The contributing of chemistry learning in supporting education for sustainable development: A systematic literature review

Adek Diah Murti, Hernani Hernani

Abstract


This study aimed to examine the contribution of chemistry learning in supporting Education for Sustainable Development (ESD) and the types of competencies that can be developed through ESD. The method used is Systematic Literature Review (SLR), which consists of five stages, namely question formulation, locating studies, study selection and evaluation, analysis and synthesis, reporting and using the results. Based on a study of 38 journal articles from International and National Journal, the contribution of chemistry learning in supporting ESD is manifested in the form of integrating ESD concepts into learning models, incorporating ESD concepts in a chemistry learning context, and developing ESD concepts through learning designs and teaching materials. Through the implementation of ESD in chemistry learning, competencies that can be developed are communication, collaboration, problem solving, creative thinking, systems thinking, critical thinking, scientific literacy, sustainable environmental literacy, understanding, motivation, environmental awareness, and sustainable awareness. Chemistry education and ESD have strong link in many aspects of life, so that competencies developed through the implementation of ESD in the learning process will be able to improve the quality of education and environment.

Keywords: A systematic literature review; Contributing of chemistry learning; Education for sustainable development


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Amyyana, A. H., Paristiowati, M., & Kurniadewi, F. (2017). Pirolisis sederhana limbah plastik dan implementasinya sebagai sumber belajar berbasis education for sustainable development (Esd) pada pembelajaran kimia. Jurnal Riset Pendidikan Kimia, 7(1), 38–51.

Aswirna, P., & Ritonga, A. M. (2020). Development of discovery learning - based e-book teaching based On KVISOFT flipbook maker on science liteartion in MAN 2 Padang Pariaman. Hunafa: Jurnal Studia Islamika, 17(2), 47–75.

Blatti, J. L., Garcia, J., Cave, D., Monge, F., Cuccinello, A., Portillo, J., Juarez, B., Chan, E., & Schwebel, F. (2019). Systems thinking in science education and outreach toward a sustainable future. Journal of Chemical Education, 96(12), 2852–2862. https://doi.org/10.1021/acs.jchemed.9b00318

Bramwell-Lalor, S., Kelly, K., Ferguson, T., Hordatt Gentles, C., & Roofe, C. (2020). Project-based learning for environmental sustainability action. Southern African Journal of Environmental Education, 36, 57–72. https://doi.org/10.4314/sajee.v36i1.10

Brundiers, K., Wiek, A., & Redman, C. L. (2010). Real-world learning opportunities in sustainability: From classroom into the real world. International Journal of Sustainability in Higher Education, 11(4), 308–324. https://doi.org/10.1108/14676371011077540

Burmeister, M., & Eilks, I. (2012). An example of learning about plastics and their evaluation as a contribution to Education for Sustainable Development in secondary school chemistry teaching. Chemistry Education Research and Practice, 13(2), 93–102. https://doi.org/10.1039/c1rp90067f

Burmeister, M., & Eilks, I. (2013). An understanding of sustainability and education for sustainable development among German student teachers and trainee teachers of chemistry. Science Education International, 24(2), 167–194.

Burmeister, M., Rauch, F., & Eilks, I. (2012). Education for sustainable development (ESD) and chemistry education. Chemistry Education Research and Practice, 13(2), 59–68. https://doi.org/10.1039/c1rp90060a

Chuliá-Jordán, R., Peña, A. V., & Llinares, M. C. (2022). The press as a resource for promoting sustainability competencies in teacher training: The case of SDG 7. Sustainability (Switzerland), 14(2). https://doi.org/10.3390/su14020857

Constable, D. J. C. (2021). Green and sustainable chemistry – The case for a systems-based, interdisciplinary approach. IScience, 24(12), 103489. https://doi.org/10.1016/j.isci.2021.103489

Denyer, D., & Tranfield, D. (2009). Producing a Systematic Review. In The SAGE Handbook of Organizational Research Methods (pp. 671–689).

Dieni, W. E. F., Hernani, & Kaniawati, I. (2020). Applying the education for sustainable development approach to energy instruction design for encouraging scientific literacy of junior high school students. E-Journal Ups, 4, 1–11.

