首页> 外文会议>Conference of the Australian Society of Sugar Cane Technologists >Long-Term Changes In Soil Carbon and Nitrogen Under Trash Blanketing
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Long-Term Changes In Soil Carbon and Nitrogen Under Trash Blanketing

机译:垃圾覆盖下土壤碳氮的长期变化

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Although trash blanketing has been widely adopted in the sugar industry, there is little information on the magnitude or time scales of changes in soil nitrogen (N) and carbon (C), important determinatns of soil N fertility, in trash-blanketed soils. This information was obtained by measuring total N and C, mineral N, and N mineralisation potential (assessed from laboratory incubations) in soil profiles sampled from conventional burnt and green cane-trash blanketed (GCTB) management treatements at five sites. The sites were located from northern NSW to the wet tropics and had the treatments imposed for time ranging from 1 to 17 years. At the oldest site, Abergowrie in the Herbert River Valley, a cropping systems model was also used to examine likely longer-term (35 year) changes in total N and C and impacts on sustainable production. Differences in total N and C were confined to the surface 2 or 5 cm, with N and C being higher for GCTB in all but the youngest site. However, there was no relationship between the magnitude of the difference and the period over which the treatments had been imposed. There were no consistent treatment differences in mineral N at any depth and no significant differences in potential N mineralisation. Trends in simulated total soil C (0-20 cm) and cane yields agreed well with measurements previously made at the Abergowrie site over 15 years (two crop cycles). In the 35 year simulations, total soil C increased continually in the GCTB treatment and decreased slightly to an equilibrium value in the brunt treatment. The simulations suggest that there would be no adverse production or environmental consequences of maintaining 'conventional' N management for several decades after the initiation of trash blanketing at this site. The study illustrates the complexity of the impacts of trash management on soil N and C. Responses to trash blanketing will be the product of soil and climate interactions, and systems modelling will be a useful tool for efficiently determining the likely outcome of these interactions. In practical terms. this means adjustemtn to nitrogen management in response to trash blanketing needs to be conservative and supported by good monitoring of the impacts on cane yield and CCS.
机译:尽管制糖业已在糖业中广泛采用垃圾覆盖,但在垃圾覆盖土壤中,关于土壤氮(N)和碳(C)变化(土壤氮肥力的重要决定因素)变化的幅度或时间尺度的信息很少。该信息是通过测量从五个地点的常规焚烧和绿色甘蔗垃圾掩盖(GCTB)管理条约中取样的土壤剖面中的总氮和碳,矿物质氮和氮矿化潜力(通过实验室培养评估得出)而获得的。这些地点位于新南威尔士州北部至热带湿润地区,处理时间从1到17年不等。在赫伯特河谷最古老的站点Abergowrie,还使用了一个种植系统模型来研究总氮和碳的长期(35年)变化以及对可持续生产的影响。总氮和碳的差异被限制在2或5厘米的表面,GCTB的氮和碳在除最年轻的部位以外的所有地方都更高。但是,差异的大小与实施治疗的时间之间没有关系。在任何深度下,矿质N都没有一致的处理差异,潜在的N矿化也没有显着差异。模拟的总土壤碳(0-20厘米)和甘蔗产量的趋势与之前在15年来(两个作物周期)在Abergowrie地点进行的测量吻合得很好。在35年的模拟中,总土壤碳在GCTB处理中持续增加,而在钝器处理中略有下降,达到平衡值。模拟表明,在该地点开始垃圾掩盖后几十年,保持“常规”氮管理不会对生产或环境造成不利影响。该研究说明了垃圾管理对土壤氮和碳的影响的复杂性。对垃圾覆盖的响应将是土壤与气候相互作用的产物,而系统建模将成为有效确定这些相互作用的可能结果的有用工具。实际上。这意味着对氮管理的适应性需要保守一些,并要通过对甘蔗产量和CCS的影响进行良好的监测来加以支持。

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