TY - JOUR T1 - Investigation of natural resilience capacity of soil features affected by low severity ground wildfire after three years in Mediterranean forest ecosystem AU - Dindaroğlu, Turgay AU - Turan, Fatma PY - 2019 DA - August DO - 10.31195/ejejfs.568734 JF - Eurasian Journal of Forest Science JO - Eur J For Sci PB - Hüseyin Barış TECİMEN WT - DergiPark SN - 2147-7493 SP - 145 EP - 156 VL - 7 IS - 2 LA - en AB - Wildfires are one of the successiondynamics in the ecosystem, however forest ecosystems have natural resiliencecapacity to combat with natural disturbance regimes depend on local ecologicproperties. This study was conducted to evaluate natural resilience capacitystatus of the soil’s physical, chemical and hydrological features exposed tolow severity ground wildfire after three years in the Bulutoglu village,Kahramanmaras. Particle size distribution, soil reaction (pH), electricalconductivity (EC), organic matter content (OM), dispersion ratio (DR), moisturecontent (MC), field capacity (FC), colloid/moisture equivalent (CM), particledensity (PD), bulk density (BD) and porosity ratio (PR) analysis were performedon two groups of soils (burned and unburned counterpart). The environmentalsensitivity index (ESI) include soil, vegetation, climate, and managementquality of the study area was determined by MEDALUS methodology.According to the results, there is noenvironmental sensitivity in the study area. It was determined that thenegative effects of soil properties improved significantly after three yearsfrom the wildfire except for the PR and BD values. There was no statisticallysignificant difference between the analyzed two soil samples groups. It wasconcluded that the difference between the bulk density andporosity ratiosis not only due to the effects of the fire but also with grazing pressure,especially on the unburned area. According to the results, theburned area suffered from low severity groundwildfire has substantially been naturally rehabilitated itself within three years.Environmentally sensitivity (ESI) of thestudy area was a play an important role in the recovery of soil features.Additionally recommendedavoiding some activities that will compress the soil for increasing naturalresilience capacity after a wildfire. KW - Ground wildfire KW - Soil ecology KW - Resilience capacity KW - Fire ecology CR - Ampoorter, E., Goris, R., Cornelis, W.M., Verheyen, K. (2007). Impact of Mechanized logging on compaction status of sandy forest soils. Forest Ecology and Management, 241: 162-174. CR - Balcı, A.N. (1996). Forest Protection Course Notes, I.U. Fac. Of Forestry, Istanbul. CR - Bilgili E. (2014). 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