Eaton, A. C., Delaney, S., & Schultz, M. (2019). Situating sustainable development within secondary chemistry education via systems thinking: A depth study approach. Journal of Chemical Education, 96(12), 2968–2974. https://doi.org/10.1021/acs.jchemed.9b00266

Ekantini, A., & Wilujeng, I. (2018). The development of science student worksheet based on education for environmental sustainable development to enhance scientific literacy. Universal Journal of Educational Research, 6(6), 1339–1347. https://doi.org/10.13189/ujer.2018.060625

Fauzi, I., & Suryadi, D. (2020). The analysis of students’ learning obstacles on the fraction addition material for five graders of elementary schools. Al Ibtida: Jurnal Pendidikan Guru MI, 7(1), 33. https://doi.org/10.24235/al.ibtida.snj.v7i1.6020

Fibonacci, A., Azizati, Z., & Wahyudi, T. (2020). Development of education for sustainable development (esd) based chemsdro mobile based learning for indonesian junior high school: Rate of reaction. JTK (Jurnal Tadris Kimiya), 5(1), 26–34. https://doi.org/10.15575/jtk.v5i1.5908

Ginzburg, A. L., Check, C. E., Hovekamp, D. P., Sillin, A. N., Brett, J., Eshelman, H., & Hutchison, J. E. (2019). Experiential Learning to Promote Systems Thinking in Chemistry: Evaluating and designing sustainable products in a polymer immersion lab. Journal of Chemical Education, 96(12), 2863–2871. https://doi.org/10.1021/acs.jchemed.9b00336

Günter, T., Akkuzu, N., & Alpat, Ş. (2017). Understanding ‘green chemistry’ and ‘sustainability’: an example of problem-based learning (PBL)*. Research in Science and Technological Education, 35(4), 500–520. https://doi.org/10.1080/02635143.2017.1353964

Han, Y., Chong, W. K., & Li, D. (2020). A systematic literature review of the capabilities and performance metrics of supply chain resilience. International Journal of Production Research, 0(0), 4541–4566. https://doi.org/10.1080/00207543.2020.1785034

Hasibuan, N. A. P., Paristiowati, M., & Erdawati, E. (2021). Sustainability development-based agroindustry in chemistry learning to improve the preservice chemistry teachers’ competence. Tadris: Jurnal Keguruan dan Ilmu Tarbiyah, 6(1), 125–138. https://doi.org/10.24042/tadris.v6i1.8346

Herranen, J., Yavuzkaya, M., & Sjöström, J. (2021). Embedding chemistry education into environmental and sustainability education: Development of a didaktik model based on an eco-reflexive approach. Sustainability (Switzerland), 13(4), 1–15. https://doi.org/10.3390/su13041746

Holme, T. (2020). Using the chemistry of pharmaceuticals to introduce sustainable chemistry and systems thinking in general chemistry. Sustainable Chemistry and Pharmacy, 16(1). https://doi.org/10.1016/j.scp.2020.100234

Hugerat, M. (2020). Incorporating sustainability into chemistry education by teaching through project-based learning [Chapter]. ACS Symposium Series, 1344, 79–96. https://doi.org/10.1021/bk-2020-1344.ch007

Husamah, H., Suwono, H., Nur, H., & Dharmawan, A. (2022). Sustainable development research in Eurasia Journal of Mathematics, Science and Technology Education: A systematic literature review. Eurasia Journal of Mathematics, Science and Technology Education, 18(5). https://doi.org/10.29333/ejmste/11965

Jegstad, K. M., & Sinnes, A. T. (2015). Chemistry Teaching for the Future: A model for secondary chemistry education for sustainable development. International Journal of Science Education, 37(4), 655–683. https://doi.org/10.1080/09500693.2014.1003988

Juntunen, M., & Aksela, M. (2013). Life-Cycle Thinking in Inquiry-Based Sustainability Education – Effects on Students’ Attitudes towards Chemistry and Environmental Literacy Življenjski krog izdelkov in učenje z raziskovanjem za trajnostni razvoj – vpliv na odnos učencev do kemije in oko. C.E.P.S Journal, 3, 157–180.

