[48] J Bae, I Seo, J Hyun, Y Park, M Jeong, J Kim, S Kim, S Joo, Y Shin, Y Jung, S Seo, H Kim, C ahn, J Pyung, M Cha, B Choi, W Kim, H Kim and G Yoo, 2026, A spatially rich, temporally coherent soil spectral dataset for soil organic carbon estimation, Scientific Data, 13(1), 230, doi.org/10.1038/s41597-026-06546-3
[47] J Hyun, Y Lee, D Sohn, S Jung, I Cha, and G Yoo, 2025, Evaluation of the climate mitigation potential of digital-only banks and a quantitative analysis of their adaptation co-benefits, Greenhouse Gases: Science and technology
[46] Y Park, Y Kim, J Hyun, C Chenu, and G Yoo, 2025, Vulnerability of soil organic carbon in artificially constructed urban green spaces: Linking soil organic carbon physical fractions, microbial dynamics, and soil properties, Geoderma, 459, 117364, doi.org/10.1016/j.geioderma.2025.117364
[45] C Zo, J Nzarigema, J Ngarambe, S Raj, S Muhammad, G Yoo, and G Yun, 2025, Integrating deep learning into quantile regression models for enhanced building energy benchmarking, Journal of Building Engineering, 113044, doi.org/10.1016/j.jobe.2025.11304
[44] Y Kim, Y Park, J Hyun, I Seo, M Jeong, Y Ok, J Bae, J Jung, and G Yoo, 2025, A field-measured dataset for soil organic carbon stock in South Korean grasslands, Scientific Data, 12(1), 691, doi.org/10.1038/s41597-025-05002-y
[43] J Hyun, A.F. Plante, J Bae, and G Yoo, 2025, Beyond Total C: Integrative Analysis of Carbon Forms in Urban Soils. European Journal of Soil Science, 76(2), e70107, doi.org/10.1111/ejss.70107
[42] J Park, J Lee, Y Ahn, and G Yoo, 2025, A Case Study on Multi-Real-Option-Integrated STO-PF Models for Strengthening Capital Structures in Real Estate Development, Buildings, 15(2), 216, doi.org/10.3390/buildings15020216
[41] M Jeong, J Bae and G Yoo, 2024, Urban roadside greenery as a carbon sink: Systematic assessment considering understory shrubs and soil respiration, Science of The Total Environment, 927, doi.org/10.1016/j.scitotenv.2024.172286
[40] J Hyun and G Yoo, 2024, Modification of the RothC model to evaluate the inconsistent effect of conservation tillage on SOC stock and a suggestion of a national-scale assessment framework, Science of The Total Environment, 907, doi.org/10.1016/j.scitotenv.2023.168010
[39] J Hyun and G Yoo, 2023, Effect of high labile biochar on N2O emission from upland soils: A decision tree analysis and an incubation experiment, Geoderma Regional, doi:10.1016/j.geodrs.2023.e00669
[38] J Hyun, YJ Kim, and G Yoo, 2023, A method for soil quality assessment in the metropolitan greenery: a comprehensive view of ecosystem services and soil functions, MethodsX, doi: 10.1016/j.mex.2023.102102
[37] I Seo, CR Park and G Yoo, 2023, Particulate matter resuspension from simulated urban green floors using a wind tunnel-mounted closed chamber, PeerJ, 11:e14674, doi: 10.7717/peerj.14674
[36] J Hyun, YJ Kim, A Kim, A F. Plante and G Yoo, 2022, Ecosystem services-based soil quality index tailored to the metropolitan environment for soil assessment and management, Science of The Total Environment, 820, 153301, doi: 10.1016/j.scitotenv.2022.153301
[35] C Ruangcharus, SU Kim, G Yoo, EJ Choi, S Kumar, N Kang and CO Hong, 2021, Nitrous oxide emission and sweet potato yield in upland soil: Effects of different type and application rate of composted animal manures, Environmental Pollution, 279, 116892, doi: 10.1016/j.envpol.2021.116892
[34] YJ Kim, J Hyun, SY Yoo and G Yoo, 2021, The role of biochar in alleviating soil drought stress in urban roadside greenery, Geoderma, 404, 115223, doi: 10.1016/j.geoderma.2021.115223
[33] W He, G Yoo and Y Ryu, 2021, Evaluation of effective quantum yields of photosystem II for CO2 leakage monitoring in carbon capture and storage sites, PeerJ, 9:e10652, doi: 10.7717/peerj.10652
[32] YJ Kim and G Yoo, 2021, Suggested key variables for assessment of soil quality in urban roadside tree systems, Journal of Soils and Sediments, 21, 2130-2140, doi: 10.1007/s11368-020-02827-5
