Abbas, R., Shehata, N., Mohamed, E. A., Salah, H., & Abdelzaher, M. (2021). Environmentalsafe disposal of cement kiln dust for the production of geopolymers. Egyptian Journal of Chemistry, 64(12), 7529-7537.
Agamuthu, P., & Chitra, S. (2009). Solidification/stabilization disposal of medical waste incinerator flyash using cement. Malaysian Journal of Science, 28(3), 241-255.
Akyıldız, A., Köse, E. T., & Yıldız, A. (2017). Compressive strength and heavy metal leachin of concrete containing medical waste incineration ash. Construction and Building Materials, 138, 326-332.
Al-Kindi, G. Y. (2019). Evaluation the solidification/stabilization of heavy metals by Portland cement. Journal of Ecological Engineering, 20(3).
Al-Akhras, N. M., Al-Ghazawi, Z. D., & Al-Harafshah, Z. D. (2011, May). Stabilisation of medical waste ash in mortar mixtures. In Proceedings of the Institution of Civil Engineers-Waste and Resource Management (Vol. 164, No. 2, pp. 117-124). ICE Publishing.
Anastasiadou, K., Christopoulos, K., Mousios, E., & Gidarakos, E. (2012). Solidification/stabilization of fly and bottom ash from medical waste incineration facility. Journal of hazardous materials, 207, 165-170.
Bakkali, M. E., Bahri, M., Gmouh, S., Jaddi, H., Bakkali, M., Laglaoui, A., & Mzibri, M. E. (2013). Characterization of bottom ash from two hospital waste incinerators in Rabat, Morocco. Waste Management & Research, 31(12), 1228-1236.
Ghazali, E., Johari, M. A. M., Fauzi, M. A., & Nor, N. M. (2022). An overview of characterisation, utilisation, and leachate analysis of clinical waste incineration ash. International Journal of Environmental Research, 16(5), 69.
Gören, S. (2011). Heavy metal analysis and stabilization of medical waste incineration ash. Asian Journal of Chemistry, 23(8), 3569.
Hassan, M., Zhao, Y., & Xie, B. (2016). Employing TiO2 photocatalysis to deal with landfill leachate: Current status and development. Chemical Engineering Journal, 285, 264-275.
Hu, L., Zeng, G., Chen, G., Dong, H., Liu, Y., Wan, J., ... & Yu, Z. (2016). Treatment of landfill leachate using immobilized Phanerochaete chrysosporium loaded with nitrogen-doped TiO2 nanoparticles. Journal of hazardous materials, 301, 106-118.
Komilis, D., Katsafaros, N., & Vassilopoulos, P. (2011). Hazardous medical waste generation in Greece: case studies from medical facilities in Attica and from a small insular hospital. Waste Management & Research, 29(8), 807-814.
Lawi, D. J., Whaab, W. S. A., & Abojassim, A. A. (2023). Health risks from heavy metal for medical toothpastes derived from herbal in Iraqi pharmacies. Annals of Biology 39 (1), 102-107.
Lawi, D. J., & Abojassim, A. A. (2022). Evaluation of Zn, Fe, and Pb Levels in Medicinal Herbs of Iraqi pharmacies. Chemija, 33(3).
Lombardi, F., Mangialardi, T., Piga, L., & Sirini, P. (1998). Mechanical and leaching properties of cement solidified hospital solid waste incinerator fly ash. Waste Management, 18(2),99-106.
Prajati, G., & Padmi, T. (2017, December). Projection of big cities waste management and cost based on economic and demographic factors in Indonesia. IOP Conference Series: Earth and Environmental Science (Vol. 97, No. 1, p. 012014). IOP Publishing.
Prodani, A. (2014). INSTITUTE FOR WATER EDUCATION (Doctoral dissertation, Ghent University).
Rajor, A., Xaxa, M., & Mehta, R. (2012). An overview on characterization, utilization and leachate analysis of biomedical waste incinerator ash. Journal of environmental management, 108, 36-41.
Ridha, A. A., Kadhim, L. A., & Hussain, B. A. (2018). Treatment of Radiological Medical Waste Using Concrete Cubic Molds. American Journal of Nanosciences, 4(3), 35-39.
Rozumová, L., Motyka, O., Čabanová, K., & Seidlerová, J. (2015). Stabilization of waste bottom ash generated from hazardous waste incinerators. Journal of Environmental Chemical Engineering, 3(1), 1-9.
Sawalem, M., Selic, E., & Herbell, J. D. (2009). Hospital waste management in Libya: A case study. Waste management, 29(4), 1370-1375.
Shih, P. H., Chang, J. E., & Chiang, L. C. (2003). Replacement of raw mix in cement production by municipal solid waste incineration ash. Cement and Concrete Research, 33(11),1831-1836.
Sobiecka, E., Obraniak, A., & Antizar-Ladislao, B. (2014). Influence of mixture ratio and pH to solidification/stabilization process of hospital solid waste incineration ash in Portland cement. Chemosphere, 111, 18-23.
Suryawan, I. W. K., Helmy, Q., & Notodarmojo, S. (2018, January). Textile wastewater treatment: colour and COD removal of reactive black-5 by ozonation. IOP conference series: earth and environmental science (Vol. 106, p. 012102). IOP Publishing.
Suryawan, I., Prajati, G., & Afifah, A. S. (2019, June). Bottom and fly ash treatment of medical waste incinerator from community health centres with solidification/stabilization. In AIP Conference Proceedings (Vol. 2114, No. 1). AIP Publishing.
Suryawan, I. (2014). Evaluasi Pengelolaan Limbah Padat B3 Di Fasilitas Incinerator Untuk Puskesmas Kota Surabaya. Surabaya: Institut Teknologi Sepuluh Nopember.
Suryawan, I. W. K. (2018). Fitoremidiasi COD, fosfat, dan ammonia air limbah domestik bersalinitas dengan eceng gondok (Eichhornia crassipes). Jurnal Riset Kajian Teknologi Dan Lingkungan, 1(2), 95-100.
Vaičienė, M., & Simanavičius, E. (2022). The effect of municipal solid waste incineration ash on the properties and durability of cement concrete. Materials, 15(13), 4486.
Woolley, G. R., Wainwright, P. J., & Goumans, J. J. J. M. (2001). Science and engineering of recycling for environmental protection: an overview of the WASCON 2000 Conference. Waste Management, 21(3), 211-212.
Xie, Y., & Zhu, J. (2012). The detoxification of medical waste incineration fly ash using self- propagating reaction. Procedia Environmental Sciences, 16, 222-228.
Yakubu, Y., Zhou, J., Ping, D., Shu, Z., & Chen, Y. (2018). Effects of pH dynamics on solidification/stabilization of municipal solid waste incineration fly ash. Journal of environmental management, 207, 243-248.