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Stocking rate impacts on tallgrass prairie landscape carbon fluxes

机译:对高草草原放养率影响景观碳通量

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Abstract Carbon sequestration in ecosystems reduces atmospheric CO2, a major forcing factor in global warming. We aimed to determine the ecosystem C balance under heavy and moderate stocking rates or ungrazed (UG) pastures during the first 2 yr of a 3‐yr period and to determine if changing to moderate stocking on a previously heavily stocked pasture would result in compensatory ecosystem C retention. During 2003 and 2004, net ecosystem C exchange (NEEc) was measured with eddy correlation towers on pastures that were UG, stocked at 2 acres per steer until the middle of the grazing season [intensive early stocking (IES)], and season‐long stocking at the high rate of 2 acres per steer (SLS‐H). In 2005, the SLS‐H pasture changed to a season‐long moderate stocking rate of 4 acres per steer (SLS‐H‐M). Net ecosystem C exchange was summed over an entire year from the burn date to the burn date the following year minus the C lost from burning and livestock export to estimate C balance. During the growing season, SLS‐H reduced ecosystem C retention compared with UG and IES in 2003 and 2004 (+223, +212, and –669 lb acre–1 for UG, IES and SLS‐H). In 2005, when the stocking rate on the SLS‐H pasture was changed to SLS‐H‐M, C retention was greater than under UG and IES (+107, +89, and +205 lb acre–1 for UG, IES and SLS‐H‐M). We conclude that following stocking at an abusive rate, there is compensatory C retention resulting from greater nutrient and water availability.
机译:抽象的生态系统的碳封存减少大气中的二氧化碳,迫使主要因素在全球变暖。生态系统C平衡沉重和温和袜子利率或ungrazed (UG)期间牧场的第一个2年3年里和确定如果改变先前温和的袜子大量储备牧场将导致补偿生态系统C保留。到2004年,净生态系统C交换(NEEc)用涡流测量相关塔在牧场上UG,储存每引导直到2英亩中间的放牧季节(密集的早期袜子(IES)],季节的长袜高2英亩/引导(SLS公/ H)。SLS检测H牧场改为一个季节长温和的载畜率4英亩/引导地理(SLS量H M)。在整个一年从燃烧的日期次年燃烧日期- C丢失燃烧和牲畜出口估计C平衡。生态系统C保留与UG和前辈们相比2003 2004, and训练班课本》223 (+ + 212,,and烷基669这个大约的美国小妞英亩大烷基1UG, IES, SLS H)。率在SLS量H牧场改为SLS高H M应承担的C保留大于在UG和报复(+ 107, + 89, + 205磅acre-1 UG,和SLS量H M)。滥用率,补偿C保留造成更大的营养和水的可用性。

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