[31] SY Yoo, YJ Kim and G Yoo, 2020, Understanding the role of biochar in mitigating soil water stress in simulated urban roadside soil, Science of the Total Environment, 738, 139798, doi: 10.1016/j.scitotenv.2020.139798
[30] DH Seo, WS Han, E Park, J Jeong, YY Oh, HJ Kim, G Yoo, SC Jun and ST Yun, Analyses and numerical evaluation of integrated time-series monitoring datasets including CO2 concentration and fluxes at controlled CO2 release site in South Korea, Journal of Hydrology, 590, 125213, doi: 10.1016/j.jhydrol.2020.125213
[29] S Malghani, G Yoo, A Giesemann, R Well and H Kang, 2020, Combined application of organic manure with urea does not alter the dominant biochemical pathway producing N2O from urea treated soil, Biology and Fertility of Soils, 56, 331-343, doi: 10.1007/s00374-019-01420-4
[28] W He, Y Kim, D Ko, S Yun, S Jun and G Yoo, 2019, Changes in soil N2O and CH4 emissions and related microbial functional groups in an artificial CO2 gassing experiment, Science of the Total Environment, 690, 40-49, doi: 10.1016/j.scitotenv.2019.06.400
[27] YJ Kim, W He and G Yoo, 2019, Suggestions for plant parameters to monitor potential CO 2 leakage from carbon capture and storage (CCS) sites, Greenhouse Gases: Science and Technology, 9(2), 387-396, doi: 10.1002/ghg.1857
[26] W He, G Yoo, M Moonis, Y Kim and X Chen, 2019, Impact assessment of high soil CO2 on plant growth and soil environment: a greenhouse study, PeerJ, 7:e6311, doi: 10.7717/peerj.6311
[25] XY Yang, KH Chang, YJ Kim, J Zhang and G Yoo, 2019, Effects of different biochar amendments on carbon loss and leachate characterization from an agricultural soil, Chemosphere, 226, 625-635, doi: 10.1016/j.chemosphere.2019.03.085
[24] KJ Choi, TH Han, G Yoo, MH Cho and SJ Hwang, 2018, Co-culture Consortium of Scenedesmus dimorphus and Nitrifiers Enhances the Removal of Nitrogen and Phosphorus from Artificial Wastewater, KSCE Journal of Civil Engineering, 22, 3215-3221, doi: 10.1007/s12205-017-0730-7
[23] S Malghani, J Kim, SH Lee, G Yoo and H Kang, 2018, Application of two contrasting rice-residue-based biochars triggered gaseous loss of nitrogen under denitrification-favoring conditions: A short-term study based on acetylene inhibition technique, 127, 112-119, doi: 10.1016/j.apsoil.2018.03.011
[22] G Yoo, YO Lee, TJ Won, JG Hyun and W Ding, 2018, Variable effects of biochar application to soils on nitrification-mediated N2O emissions, Science of the Total Environment, 626, 603-611, doi: 10.1016/j.scitotenv.2018.01.098
[21] YJ Kim, W He, D Ko, H Chung and G Yoo, 2017, Increased N2O emission by inhibited plant growth in the CO2 leaked soil environment: Simulation of CO2 leakage from carbon capture and storage(CCS) site, Science of The Total Environment, 607-608, 1278-1285, doi: 10.1016/j.scitotenv.2017.07.030
[20] D Ko, G Yoo, ST Yun, SC Jun and H Chung, 2017, Bacterial and fungal community composition across the soil depth profiles in a fallow field, Journal of Ecology and Environment, 41, 34, doi: 10.1186/s41610-017-0053-0
[19] Y Lin, W Ding, D Liu, T He, G Yoo and J Yuan, 2017, Wheat straw-derived biochar amendment stimulated N2O emissions from rice paddy soils by regulating amoA genes of ammonia-oxidizing bacteria, Soil Biology and Biochemistry, 113, 89-98, doi: 10.1016/j.soilbio.2017.06.001
[18] J Kim, G Yoo, D Kim, W Ding and H Kang, 2017, Combined application of biochar and slow-release fertilizer reduces methane emission but enhances rice yield by different mechanisms, Applied Soil Ecology, 117-118, 57-62, doi: 10.1016/j.apsoil.2017.05.006
[17] M Moonis, W He, Y Kim and G Yoo, 2017, Effect of potential CO2 leakage from carbon capture and storage sites on soil and leachate chemistry, KSCE Journal of Civil Engineering, 21, 1640-1647, doi: 10.1007/s12205-016-1867-5
[16] G Yoo, H Kim and JY Choi, 2017, Soil Aggregate Dynamics Influenced by Biochar Addition using the C-13 Natural Abundance Method, Soil Science Society of America Journal, 81(3), doi: 10.2136/sssaj2016.09.0313
