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Evidence for large carbon sink and long residence time in semiarid forests based on 15 year flux and inventory records

机译:基于15年助焊和库存记录的半干旱林大碳汇和长期停留时间的证据

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The rate of change in atmospheric CO2 is significantly affected by the terrestrial carbon sink, but the size and spatial distribution of this sink, and the extent to which it can be enhanced to mitigate climate change are highly uncertain. We combined carbon stock (CS) and eddy covariance (EC) flux measurements that were collected over a period of 15 years (2001-2016) in a 55 year old 30 km(2) pine forest growing at the semiarid timberline (with no irrigating or fertilization). The objective was to constrain estimates of the carbon (C) storage potential in forest plantations in such semiarid lands, which cover 18% of the global land area. The forest accumulated 145-160 g C m(-2) year(-1) over the study period based on the EC and CS approaches, with a mean value of 152.5 +/- 30.1 g C m(-2) year(-1) indicating 20% uncertainty in carbon uptake estimates. Current total stocks are estimated at 7,943 +/- 323 g C/m(2) and 372 g N/m(2). Carbon accumulated mostly in the soil (71% and 29% for soil and standing biomass carbon, respectively) with long soil carbon turnover time (59 years). Regardless of unexpected disturbances beyond those already observed at the study site, the results support a considerable carbon sink potential in semiarid soils and forest plantations, and imply that afforestation of even 10% of semiarid land area under conditions similar to that of the study site, could sequester 0.4 Pg C/year over several decades.
机译:大气二氧化碳的变化率受到陆地碳汇的显着影响,但是该水槽的尺寸和空间分布,以及可以增强以减轻气候变化的程度非常不确定。我们组合碳股(CS)和涡流调查(EC)助势测量,在55岁的30公里(2)棵PINE林中在半干旱Timberline生长的5岁(2001-2016)(2001 - 2016年)(没有灌溉)或受精)。目的是将森林种植园中的碳(C)储存潜力估计限制在这种半干旱地区的森林种植园中,其占全球土地面积的18%。基于EC和CS方法,森林累积了145-160克C m(-2)年(-1),平均值为152.5 +/- 30.1g C m( - - 1)表示碳吸收估计中的20%不确定性。目前的总库存估计为7,943 +/- 323g c / m(2)和372g n / m(2)。碳大多数在土壤中积累(土壤和常设生物质碳的71%和29%),具有长的土壤碳周转时间(59岁)。不管在研究现场已经观察到的那些意外的障碍,结果支持半干旱土壤和森林种植园的相当大的碳汇潜力,暗示造型甚至10%的半干旱地区在类似于研究现场的条件下,几十年来,可以隔离0.4 pg c /岁。

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