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The effect of granulated wood-ash fertilization on soil properties and greenhouse gas (GHG) emissions in boreal peatland forests

机译:颗粒状木灰施肥对北方泥炭地森林土壤特性和温室气体(GHG)排放的影响

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The amount of wood ash produced in power plants is increasing with increasing use of forest biomass in energy production. Wood ash can be recycled as fertilizer especially in boreal peatland forests naturally rich in nitrogen. Improved nutrient availability and increases in soil pH can enhance microbial activities, decomposition of organic matter and greenhouse gas (GHG) emissions. We studied the effects of granulated wood-ash on soil chemical properties, vegetation characteristics, decomposition rate and fluxes of nitrous oxide (N2O) and methane (CH4) in boreal peatland forests. In addition to the field measurements, we conducted laboratory experiments. Wood-ash fertilization changed soil chemical properties, altered understory vegetation, increased tree growth and decomposition rate but there were no significant changes in the N2O and CH4 fluxes in situ, whereas in laboratory incubations ash decreased the N2O production rate. The results show that there is no major risk of increasing GHG emissions after granulated wood-ash fertilization in boreal peatland forests.
机译:随着能源生产中森林生物质使用量的增加,发电厂产生的木灰量也在增加。木灰可以作为肥料回收利用,特别是在天然富含氮的北方泥炭地森林中。改善的养分利用率和提高土壤的pH值可以增强微生物活动,有机物分解和温室气体(GHG)排放。我们研究了颗粒状木灰对北方泥炭地森林土壤化学性质,植被特征,分解速率和一氧化二氮(N2O)和甲烷(CH4)通量的影响。除现场测量外,我们还进行了实验室实验。木灰施肥改变了土壤的化学性质,改变了林下植被,增加了树木的生长和分解速率,但是原位的N2O和CH4通量没有显着变化,而在实验室培养中,灰分降低了N2O的产生速率。结果表明,在北方泥炭地森林中粒状木灰施肥后,没有增加温室气体排放的主要风险。

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