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Conversion of chicken feather waste via hydrothermal carbonization: process optimization and the effect of hydrochar on seed germination of Acacia auriculiformis

机译:水热碳化转换鸡羽流量:流程优化及水炭对血清菌种子萌发的影响

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Using statistical response surface methodology this paper primarily investigates the role of process parameters at different levels (temperature, contact time, and rotation speed) and their influence on yield percentage during the production of chicken feather hydrochar (CFH) as soil amendment. Later, the produced char samples were evaluated before and after washing to assess the phytotoxic effect of seed germination and growth on Acacia auriculiformis through germination index% (GI). The optimized conditions for temperature, contact time, and rotation speed of hydrochar production were 150 degrees C, 1 h and 105.65 rpm, respectively. The hydrochar yield percentage at optimized conditions was 51.93%. The seed germination test indicated strong phytotoxicity for soil with untreated char, fresh hydrochar extract (FHE) with high doses, and 4 months old hydrochar extract (OHE) but the toxic effect was lower for washed hydrochar extract (WHE). It showed a higher germination rate and growth performance for washed hydrochar extract among all the doses. This study has confirmed the applicability of chicken feather (CF) hydrochar for improving the physical properties of sandy loam soil. Further research into pre-treatment and assessment of hydrochar before field application is required.
机译:使用统计响应表面方法本文主要研究了在不同水平(温度,接触时间和转速)下的工艺参数的作用及其对生产过程中的产量百分比的影响,作为土壤修正案的鸡羽氨基乙酸(CFH)。后来,在洗涤之前和之后评估产生的焦炭样品,以评估通过萌发指数%(GI)的种子萌发和生长的植物毒性作用。氢碳生产的温度,接触时间和转速的优化条件分别为150℃,1小时和105.65 rpm。优化条件下的羟基乙烯产率百分比为51.93%。种子萌发试验表明,用未处理的炭,新鲜的氢淀粉(FHE)具有高剂量,4个月的羟基乙烯提取物(OHE),但毒性效果较低,较低,较低,用于洗涤氢淀粉(WHE)。它显示出较高的萌发率和在所有剂量中洗涤的氢淀粉的生长性能。本研究证实了鸡羽(CF)氢淀粉的适用性来改善含沙土土壤的物理性质。在需要之前,需要进一步研究野外施用前对水炭的预处理和评估。

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