R. Menino, I. Lopes, J. Semedo, Paula Scotti Campos, D. Murta, Amélia Castelo-Branco, Cecília Nestler, O. Moreira
{"title":"在沙质土壤黑麦草施肥过程中,由黑虻幼虫堆肥或生物消化的牛粪","authors":"R. Menino, I. Lopes, J. Semedo, Paula Scotti Campos, D. Murta, Amélia Castelo-Branco, Cecília Nestler, O. Moreira","doi":"10.15406/oajs.2022.05.00169","DOIUrl":null,"url":null,"abstract":"The relative agronomic performance of two organic fertilizers - effluents from intensive cattle farming, after composting either by traditional aerobic methods (compost) or by bio-digestion by larvae of the black soldier fly (Hermetia illucens, BSF) (frass) - in the growth of annual ryegrass (Lolium multiflorum L.) on a sandy soil was evaluated. For this purpose, a pot trial was conducted in a semi-controlled greenhouse. Eight treatments were defined, with four treatments using the compost and four treatments using frass (with a 10% nitroamoniacal nitrogen supplementation in all treatments), in addition to a negative control without fertilization, and a positive control with exclusively chemical nitroamoniacal fertilization. Regarding the biomass production, the BSF frass displayed a higher potential than the compost, with a significantly higher production from an N endowment equivalent to 280 kg ha-1 (252 kg organic N + 28 kg mineral N). While the yields obtained with compost were stable when 350 kg ha-1 (315 kg organic N + 35 kg mineral N) were provided, the yields obtained with BSF frass revealed a tendency to continue to progress with higher doses. This could be justified by the fact that the P2O5 and K2O content of BSF frass is significantly higher than that of the compost, and these nutrients continued to be mineralized over time. Furthermore, the obtained results confirm the potentiating effect of mineral fertilizers in the maximization of biomass production, when associated with organic fertilizers in adequate proportions. In addition, it was verified that the addition of frass enhanced the water use by plants, which was significantly higher than the treatments with compost, regardless of the N endowment. It was concluded that mixing chemical and organic fertilizers positively impacts soil fertility and the sustainability of the production as a whole, by increasing productivities in a sustainable way.","PeriodicalId":19581,"journal":{"name":"Open Access Journal of Science","volume":"20 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2022-08-05","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":"{\"title\":\"Cattle effluents, either composted or bio-digested by Black Soldier Fly larvae, in the fertilization of ryegrass in sandy soils\",\"authors\":\"R. Menino, I. Lopes, J. Semedo, Paula Scotti Campos, D. Murta, Amélia Castelo-Branco, Cecília Nestler, O. 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引用次数: 1
摘要
研究了两种有机肥(集约化养牛废水)在沙质土壤上对一年生黑麦草(Lolium multiflorum L.)生长的相对农艺性能。这两种有机肥分别由传统的好氧堆肥法(堆肥)和黑虻(Hermetia illucens, BSF)(草)的幼虫进行生物消化。为此,在半受控温室中进行了盆栽试验。确定了8个处理,其中4个处理使用堆肥,4个处理使用杂草(所有处理均添加10%硝基氨氮),另外还有一个不施肥的负对照和一个只施用化学硝基氨氮的正对照。在生物量生产方面,BSF草表现出比堆肥更高的潜力,在280 kg ha-1 (252 kg有机氮+ 28 kg矿物氮)的N禀赋下,BSF草的产量显著高于堆肥。当提供350 kg ha-1 (315 kg有机氮+ 35 kg矿物氮)时,堆肥的产量保持稳定,BSF草的产量呈现出随着剂量的增加而持续增长的趋势。BSF草料的P2O5和K2O含量明显高于堆肥,且随着时间的推移,这些营养物质持续矿化。此外,所获得的结果证实,当与适当比例的有机肥相结合时,矿物肥料在最大限度地提高生物质产量方面具有增强作用。此外,验证了无论N禀赋如何,添加草料均显著提高了植物的水分利用,且显著高于堆肥处理。综上所述,化肥和有机肥混合施用对土壤肥力和整体生产的可持续性产生积极影响,通过可持续的方式提高生产力。
Cattle effluents, either composted or bio-digested by Black Soldier Fly larvae, in the fertilization of ryegrass in sandy soils
The relative agronomic performance of two organic fertilizers - effluents from intensive cattle farming, after composting either by traditional aerobic methods (compost) or by bio-digestion by larvae of the black soldier fly (Hermetia illucens, BSF) (frass) - in the growth of annual ryegrass (Lolium multiflorum L.) on a sandy soil was evaluated. For this purpose, a pot trial was conducted in a semi-controlled greenhouse. Eight treatments were defined, with four treatments using the compost and four treatments using frass (with a 10% nitroamoniacal nitrogen supplementation in all treatments), in addition to a negative control without fertilization, and a positive control with exclusively chemical nitroamoniacal fertilization. Regarding the biomass production, the BSF frass displayed a higher potential than the compost, with a significantly higher production from an N endowment equivalent to 280 kg ha-1 (252 kg organic N + 28 kg mineral N). While the yields obtained with compost were stable when 350 kg ha-1 (315 kg organic N + 35 kg mineral N) were provided, the yields obtained with BSF frass revealed a tendency to continue to progress with higher doses. This could be justified by the fact that the P2O5 and K2O content of BSF frass is significantly higher than that of the compost, and these nutrients continued to be mineralized over time. Furthermore, the obtained results confirm the potentiating effect of mineral fertilizers in the maximization of biomass production, when associated with organic fertilizers in adequate proportions. In addition, it was verified that the addition of frass enhanced the water use by plants, which was significantly higher than the treatments with compost, regardless of the N endowment. It was concluded that mixing chemical and organic fertilizers positively impacts soil fertility and the sustainability of the production as a whole, by increasing productivities in a sustainable way.