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Transformation of phosphorus and stabilization of heavy metals during sewage sludge incineration: the effect of suitable additives and temperatures

机译:污水污泥焚烧过程中重金属磷和稳定的转化:合适添加剂和温度的影响

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摘要

Phosphorus (P), an irreplaceable nutrient for all living organisms, is facing scarcity via phosphate resources. In this research, the effect of suitable additives and temperature on P and heavy metals speciation during sewage sludge (SS) thermochemical treatment was investigated. The results demonstrated that additives (CaO and MgO) could promote the conversion of non-apatite inorganic phosphorus (NAIP) to apatite phosphorus (AP). X-ray diffraction measurements indicated that the phosphorus mineral phase in sewage sludge ash (SSA) mainly was AP, with addition of MgO and CaO. Moreover, orthogonal testing revealed that the optimal molar ratio of Mg:Ca:P for P recovery as AP was 1:3.5:1 at 750 degrees C. Risk index results implied that the heavy metals in the phosphorus-enriched SSA have low potential ecological risk. Thermodynamic equilibrium calculations revealed that P reacted with the other metal ions was in the following order: Ca2+ > Mg2+ > Al3+ > Fe3+ > Zn2+ > K+.
机译:磷(P),所有生物体的不可替代的营养素,通过磷酸盐资源面临稀缺。 在本研究中,研究了污水污泥(SS)热化学治疗期间P和重金属物种对P和重金属的影响的影响。 结果表明,添加剂(CaO和MgO)可以促进非磷灰石无机磷(Naip)的转化为磷灰石磷(AP)。 X射线衍射测量表明,污水污泥灰(SSA)中的磷矿物相主要是AP,加入MgO和CaO。 此外,正交检测显示,MG的最佳摩尔比:Ca:P恢复为AP为1:3.5:1,在750℃下。风险指数结果暗示磷的富含SSA中的重金属具有低潜在的生态 风险。 热力学平衡计算显示,与其他金属离子反应的P是下列顺序:Ca2 +> Mg2 +> Al3 +> Fe3 +> Zn2 +> K +。

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