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首页> 外文期刊>Soil Research >The potential for sown tropical perennial grass pastures to improve soil organic carbon in the North-West Slopes and Plains of New South Wales. (Special Issue: Soil carbon in Australia's agricultural lands.)
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The potential for sown tropical perennial grass pastures to improve soil organic carbon in the North-West Slopes and Plains of New South Wales. (Special Issue: Soil carbon in Australia's agricultural lands.)

机译:播种的热带多年生草场改良新南威尔士州西北坡地和平原的土壤有机碳的潜力。 (特刊:澳大利亚农业用地的土壤碳。)

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摘要

Sown tropical perennial grass pastures may be a means to restore soil organic carbon (C) lost by cropping with conventional tillage to the levels originally present in native grass pastures. To assess this, total organic carbon and related soil properties were measured under sown tropical pastures, conventionally cultivated cropping, and native pastures on 75 Chromosols and 70 Vertosols to 0.3 m depth in the New South Wales North-West Slopes and Plains region of Australia. The impact of several perennial pasture species on soil organic carbon was also assessed in a 6-year-old, sown pasture experiment on a previously cropped Chromosol. Soil cores in 0.1-m segments to 0.3 m were analysed for total organic carbon, total nitrogen (N), pH, and phosphorus (Colwell-P). Mid-infrared scans were used to predict the particulate, humus, and resistant fractions of the total organic carbon. Bulk density was used to calculate stocks of C, N, and C fractions. In Chromosols, total organic carbon in the surface 0-0.1 m was greater under sown tropical pastures (23.1 Mg ha-1) than conventional tillage cropping (17.7 Mg ha-1), but still less than under native pastures (26.3 Mg ha-1). Similar land-use differences were seen for particulate and resistant organic C, and total N. The proportional differences between land uses were much greater for particulate organic C than other measures, and were also significant at 0.1-0.2 and 0.2-0.3 m. Subsurface bulk density (0.1-0.2 m) was lower under sown tropical pastures (1.42 Mg m-3) than conventionally tilled cropping (1.52 Mg m-3). For Vertosols, total organic carbon in the surface 0-0.1 m was greater under sown tropical pastures (19.0 Mg ha-1) and native pastures (20.5 Mg ha-1) than conventional tillage cropping (14.0 Mg ha-1). Similar land-use effects were seen for the particulate and humus organic C fractions, and total N. In the sown pasture species experiment, there was no significant difference in total N, total organic carbon, or any C fraction between soils under a native-grass species mixture, two improved tropical grass species, or a perennial pasture legume. Regular monitoring is required to better discern whether gradual changes are being masked by spatial and temporal variation. The survey results support previous research on Vertosols within the New South Wales North-West Slopes and Plains that show sown tropical grass pastures can improve total organic carbon. Improvements in total organic carbon on Chromosols have not previously been documented, so further targeted soil monitoring and experimentation is warranted for the region.
机译:播种的热带多年生草场可能是将常规耕作耕种使土壤有机碳(C)恢复到原始草场中原有水平的一种手段。为了评估这一点,在澳大利亚新南威尔士州西北斜坡和平原地区的热带牧场,常规耕种的作物和75色溶胶和70层对绿素的天然牧场下,测量了总有机碳和相关的土壤特性,深度为0.3 m。在一个六年前播种的草场中,对以前种植过的Chomomosol进行了评估,还评估了几种多年生牧草对土壤有机碳的影响。分析了0.1米至0.3 m范围内的土壤核心中的总有机碳,总氮(N),pH和磷(Colwell-P)。使用中红外扫描来预测总有机碳中的颗粒,腐殖质和抗性部分。堆积密度用于计算C,N和C馏分的存量。在色浆中,播种的热带牧场(23.1 Mg ha -1 )下的0-0.1 m表层的总有机碳比常规耕作法(17.7 Mg ha -1 )大。 ),但仍少于天然草场(26.3 Mg ha -1 )。颗粒状有机碳和抗性有机碳以及总氮的土地利用差异也相似。颗粒状有机碳的土地利用之间的比例差异比其他措施大得多,并且在0.1-0.2和0.2-0.3 m处也很显着。播种的热带草场(1.42 Mg m -3 )下的地下容重(0.1-0.2 m)低于常规耕作的耕种(1.52 Mg m -3 )。对于Vertosols,在播种的热带牧场(19.0 Mg ha -1 )和天然草场(20.5 Mg ha -1 )下,0-0.1 m表面的总有机碳更高比传统的耕作(14.0 Mg ha -1 )。颗粒和腐殖质有机碳组分以及总氮的土地利用效应相似。草种混合物,两种改良的热带草种或多年生牧草豆科植物。需要定期监视以更好地识别逐渐变化是否被时空变化掩盖了。调查结果支持了以前在新南威尔士州西北斜坡和平原内对凡托索的研究,该研究表明,播种的热带草牧场可以改善总有机碳。以前没有记录到色溶胶上总有机碳的改善,因此有必要对该地区进行针对性的土壤监测和试验。

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