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首页> 外文期刊>Environmental Science: Processes & Impacts >The use of the core-shell structure of zero-valent iron nanoparticles (NZVI) for long-term removal of sulphide in sludge during anaerobic digestion
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The use of the core-shell structure of zero-valent iron nanoparticles (NZVI) for long-term removal of sulphide in sludge during anaerobic digestion

机译:零价铁纳米颗粒(NZVI)的核壳结构用于厌氧消化过程中长期去除污泥中的硫化物的用途

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摘要

A core-shell structure results in zero-valent iron nanoparticles (NZVI) with manifold functional properties. In this study, the long-term effects of NZVI on hydrogen sulphide removal in an anaerobic sludge digester were investigated. Within 20 days, the average hydrogen sulphide content in the biogas was successfully reduced from 300 (or 3620 of sulphate-rich sludge) mg Nm(-3) to 6.1 (121), 0.9 (3.3) and 0.5 (1.3) mg Nm(-3) in the presence of 0.05, 0.10 and 0.20% (wt) NZVI, respectively. Methane yield was enhanced at the low NZVI dose (0.05-0.10%) but decreased at the elevated dose (0.20%). Methane production and volatile solid degradation analyses implied that doses of 0.5-0.10% NZVI could accelerate sludge stabilization during anaerobic digestion. The phosphorus fractionation profile suggested that methane production could be inhibited at the elevated NZVI dose, partly due to the limited availability of soluble phosphorus due to the immobilization of bioavailable-P through the formation of vivianite. An analysis of the reducible inorganic sulphur species revealed that the elimination of hydrogen sulphide occurred via the reaction between hydrogen sulphide and the oxide shell of NZVI, which mainly formed FeS and some FeS2 and S-0.
机译:核-壳结构产生具有多种功能特性的零价铁纳米颗粒(NZVI)。在这项研究中,研究了NZVI对厌氧污泥消化池中硫化氢去除的长期影响。在20天之内,沼气中的平均硫化氢含量成功地从300(或3620富含硫酸盐的污泥)mg Nm(-3)降至6.1(121),0.9(3.3)和0.5(1.3)mg Nm( -3)分别存在0.05、0.10和0.20%(wt)NZVI。在低NZVI剂量(0.05-0.10%)下,甲烷产率提高,而在高剂量(0.20%)下,甲烷产率降低。甲烷生产和挥发性固体降解分析表明,0.5-0.10%NZVI的剂量可加快厌氧消化过程中污泥的稳定性。磷的分馏曲线表明,在较高的NZVI剂量下,甲烷的生成可能受到抑制,部分原因是由于通过形成堇青石而固定了生物利用磷,可溶性磷的利用率有限。对可还原无机硫物种的分析表明,硫化氢的消除是通过硫化氢与NZVI的氧化物壳之间的反应而发生的,NZVI的氧化物壳主要形成FeS以及一些FeS2和S-0。

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