Klucevsek, K. (2017). The intersection of information and science literacy. Communications in Information Literacy, 11(2), 354–365. https://doi.org/10.15760/comminfolit.2017.11.2.7

Koutalidi, S., & Scoullos, M. (2016). Biogeochemical cycles for combining chemical knowledge and ESD issues in Greek secondary schools part I: Designing the didactic materials. Chemistry Education Research and Practice, 17(1), 10–23. https://doi.org/10.1039/c5rp00151j

Le, H., Janssen, J., & Wubbels, T. (2018). Collaborative learning practices: teacher and student perceived obstacles to effective student collaboration. Cambridge Journal of Education, 48(1), 103–122. https://doi.org/10.1080/0305764X.2016.1259389

Loste, N., Chinarro, D., Gomez, M., Roldán, E., & Giner, B. (2020). Assessing awareness of green chemistry as a tool for advancing sustainability. Journal of Cleaner Production, 256. https://doi.org/10.1016/j.jclepro.2020.120392

MacKellar, J. J., Constable, D. J. C., Kirchhoff, M. M., Hutchison, J. E., & Beckman, E. (2020). Toward a green and sustainable chemistry education road map. Journal of Chemical Education, 97(8), 2104–2113. https://doi.org/10.1021/acs.jchemed.0c00288

Mahaffy, P. G., Martin, B. E., Kirchhoff, M., McKenzie, L., Holme, T., Versprille, A., & Towns, M. (2014). Infusing sustainability science literacy through chemistry education: Climate science as a rich context for learning chemistry. ACS Sustainable Chemistry and Engineering, 2(11), 2488–2494. https://doi.org/10.1021/sc500415k

Mahaffy, P. G., Matlin, S. A., Whalen, J. M., & Holme, T. A. (2019). Integrating the Molecular Basis of Sustainability into General Chemistry through Systems Thinking. Journal of Chemical Education, 96(12), 2730–2741. https://doi.org/10.1021/acs.jchemed.9b00390

Michalopoulou, E., Shallcross, D. E., Atkins, E., Tierney, A., Norman, N. C., Preist, C., O’Doherty, S., Saunders, R., Birkett, A., Willmore, C., & Ninos, I. (2019). The end of simple problems: repositioning chemistry in higher education and society using a systems thinking approach and the united nations’ sustainable development goals as a framework. Journal of Chemical Education, 96(12), 2825–2835. https://doi.org/10.1021/acs.jchemed.9b00270

Mkumbachi, R. L., Astina, I. K., & Handoyo, B. (2020). Environmental awareness and pro-environmental behavior: A case of university students in Malang city. Jurnal Pendidikan Geografi, 25(2), 161–169. https://doi.org/10.17977/um017v25i22020p161

Nurfadilah, S., & Siswanto, J. (2020). Analisis kemampuan berpikir kreatif pada konsep polimer dengan pendekatan STEAM bermuatan ESD Siswa SMA Negeri 1 Bantarbolang. Media Penelitian Pendidikan : Jurnal Penelitian Dalam Bidang Pendidikan dan Pengajaran, 14(1), 45–51. https://doi.org/10.26877/mpp.v14i1.5543

Paristiowati, M., Rahmawati, Y., Fitriani, E., Satrio, J. A., & Hasibuan, N. A. P. (2022). Developing preservice chemistry teachers’ engagement with sustainability education through an online, project-based learning summer course program. Sustainability (Switzerland), 14(3). https://doi.org/10.3390/su14031783

Perkasa, M., Agrippina, & Wiraningtyas. (2017). Pembelajaran kimia berorientasi sustainable development untuk meningkatkan kesadaran siswa terhadap lingkungan. Jurnal Sainsmat, 6(2), 63–72.

Perkasa, M., & Aznam, N. (2016). Pengembangan SSP kimia berbasis pendidikan berkelanjutan untuk meningkatkan literasi kimia dan kesadaran terhadap lingkungan. Jurnal Inovasi Pendidikan IPA, 2(1), 46. https://doi.org/10.21831/jipi.v2i1.10269

Permanasari, A. (2016). STEM education: Inovasi dalam pembelajaran sains [innovation in science learning]. Prosiding Seminar Nasional Pendidikan Sains VI, 23–34.

