101341
Raza, W., Lee, J., Raza, N., Luo, Y., Kim, K.-H., & Yang, J. (2019). Removal of phenolic compounds from industrial waste water based on membrane-based technologies. Journal of Industrial and Engineering Chemistry, 71, 1–18. https://doi.org/10.1016/j.jiec.2018.11.024
Sun, S., Lü, L., Yang, A., Wei, S., & Shen, W. (2019). Extractive distillation: Advances in conceptual design, solvent selection, and separation strategies. Chinese Journal of Chemical Engineering, 27(6), 1247–1256. https://doi.org/10.1016/j.cjche.2018.08.018
Susilawati, Doyan, A., Al-Qoyyim, T. M., Ap’aludin, Maemum, P. J., Ristanti, C. I., & Ariani, B. I. (2023). Synthesis of Barium M-Hexaferrite Using Co-precipitation Method with Zn Doping Based on Natural Iron Sand at Tebing Beach, North Lombok as Microwave Absorbent Material. Jurnal Penelitian Pendidikan IPA, 9(1), 498–503. https://doi.org/10.29303/jppipa.v9i1.2935
Susilawati, S., Doyan, A., & Muliyadi, L. (2020). Synthesis of M-Hexaferrites Material Based on Natural Iron Sand with Metal Co Doping Using the Coprecipitation Method. Jurnal Penelitian Pendidikan IPA, 7(1), 1–4. https://doi.org/10.29303/jppipa.v7i1.461

