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Migration and transformation rule of heavy metals in sludge during hydrolysis for protein extraction

机译:蛋白质提取水解过程中污泥中重金属的迁移转化规律

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The content and speciation of heavy metals can fundamentally affect the hydrolysis of sludge. This research study investigates the migration and transformation rule of heavy metals during the hydrolysis process by measuring the content of exchangeables (F1), bound to carbonates (F2), bound to Fe-Mn oxides (F3), bound to organic matter (F4), and residuals (F5) under different periods of time undergoing hydrolysis. The results show that the hydrolysis process generally stabilized Cu, Zn, Mn, Ni, Pb, Cr, and As by transforming the unstable states into structurally stable states. Such transformations and stabilization were primarily caused by the changes in local metal ion environment and bonding structure, oxidation of sulfides, pyrolyzation of organic matter, and evaporation of resulting volatile materials. An X-ray diffractometry (XRD) of the residuals conducted after hydrolysis indicated that hydrolysis did have a significant influence on the transportation and transformation of heavy metals.
机译:重金属的含量和形态可以从根本上影响污泥的水解。本研究通过测量与碳酸盐(F2)结合,与Fe-Mn氧化物(F3)结合,与有机物(F4)结合的可交换物(F1)的含量,研究重金属在水解过程中的迁移和转化规律。以及残留物(F5)在不同时间段内进行水解。结果表明,水解过程通常通过将不稳定状态转变为结构稳定状态来稳定Cu,Zn,Mn,Ni,Pb,Cr和As。这种转变和稳定性主要是由于局部金属离子环境和键结构的变化,硫化物的氧化,有机物的热解以及所得挥发性物质的蒸发引起的。水解后进行的残留物的X射线衍射(XRD)表明,水解确实对重金属的运输和转化有显着影响。

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