植被恢复方式对红壤丘陵区弃土场植被生长指标与土壤理化性质的影响

Effects of vegetation restoration methods on vegetation growth indexes and soil physical and chemical properties of spoil ground in red-soil hilly region

  • 摘要: 以江西高速公路某弃土场为例,探讨红壤丘陵区弃土场植被恢复的关键技术,在了解弃土场气候特点及地质情况的基础上,通过测土配方,采用草灌混播方式,设置3种植被配置方案,包括植被配置1(狗牙根+百喜草+紫花苜蓿+白三叶+伞房决明+紫穗槐)、植被配置2(紫花苜蓿+白三叶+狗牙根+马棘+美丽胡枝子)、常规喷播(狗牙根+紫花苜蓿+马棘),2种基肥配置方案,包括基肥配置1(50 g/m2复合肥)、基肥配置2(100 g/m2复合肥),分析不同处理下植被恢复情况及土壤理化性质,并确定最佳组合。结果表明:植被配置1+基肥配置2恢复方式下植被长势好,密度较大,1个月后覆盖率达到80%,土壤理化性质较其他处理具有显著变化,与常规喷播相比,土壤容重减少0.17 g/cm3,土壤总孔隙度、有机质及碱解氮浓度分别提高了19.68%、62%和8%,有效解决了弃土场复绿覆盖不均匀、时间长的难题,可以起到预防和减轻水土流失的作用,具有一定的经济效益和较好的生态效益。

     

    Abstract: Taking an abandoned soil field of Jiangxi expressway as an example, the key techniques of vegetation restoration in the abandoned soil field of red-soil hilly area was discussed. Based on the understanding of the climatic characteristics and geological conditions of the spoil ground, three vegetation schemes and two basic fertilizer schemes were set up by soil testing formula and grass irrigation mixed sowing method. The three vegetation schemes were: Vegetation allocation 1 (Bermudagrass + Bahia grass + Alfalfa + White clover + Cassia corymbosa+ Amorpha fruticosa), Vegetation allocation 2 (Alfalfa + White clover + Bermudagrass + Horse thorn + Beautiful lespedeza), and conventional spray seeding (Bermudagrass + Alfalfa + Horse thorn). The two basic fertilizer schemes were Fertilizer scheme 1 (50 g/m2 compound fertilizer) and Fertilizer scheme 2 (100 g/m2 compound fertilizer). The vegetation restoration and soil physical and chemical properties were analyzed to determine the best combination. The results showed that: under Vegetation allocation 1 + Fertilizer schemes 2, the vegetation grew well, the density was high, and the coverage rate reached 80% after one month. And the physical and chemical properties of soil were significantly changed compared with other treatments. Compared with conventional spray seeding, the soil capacity decreased by 0.17 g/cm3, and the total porosity of soil, organic matter and alkaline nitrogen increased by 19.68%, 62% and 8%, respectively, which could effectively solve the problem of uneven green coverage and long time in the spoil ground, prevent and reduce soil and water loss, and thus have great economic and ecological benefits.

     

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