J Environ Qual. 2013 Jan-Feb;42(1):219-28. doi: 10.2134/jeq2012.0210.
Current biofuel feedstock crops such as corn lead to large environmental losses of N through nitrate leaching and NO emissions; second-generation cellulosic crops have the potential to reduce these N losses. We measured N losses and cycling in establishing miscanthus (), switchgrass ( L. fertilized with 56 kg N ha yr), and mixed prairie, along with a corn ( L.)-corn-soybean [ (L.) Merr.] rotation (corn fertilized at 168-202 kg N ha). Nitrous oxide emissions, soil N mineralization, mid-profile nitrate leaching, and tile flow and nitrate concentrations were measured. Perennial crops quickly reduced nitrate leaching at a 50-cm soil depth as well as concentrations and loads from the tile systems (year 1 tile nitrate concentrations of 10-15 mg N L declined significantly by year 4 in all perennial crops to <0.6 mg N L, with losses of <0.8 kg N ha yr). Nitrous oxide emissions were 2.2 to 7.7 kg N ha yr in the corn-corn-soybean rotation but were <1.0 kg N ha yr by year 4 in the perennial crops. Overall N balances (atmospheric deposition + fertilization + soybean N fixation - harvest, leaching losses, and NO emissions) were positive for corn and soybean (22 kg N ha yr) as well as switchgrass (9.7 kg N ha yr) but were -18 and -29 kg N ha yr for prairie and miscanthus, respectively. Our results demonstrate rapid tightening of the N cycle as perennial biofuel crops established on a rich Mollisol soil.
当前的生物燃料原料作物,如玉米,通过硝酸盐淋溶和一氧化二氮排放导致大量的氮环境损失;第二代纤维素作物有可能减少这些氮损失。我们测量了建立芒草(Miscanthus)、柳枝稷(Panicum virgatum L.)和混合草原,以及玉米(Zea mays L.)-玉米-大豆[Glycine max(L.)Merr.]轮作(玉米施肥量为 168-202kg N ha)中氮的损失和循环。测量了氧化亚氮排放、土壤氮矿化、中层硝酸盐淋溶、以及排水和硝酸盐浓度。多年生作物迅速减少了 50cm 土壤深度的硝酸盐淋溶以及排水系统中的浓度和负荷(所有多年生作物的第 1 年排水硝酸盐浓度为 10-15mg N L,到第 4 年显著下降到<0.6mg N L,损失量<0.8kg N ha yr)。玉米-玉米-大豆轮作中的氧化亚氮排放量为 2.2-7.7kg N ha yr,但到第 4 年,多年生作物中的排放量为<1.0kg N ha yr。总体氮平衡(大气沉降+施肥+大豆固氮-收获、淋溶损失和一氧化二氮排放)对玉米和大豆(22kg N ha yr)以及柳枝稷(9.7kg N ha yr)为正,但对草原和芒草分别为-18kg N ha yr 和-29kg N ha yr。我们的研究结果表明,在富含 Mollisol 土壤上建立多年生生物燃料作物可以迅速收紧氮循环。