Pernaa, J., Kämppi, V., & Aksela, M. (2022). Supporting the relevance of chemistry education through sustainable ionic liquids context : A research-based design approach. Sustainability, 14, 1–18.

Pike, L., Shannon, T., Lawrimore, K., McGee, A., Taylor, M., & Lamoreaux, G. (2003). Science education and sustainability initiatives: A campus recycling case study shows the importance of opportunity. International Journal of Sustainability in Higher Education, 4(3), 218–229. https://doi.org/10.1108/14676370310485410

Pullen, S., & Brinkert, K. (2014). SolEn for a Sustainable Future: Developing and Teaching a Multidisciplinary Course on Solar Energy to Further Sustainable Education in Chemistry. Journal of Chemical Education, 91(10), 1569–1573. https://doi.org/10.1021/ed400345m

Schultz, M. (2013). Embedding environmental sustainability in the undergraduate chemistry curriculum: A case study. Journal of Learning Design, 6(1), 20–33.

Svanström, M., Lozano-García, F. J., & Rowe, D. (2008). Learning outcomes for sustainable development in higher education. International Journal of Sustainability in Higher Education, 9(3), 339–351. https://doi.org/10.1108/14676370810885925

Timmer, B. J. J., Schaufelberger, F., Hammarberg, D., Franzén, J., Ramström, O., & Dinér, P. (2018). Simple and effective integration of green chemistry and sustainability education into an existing organic chemistry course. Journal of Chemical Education, 95(8), 1301–1306. https://doi.org/10.1021/acs.jchemed.7b00720

UNESCO. (2005). Guidelines and recommendations for reorienting teacher education to address sustainability. Education for Sustainable Development in Action, 2, 44.

UNESCO. (2009). Review of contexts and structures for education for sustainable development. Division for the Coordination of United Nations Priorities in Education.

UNESCO. (2012). Education for sustainable development. United Nations Educational, Scientific and Cultural Organization.

UNESCO. (2017). Education for development goals learning objectives.

UNESCO. (2018). Issues and trends in Education for Sustainable Development. United Nations Educational, Scientific and Cultural Organization.

Wheeler, S. F., & Harvey, D. J. (2000). Negative ion mass spectrometry of sialylated carbohydrates: Discrimination of N-acetylneuraminic acid linkages by MALDI-TOF and ESI-TOF mass spectrometry. Analytical Chemistry, 72(20), 5027–5039. https://doi.org/10.1021/ac000436x

Wissinger, J. E., Visa, A., Saha, B. B., Matlin, S. A., Mahaffy, P. G., Kümmerer, K., & Cornell, S. (2021). Integrating sustainability into learning in chemistry. Journal of Chemical Education, 98(4), 1061–1063. https://doi.org/10.1021/acs.jchemed.1c00284

Wolff, L. A., Sjöblom, P., Hofman-Bergholm, M., & Palmberg, I. (2017). High performance education fails in sustainability? —a reflection on finnish primary teacher education. Education Sciences, 7(1). https://doi.org/10.3390/educsci7010032

Xiao, Y., & Watson, M. (2019). Guidance on conducting a systematic literature review. Journal of Planning Education and Research, 39(1), 93–112. https://doi.org/10.1177/0739456X17723971

Zidny, R., & Eilks, I. (2020). Integrating perspectives from indigenous knowledge and Western science in secondary and higher chemistry learning to contribute to sustainability education. Sustainable Chemistry and Pharmacy, 16(February), 100229. https://doi.org/10.1016/j.scp.2020.100229

Zidny, R., & Eilks, I. (2022). Learning about pesticide use adapted from ethnoscience as a contribution to green and sustainable chemistry education. Education Sciences, 12(4). https://doi.org/10.3390/educsci12040227

Zowada, C. (2018). Innovating undergraduate general chemistry by integrating sustainability-related socio-scientific issues. Action Research and Innovation in Science Education, 1(2), 3–8.

Zuin, V. G., Eilks, I., Elschami, M., & Kümmerer, K. (2021). Education in green chemistry and in sustainable chemistry: Perspectives towards sustainability. Green Chemistry, 23(4), 1594–1608. https://doi.org/10.1039/d0gc03313h




DOI: https://doi.org/10.24114/jpkim.v15i1.41233

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