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Effects of digestate fertilization on Sida hermaphrodita: Boosting biomass yields on marginal soils by increasing soil fertility

机译:消化施肥对雌雄同株的影响:通过增加土壤肥力提高边缘土壤生物量

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Perennial non-food energy crops are currently discussed as a more sustainable alternative to conventional energy crops like maize. As they can be cultivated on marginal soils, they reduce the risk of land use and food vs. fuel conflicts. In this study, we evaluated the perennial energy crop Sida hermaphrodita for its potential to be cultivated on marginal substrate and conventional agricultural soils over a three-year field and mesocosm experiment at agricultural conditions. Furthermore, we aimed for a closed nutrient loop by fertilizing plants with biogas digestate and using the carbon fraction of the digestate as soil amendment to ameliorate the overall soil fertility. As controls, plants were either untreated or fertilized with an equivalent amount of mineral NPK fertilizer. We found S. hermaphrodita to give highest DM yields of up to 28 t ha~(-1) under favorable soil conditions when fertilized with mineral NPK. However, on marginal substrate digestate fertilization resulted in a clear biomass yield advantage over NPK fertilization. An increased soil carbon content, water holding capacity and basal soil respiration indicated improved soil fertility in the marginal substrate. These results demonstrate the great potential of S. hermaphrodita to be cultivated on marginal soil in combination with organic fertilization via biogas digestate.
机译:当前讨论了多年生非粮食能源作物,作为玉米等常规能源作物的更可持续的替代品。由于它们可以在边缘土壤上种植,因此可以减少土地使用和食品与燃料冲突的风险。在这项研究中,我们评估了多年生能源作物Sida hermaphrodita在三年的田间试验和在农业条件下进行中观试验的潜力,可以在边缘基质和常规农业土壤上进行耕种。此外,我们的目标是通过使用沼气消化物给植物施肥,并使用消化物中的碳含量作为土壤改良剂来改善土壤的整体肥力,从而实现封闭的养分循环。作为对照,未处理植物或用等量的矿物NPK肥料施肥。我们发现,在适宜的土壤条件下,将S. hermaphrodita施用NPK矿物时,其DM产量最高,可达28 t ha〜(-1)。然而,在边际底物上,消化施肥比NPK施肥具有明显的生物量产量优势。土壤碳含量,持水量和基础土壤呼吸的增加表明边缘基质的土壤肥力得到改善。这些结果表明,通过沼气消化与有机施肥相结合,可以在边缘土壤上种植双歧链球菌。

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