Fig. 1. Sharing status of landfill industrial waste.
Fig. 2. Results of moisture and LOI (%).
Table 1. Classification of Samples in the study
Table 2. Current Status of Inorganic Waste Management by the All-baro System (2015)
Table 3. XRF Analysis Result of Industrial Thermal Treatment Residues (%)
Table 4. Results of Heavy Metal Leaching and Contents Analysis Reference Review
Table 5. Estimation of Landfill Reduction Potential
Table 6. Review on Recyclability of Inorganic Wastes by Evaluation Criteria
References
- Park, S. W., "Enforcement of the fundamental law of resource circulation and waste management : the EU's resource efficiency policy trend", J of Korea Society of Waste Management, 34(3), pp. 215-223. (2017). https://doi.org/10.9786/kswm.2017.34.3.215
- Park, S. W., "Disposal of municipal soild waste and energy recovery from incinerated waste: focus on OECD countries", J of Korea Society of Waste Management, 34(1), pp. 1-12. (2017). https://doi.org/10.9786/kswm.2017.34.1.1
- Ministry of environment, Status of waste generation and disposal in korea (2015).
- All-baro system, http://www.allbaro.or.kr, (2016).
- Park, S. O., Um, N. I., Kim, W. I., Choi, H. H., Yoon, C. W., Kim, T. H., Kang, Y. Y., Jeon, T. W., and Shin, S. K., "A study on copper and copper alloy characteristics of waste generated in smelting process", J of Korea Society of Waste Management, 33(3), pp. 285-293. (2016). https://doi.org/10.9786/kswm.2016.33.3.285
- Kim, W. I., Jeong, M. J., Jeong, Y. W., Cho, N. H., Kim, Y. J., Kim, M. J., Jeon, T. W., and Shin, S. K., "Study on management of industrial waste for alternative resource of natural materials(III)", National Institute of environmental Research, pp. 1-39. (2015).
- Park, J. S., "Physico-chemical characteristics of municipal solid waste generated from T city and leaching characteristics of the incineration ash", J. of KORRA, 18(2), pp. 84-92. (2010).
- Park, D. W., Choi, H. N., Woo, N. C., Kim, H. J., and Chung, D., "Evaluation of leaching potential of heavy metals from bottom ashes generated in coal-fired powerplants in korea", J. Soil & Groundwater Env., 18(7), pp. 32-40. (2013). https://doi.org/10.7857/JSGE.2013.18.7.032
- Maeng, J. H., Kim, T. Y., and Suh, D. H., "Minimizing environmental impact in accordance with the thermal power plant ash management", Korea Environment Institute, pp. 1-216. (2014).
- Rhee, S. H., and Yoon, H. H., "Study on physicochemical property and extraction characteristics of spent foundry sands", J of Korea Society of Waste Management, 21(8), pp. 851-858. (2004).
- Choi, S. W., Kim, V., Chang, W. S., and Kim, E. Y., "The Present Situation of Production and Utilization of Steel Slag in Korea and Other Countries", J of the Korea Concrete Institute, 19(6), pp. 28-33. (2007).
- Kim, Y. J., and Chung, M. H., "Study on the reuse and recycling of the used foundry sands", J of KORRA, 18(4), pp. 38-44. (2010).
- Lee, W. C., Shin, D. C., and Dong, J. I., "Investigation of characteristics of incinerator bottom ash and assessment for recycle due to the change of MSW composition", Applied Chemistry for Engineering, 25(1), pp. 103-106. (2014). https://doi.org/10.14478/ace.2014.1007
- Gorai, B. et al., "Characteristics and utilisation of copper slag-a review", Resources, Conservation and Recycling, 39(4), pp. 299-313. (2003). https://doi.org/10.1016/S0921-3449(02)00171-4
- Jeong, S. K., Kim, W. I., Shin, S. K., Kang, Y. Y., Yeon, J. M., Kim, M. S., Cho, Y. A., Kim, N., and Oh, G. J., "Study on Leaching Behavior on Dust Produced from Metal Manufacturing Processes", J of Korea Society of Waste Management, 29(7), pp. 642-649. (2012).
- Lee, S. H., "Study on tne environmental hazard of waste foundry by mold type and proper management plan", Korea Institute of Industrial Technology, pp. 1-148. (1997).
- Rhee, S. W., "Stabilization of spent foundry sand to recycle as auxiliary material in pavement subbase", J of Korea Society of Waste Management, 31(6), pp. 646-653. (2014). https://doi.org/10.9786/kswm.2014.31.6.646