利用动物骨骼和鸡毛促进向日葵生长的新方法

Plants Pub Date : 2024-09-09 DOI:10.3390/plants13172534
Ume Laila, Mishkat ul Huda, Isha Shakoor, Aisha Nazir, Muhammad Shafiq, Firdaus e Bareen, Kamran Shaukat, Talha Mahboob Alam
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摘要

本研究旨在将肉类工业废弃物,尤其是废弃骨头和鸡毛转化为生物炭,以回收其中的宝贵养分,这些养分最终成为城市垃圾的一部分。在 550 °C 下制备了骨头生物炭(BB)和羽毛生物炭(FB),并评估了它们作为向日葵生长有机添加剂的潜力。与原料相比,制备的生物炭的灰分含量(AC)和固定碳(FC)都有显著提高。傅立叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)和能量色散 X 射线光谱(EDX)分析表明,生物炭中存在各种官能团,如酰胺基团和羟基磷灰石、多孔性和多种营养物质。在盆栽土壤中单独施用 BB 和 FB,以及在 1%、3% 和 5%(重量比)的复合土壤(1:1、1:2、2:1)中施用 BB 和 FB,并施用合成肥料,可显著提高土壤 pH 值、导电率(ECe)、有机质(OM)和持水量(WHC),同时降低容重(BD)。在用羽毛和骨生物炭 2:1 复合物(施用量为 5%)处理过的土壤中生长的植物,在株高、叶绿素总含量和植物干重方面的差异明显大于对照组,但与用化肥处理过的植物生长情况相当,这使其成为化学合成肥料的潜在替代品。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel Method for the Enhancement of Sunflower Growth from Animal Bones and Chicken Feathers
The present study aimed at converting meat industry waste, particularly waste bones and chicken feathers, into biochar to recycle valuable nutrients present in it, which ultimately become part of the municipal waste. The bone biochar (BB) and feathers biochar (FB) were prepared at 550 °C, and their potential was evaluated as an organic amendment for the growth of sunflower. The ash content (AC) and fixed carbon (FC) improved significantly in prepared biochars as compared to raw feedstock. Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM) and energy dispersive X-ray spectroscopy (EDX) analyses signaled the occurrence of various functional groups viz. amide group and hydroxyapatite, porosity, and multiple nutrients. Application of BB and FB in potted soil alone as well as in composites (1:1, 1:2, 2:1) at 1%, 3%, and 5% (w/w) and synthetic fertilizer significantly increased soil pH, electrical conductivity (ECe), organic matter (OM) and water holding capacity (WHC), while reducing the bulk density (BD). The growth of plants grown in soil treated with a 2:1 composite of feathers and bone biochar at 5% application rate showed significantly greater differences in plant height, total chlorophyll content, and plant dry weight than the control but was comparable to growth with chemical fertilizer, rendering it a potential alternative to chemical-based synthetic fertilizer.
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