首页> 美国卫生研究院文献>Frontiers in Chemistry >Recovery of Phosphorus From Swine Manure by Ultrasound/H2O2 Digestion Struvite Crystallization and Ferric Oxide Hydrate/Biochar Adsorption
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Recovery of Phosphorus From Swine Manure by Ultrasound/H2O2 Digestion Struvite Crystallization and Ferric Oxide Hydrate/Biochar Adsorption

机译:通过超声/ H2O2消化鸟粪石结晶和三氧化二铁水合物/生物炭吸附法从猪粪中回收磷

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摘要

Swine manure is potentially harmful to the environment but is also a readily accessible local source of phosphorus (P) for agricultural use. Decreasing the environmental impact of swine manure and recovering P from swine manure have been a challenge for a long time. In this study, an integrated process involving ultrasound/H2O2 digestion, struvite crystallization, and ferric oxide hydrate (HFO)/biochar adsorption was used to recover P from swine manure. The ultrasound/H2O2 treatment effectively solubilized the swine manure and converted organic P and other sparingly soluble P species into soluble phosphate. The struvite crystallization process allowed 85% of the available P to be recovered at pH 10.0 using a Mg:P molar ratio of 1.4 and a stirring rate of 150 rpm. HFO was loaded onto biochar synthesized by pyrolyzing ground corncob. The mechanism through which P was adsorbed was investigated by X-ray photoelectron spectroscopy and Fourier transform infrared spectroscopy. The adsorption of P by the HFO/biochar followed pseudo-second-order kinetics and was primarily controlled by chemical processes. The maximum amounts of P adsorbed were 225.08–242.21 mg/g. Thermodynamic calculations indicated that the adsorption of P was endothermic and spontaneous and increased the degree of disorder in the overall system. P mass balance calculations indicated that 90.4% of the total P was recovered as struvite and P-saturated HFO/biochar.
机译:猪粪可能对环境有害,但也是农业上容易获得的当地磷(P)来源。长期以来,减少猪粪对环境的影响以及从猪粪中回收磷一直是一个挑战。在这项研究中,采用了超声波/ H2O2消化,鸟粪石结晶和水合氧化铁(HFO)/生物炭吸附的集成工艺,从猪粪中回收磷。超声/过氧化氢处理有效地溶解了猪粪,并将有机磷和其他微溶磷种转化为可溶性磷酸盐。鸟粪石结晶过程允许使用1.4的Mg:P摩尔比和150 rpm的搅拌速率在pH 10.0时回收85%的可用P。将HFO加载到通过热解玉米芯合成的生物炭上。通过X射线光电子能谱和傅里叶变换红外光谱研究了P被吸附的机理。 HFO /生物炭对P的吸附遵循伪二级动力学,并且主要受化学过程控制。 P的最大吸附量为225.08–242.21 mg / g。热力学计算表明,P的吸附是吸热和自发的,并增加了整个系统的无序程度。磷质量平衡计算表明,总磷的90.4%被回收为鸟粪石和磷饱和的HFO /生物炭。

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