[15] W He, M Moonis, H Chung and G Yoo, 2016, Effects of high soil CO2 concentrations on seed germination and soil microbial activities, International Journal of Greenhouse Gas Control, 53, 117-126, doi: 10.1016/j.ijggc.2016.07.023
[14] G Yoo, YJ Kim, YO Lee and W Ding, 2016, Investigation of Greenhouse Gas Emissions from the Soil Amended with Rice Straw Biochar, KSCE Journal of Civil Engineering, 20, 2197-2207, doi: 10.1007/s12205-015-0449-2
[13] D Ko, G Yoo, ST Yun and H Chung, 2016, Impacts of CO2 leakage on plants and microorganisms: A review of results from CO2 release experiments and storage sites, Greenhouse Gases: Science and Technology, 6(3), 319-338, doi: 10.1002/ghg.1593
[12] J Chen, H Kim and G Yoo, 2015, Effects of Biochar Addition on CO2 and N2O Emissions following Fertilizer Application to a Cultivated Grassland Soil, PLoS One, 10(5), e0126841, doi: 10.1371/journal.pone.0126841
[11] WX Ding, ZM Chen, HY Yu, JF Luo, GY Yoo, J Xiang, HJ Zhang and JJ Yuan, 2015, Nitrous oxide emission and nitrogen use efficiency in response to nitrophosphate, N-(n-butyl) thiophosphoric triamide and dicyandiamide of a wheat cultivated soil under sub-humid monsoon conditions, Biogeosciences, 12(3), 803-815, doi: 10.5194/bg-12-803-2015
[10] G Yoo, A Kim and S Hadi, 2014, A methodology to assess environmental vulnerability in a coastal city: Application to Jakarta, Indonesia, Ocean & Coastal Management, 102, 169-177, doi: 10.1016/j.ocecoaman.2014.09.018
[9] G Yoo, H Kim, J Chen and Y Kim, 2014, Effects of biochar addition on nitrogen leaching and soil structure following fertilizer application to rice paddy soil, Soil Science Society of America Journal, 78(3), 852-860, doi: 10.2136/sssaj2013.05.0160
[8] S Kim, SH Hong, K Cho, I Lee, G Yoo and H Kang, 2012, Effects of Elevated CO2 and Pb on the Microbial Community in the Rhizosphere of Pinus densiflora, Journal of Microbiology, 50, 895-901, doi: 10.1007/s12275-012-2207-1
[7] G Yoo and H Kang, 2012, Effects of biochar addition on greenhouse gas emissions and microbial responses in a short-term laboratory experiment, Journal of Environmental Quality, 41(4), 1193-1202, doi: 10.2134/jeq2011.0157
[6] G Yoo, JH Hwang and C Choi, 2011, Development and application of a methodology for vulnerability assessment of climate change in coastal cities, Ocean & Coastal Management, 54(7), 524-534, doi: 10.1016/j.ocecoaman.2011.04.001
[5] MJ Kim, GY Yoo and CK Yoo, 2011, Development of combined fouling model in a membrane bioreactor, Asia-Pacific Journal of Chemical Engineering, 6(3), 423-432, doi: 10.1002/apj.589
[4] TH Kim, MJ Lee, HS Jang, BK Min, GY Yoo and SJ Hwang, 2011, Characteristics of N2O release from fluidized media type BNR processes and identification of N2O sources, Desalination and Water Treatment, 28:1-3, 378-384, doi: 10.5004/dwt.2011.2910
[3] G Yoo, X Yang and MM Wander, 2011, Influence of soil aggregation on SOC sequestration: A preliminary model of SOC protection by aggregate dynamics, Ecological engineering, 37(3), 487-495, doi: 10.1016/j.ecoleng.2010.12.016
[2] JH Hwang, SA Lee, BR Kim and GY Yoo, 2011, Assessment of the potential economic damage in Korea from a future rise in sea level, Journal of Coastal Research, Special Issue 64, 215-219
[1] MJ Lee, TH Kim, GY Yoo, BK Min and SJ Hwang, 2010, Reduction of sewage sludge by ball mill pretreatment and Mn catalytic ozonation, KSCE Journal of Civil Engineering, 14, 693-697, doi: 10.1007/s12205-010-0934-6
[19] J Kim, D Min, G Yoo, Y Park, K Sung, and B Kim, 2024, Evaluation of Grassland Carbon Storage in Gangwon Province Using the InVEST Model and Application of Land Cover Maps, Journal of the Korean Society of Grassland and Forage Science, 44(4), 301-311, doi.org/10.5333/KGFS.2024.44.4.30
[18] YL Park, and YJ Kim, J Hyun, JS Jung, and G Yoo, 2023, Assessing Soil Organic Carbon Stock and Stability in Volcanic Grasslands: Implications for Climate Change Mitigation Potential and Management Levels, Korean Journal of Soil Science and Fertilizer, 56(4), 342-353, doi:10.7745/KJSSF.2023.56.4.342
