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Cited 15 time in webofscience Cited 18 time in scopus
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Effects of Oxidized Brown Coal Humic Acid Fertilizer on the Relative Height Growth Rate of Three Tree Speciesopen access

Authors
Tsetsegmaa, GanchudurAkhmadi, KhaulenbekCho, WonwooLee, SoraChandra, RomikaJeong, Choi EunChia, Rogers WainkwaKang, Hoduck
Issue Date
Jun-2018
Publisher
MDPI
Keywords
reforestation; humic acid fertilizer; relative height growth rate; soil chemical properties
Citation
FORESTS, v.9, no.6
Indexed
SCIE
SCOPUS
Journal Title
FORESTS
Volume
9
Number
6
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/16998
DOI
10.3390/f9060360
ISSN
1999-4907
1999-4907
Abstract
This study aimed to identify the effects of oxidized brown coal humic acid fertilizer on the relative growth rate of several tree species intended for reforestation. Field experiments were carried out during 2011-2014 at the Research and Experimental Center for Combating Desertification located at the Elsen Tasarkhai station in central Mongolia. The trees studied were Populus sibirica Tausch., Salix ledebouriana Trautv., and Acer tataricum L. The experiment was conducted with concentrations of 2000, 10,000, and 20,000 mg L-1 of humic acid fertilization treatment. Measurement of the relative height growth rate (RHGR) was undertaken for a period of four years. The results demonstrated significant differences between the humic fertilizer concentrations, which varied depending on the species. Compared to monthly RHGR over the study period, the treatment using fertilizers yielded significantly better tree growth. P. sibirica, when treated with 2000 mg L-1 and 10,000 mg L-1 humic acid fertilizers, had significant height growth rates. S. ledebouriana with 20,000 mg L-1 of humic acid fertilzers treatments showed the highest RHGR. In addition, when the humic acid treatments were compared to the control, results showed that oxidized brown coal humic acid fertilizers as an organic fertilizer can have a significant effect on the growth of A. tataricum. The results equally showed that the soil chemical properties EC, CO2, NO3, and K2O were significant among all the treatments compared to control. The effect on P2O5 significantly increased in all the treatments; however, there was no significant effect on pH and Mg among all treatments. Combining the results obtained with reforestation and sustainable land-management practices can help to improve soil organics in degraded sandy soil regions.
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