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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Thermodynamic modeling of iron and trace metal solubility and speciation under sulfidic and ferruginous conditions in full scale continuous stirred tank biogas reactors
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Thermodynamic modeling of iron and trace metal solubility and speciation under sulfidic and ferruginous conditions in full scale continuous stirred tank biogas reactors

机译:在全尺寸连续搅拌釜式沼气反应器中,在硫化和铁质条件下,铁和微量金属的溶解度和形态的热力学模型

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摘要

We investigated the equilibrium chemistry and chemical speciation of S, Fe and metals (Co, Ni, Cu, Zn, Cd, and Pb) in eight full scale Continuous Stirred Tank Biogas Reactors (CSTBR). Five reactors were digesting mixtures of different organic wastes (referred to as Co-Digester; CD) and three were digesting Sewage Sludge (SS). Iron was continuously added to the CD reactors to remove sulfide produced during anaerobic digestion and SS was rich in Fe, amended for phosphate removal in wastewater treatment plants prior to anaerobic digestion. As a consequence of different S:Fe molar ratios (0.3-2.8), ferruginous (Fe(II)-dominated) conditions prevailed in SS reactors and sulfidic (S(-II)-dominated) conditions in CD reactors. In all reactors, the chemical speciation of S, as determined by S K-edge X-ray Absorption Near-Edge Structure spectroscopy, was dominated by FeS(s). Reduced organic S forms, consisting of RSH (thiol) and RSR (organic sulfide), were the second most abundant S species. Zero-valent S (elemental S, polysulfides, and possible traces of pyrite) was detected in all reactors, ranging between 6% and 26% of total S, with the highest proportion formed under ferruginous conditions. Thermodynamic modeling suggested that Fe in the aqueous phase was dominated by Fe(II)-thiol complexes under sulfidic conditions (CD reactors) and by Fe(II)-phosphate complexes under ferruginous conditions (SS reactors). Thiols, representing organic functional groups, and sulfide complexes were the major aqueous species of Co(II), Ni(II), Cd(II) and Pb(II) under sulfidic conditions. Under ferruginous conditions thiol complexes were still important, but carbonate and phosphate complexes in particular dominated the aqueous phase speciation of Co(II) and Ni(II). The aqueous phase speciation of Zn and Cu was dominated by Zn(II)-sulfide and Cu(I)-polysulfide complexes, respectively. The results highlights the importance of S:Fe molar ratio as a regulating factor for the chemical speciation of metals in biogas reactors which in turn is important for microbial trace metal uptake and growth as well as potential metal toxicity. Both these aspects are critical for a successful performance of biogas production process.
机译:我们研究了八个全尺寸连续搅拌罐式沼气反应器(CSTBR)中S,Fe和金属(Co,Ni,Cu,Zn,Cd和Pb)的平衡化学和化学形态。五个反应器用于消化不同有机废物(称为Co-Digester; CD)的混合物,三个反应器用于消化污水污泥(SS)。将铁连续添加到CD反应器中,以去除厌氧消化过程中产生的硫化物,并且SS富含Fe,在厌氧消化之前对废水处理厂中的磷酸盐进行了修改。由于不同的S:Fe摩尔比(0.3-2.8),SS反应器中普遍存在铁质(Fe(II)为主)条件,而CD反应器中普遍存在硫化物(S(-II)为主)条件。在所有反应堆中,由S K边缘X射线吸收近边缘结构光谱法确定的S的化学形态以FeS为主。减少的有机S形式由RSH(硫醇)和RSR(有机硫化物)组成,是第二个最丰富的S物种。在所有反应器中检测到零价S(元素S,多硫化物和可能的痕量黄铁矿),占总S的6%至26%,在铁质条件下形成的比例最高。热力学模型表明,水相中的Fe在硫化条件下(CD反应器)由Fe(II)-硫醇配合物(在铁质条件下)和Fe(II)-磷酸盐配合物(SS反应器)控制。在硫化条件下,代表有机官能团的硫醇和硫化物络合物是Co(II),Ni(II),Cd(II)和Pb(II)的主要水性物质。在铁质条件下,硫醇配合物仍然很重要,但碳酸盐和磷酸盐配合物尤其占据着Co(II)和Ni(II)的水相形态。 Zn和Cu的水相形态分别以Zn(II)-硫化物和Cu(I)-多硫化物络合物为主。结果强调了S:Fe摩尔比作为调节沼气反应器中金属化学形态的调节因子的重要性,这反过来对于微生物微量金属的吸收和生长以及潜在的金属毒性也很重要。这两个方面对于成功生产沼气至关重要。

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