[17] S Joo, H Lee, J Jeon, I Seo and G Yoo, 2022, Effects of Traffic Volume and Air Quality on the Characteristic of Urban Park Soil, Ecology and Resilient Infrastructure, 9(1), 77-82, doi: 10.17820/eri.2022.9.1.077
[16] J Hyun, SJ Kim, WS Jung, JO Kim and GY Yoo, 2021, Quantifying the Effects of Agricultural Management Practices on Soil Carbon Storage in an Agricultural Environment Conservation Program, Journal of Climate Change Research, 12(6), 701-712, doi: 10.15531/KSCCR.2021.12.6.701
[15] A Kim, J Koh and G Yoo, 2021, Citizen Science Trends and Implications in the Field of Climate Change Adaptation, Journal of Climate Change Research, 12:5-1, 397-407, doi: 10.15531/KSCCR.2021.12.5.397
[14] H Choi, J Hyun, YJ Kim and G Yoo, 2019, Improvement of Ammonia Emission Inventory Estimation Methodology for Fertilizer Application in the Agricultural Sector, Journal of Climate Change Research, 10(3), 237-242, doi: 10.15531/KSCCR.2019.10.3.237
[13] DG Kim, JY Kim, WS Lee, HH Kim, MW Seo, IT Park, J Hyun and G Yoo, 2018, Composting Method and Physicochemical Characteristics of By-products from Home Garden Plants and Small Herbivore Feces, Journal of Environmental Impact Assessment, 27(6), 695-703, doi: 10.14249/eia.2018.27.6.695
[12] J Hyun, SY Yoo, XY Yang, JE Lee and G Yoo, 2017, Annual Variability in Nitrous Oxide Emission from Agricultural Field Soils, Journal of Climate Change Research, 8(4), 305-312, doi: 10.15531/KSCCR.2017.8.4.305
[11] YJ Kim, X Chen, W He and G Yoo, 2017, Corn Growth and Development influenced by Potential CO2 Leakage from Carbon Capture and Storage (CCS) Site, Journal of Climate Change Research, 8(3), 257-264, doi: 10.15531/KSCCR.2017.8.3.257
[10] SY Yoo, YJ Song, HJ Oh, YJ Kim and GY Yoo, 2016, Applicability of DGCI (Dark Green Color Index) to Assess Potential Impacts of CO2 Leakage from the Geological Storage Site, Journal of Climate Change Research, 7(3), 351-356, doi: 10.15531/KSCCR.2016.7.3.351
[9] YJ Kim, H Park, MH Kim, SH Seo, YS Ok and G Yoo, 2015, A Study of Burcucumber Biochars to Remediate Soil Pb Considering GWP (Global Warming Potential), Journal of Korean Society of Environmental Engineers, 37(7), 432-440, doi: 10.4491/KSEE.2015.37.7.432
[8] YJ Kim, SH Yang, SY Kim, HS Yoon and GY Yoo, 2014, Behavior Changes of Earthworm from Soils Amended with Biochar - Avoidance and Productivity -, Journal of Climate Change Research, 5(4), 277-284, doi: 10.15531/KSCCR.2014.5.4.277
[7] D Kim, K Cho, T Won, IT Bak and G Yoo, 2014, Changes in Crop Yield and CH4 Emission from Rice Paddy Soils Applied with Biochar and Slow-release Fertilizer, Korean Journal of Environmental Biology, 32(4), 327-334, doi: 10.11626/KJEB.2014.32.4.327
[6] G Yoo, Y Son, SH Lee, Y Yoo and SH Lee, 2013, Greenhouse gas emissions from soils amended with biochar, Korean Journal of Environmental Biology, 31(4), 471-477, doi: 10.11626/KJEB.2013.31.4.471
[5] GY Yoo, HJ Kim, YS Kim and MH Jung, 2012, Soil carbon and microbial activity influenced by pasture and rice paddy management, Korean Journal of Soil Science and Fertilizer, 45(3), 435-443, doi: 10.7745/KJSSF.2012.45.3.435
[4] GY Yoo, SW Park, DK Chung, HJ Kang and JH Hwang, 2010, Development and Application of a Methodology for Climate Change Vulnerability Assessment-Sea Level Rise Impact on a Coastal City, Journal of Environmental Policy, 9(2), 185-205
[3] S Han, G Yoo and S Kim, 2009, Stochastic behavior of plant water stress index and the impact of climate change, Journal of Korean Society on Water Environment, 25(4), 507-514
[2] GY Yoo, JT Kim and JE Kim, 2008, Development of an adaptive capacity indicator to climate change in the agricultural water sector, Journal of Environmental Policy, 7(4), 35-55
[1] SI Hwang, JH Lee, GY Yoo and HM Kim, 2006, Improving coherence between soil and groundwater quality standards, 기본연구보고서, UCI I410-ECN-0102-2014-500-001757824