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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Migration and Transformation of Phosphorus during Hydrothermal Carbonization of Sewage Sludge: Focusing on the Role of pH and Calcium Additive and the Transformation Mechanism
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Migration and Transformation of Phosphorus during Hydrothermal Carbonization of Sewage Sludge: Focusing on the Role of pH and Calcium Additive and the Transformation Mechanism

机译:污水污泥水热碳化过程中磷的迁移和转化:重点对pH与钙添加剂的作用及转化机制

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Recovering phosphorus (P) from sewage sludge has been proposed as a promising substitute for phosphate ores, while hydrothermal carbonization (HTC) has emerged as an energy-efficient method for sewage sludge treatment with substantial merits. Migration and transformation of phosphorus in the sludge during HTC is vital for subsequent P recovery. In this study, the role of pH and calcium additive (CaCl2) in the partitioning and transformation of phosphorus species as well as the associated transformation mechanism was investigated via Standards, Measurements, and Testing Program analysis, X-ray diffraction analysis, and the aid of thermochemical equilibrium approach. The results indicated that higher feedwater pH and dosage of CaCl2 favored the enrichment of phosphorus in the hydorchars with R-p > 80%, which was mainly presented as inorganic phosphorus. The obvious transformation from nonapatite inorganic phosphorus to apatite phosphorus was observed, promoting by higher feedwater pH or dosage of CaCl2. Unlike the addition of CaO, Ca-3(PO4)(2), and Ca2P2O7 have been calculated as the main Ca-associated phosphorus compounds at equilibrium state while less hydroxyapatite (Ca-5(PO4)(3)OH) was reported. These findings were confirmed by XRD analyses well. The work described here can provide new insights into the phosphorus recovery from sewage sludge.
机译:已经提出从污水污泥中回收磷(P)作为磷酸盐矿石的有望替代品,而水热碳化(HTC)被出现为具有大量优点的污水污泥处理的节能方法。 HTC期间污泥中磷中磷的迁移和转化对于随后的P恢复至关重要。在该研究中,通过标准,测量和测试程序分析,X射线衍射分析和辅助,研究了pH和钙添加剂(CaCl2)在磷物种分配和转化中的作用以及相关的转化机制的作用热化学均衡方法。结果表明,CaCl2的较高给水pH和剂量有利于Havorarch中磷的富集,R-P> 80%,主要呈现为无机磷。观察到非磷酸盐无机磷对磷灰石磷的明显转化,通过较高给水pH或CaCl 2剂量促进。与添加CaO,Ca-3(PO4)(2)和Ca2P2O7不同,Ca2P2O7已经以平衡状态计算为主要的Ca-相关的磷化合物,而据报道较少的羟基磷灰石(Ca-5(PO4)(3)OH)。 XRD分析良好地证实了这些发现。这里描述的工作可以为污水污泥的磷恢复提供新的见解。

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