Study on the effect of conditioner on NOx precursor control behavior from sewage sludge pyrolysis: Focusing on conditioner assessments and in-situ fixation mechanism

IF 7.1 2区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Waste management Pub Date : 2024-08-12 DOI:10.1016/j.wasman.2024.08.002
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Abstract

The nitrogen transformation during sludge pyrolysis is affected by the dewater conditioner. However, the comparative analysis of the conditioner under identical pyrolysis conditions has been previously absent. In this study, Ca-, Fe- and Al-based conditioners were selected as the representatives. A comprehensive evaluation considering the cost of the conditioners and the product characteristics was conducted. Additionally, the in-situ fixation mechanism of the conditioner on nitrogen-containing gas was concurrently revealed. Among the six conditioners, CaO and AlCl3 were identified as the top performers, ranking first and second, respectively. Furthermore, Fe/Ca-based conditioners reduced NH3 and HCN release by 1.5 ∼ 5.53 % and 0 ∼ 1.55 %, respectively, by facilitating the conversion of amine-N to a more stable form in condensable fraction. Fe promoted volatile amine-N cyclization, while Ca encouraged its dehydrogenation. Both Fe/Ca-based conditioners increased 7.5 ∼ 14.8 % nitrogen retention in char, by inhibiting the decomposition of protein-N. Al-based conditioners had little effect on NH3 and HCN, but contributed to 2.3 ∼ 2.8 % production of stabilized nitrogen in char. The introduction of Cl in Fe/Ca/Al chloride conditioners would promote the decomposition of inorganic ammonium salts to produce NH3 at 30 ∼ 185 °C. And Cl also reacted with volatiles through electrophilic substitution reaction, leading to the formation of halogenated hydrocarbons in condensable fraction and the release of more NH3, HCN, and HNCO at 30 ∼ 465 °C. The findings of this study provide a detailed comparative analysis of various conditioners under uniform conditions and reveal the in-situ fixation mechanism of nitrogen-containing gas. This will provide guidance for the sludge conditioning-dewatering-drying integrated treatment and disposal.

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研究调节剂对污水污泥热解产生的氮氧化物前体控制行为的影响:重点关注调节剂评估和原位固定机制。
污泥热解过程中的氮转化受到脱水调节剂的影响。然而,此前一直缺乏在相同热解条件下对调节剂的比较分析。本研究选取了以钙、铁和铝为基础的调节剂作为代表。研究对调节剂的成本和产品特性进行了综合评估。此外,还同时揭示了调节剂对含氮气体的原位固定机制。在六种调节剂中,CaO 和 AlCl3 的性能最佳,分别排名第一和第二。此外,Fe/Ca 基调节剂通过促进胺-N 在可冷凝组分中转化为更稳定的形式,使 NH3 和 HCN 释放量分别减少了 1.5 ∼ 5.53 % 和 0 ∼ 1.55 %。铁促进挥发性胺-N 的环化,而钙则促进其脱氢。两种以铁/钙为基础的调节剂都通过抑制蛋白质-N的分解,提高了炭中 7.5 ~ 14.8 % 的氮保留率。铝基调节剂对 NH3 和 HCN 的影响很小,但却有助于提高炭中 2.3 ∼ 2.8 % 的稳定氮产量。在 Fe/Ca/Al 氯化调节剂中引入 Cl 会促进无机铵盐的分解,在 30 ∼ 185 °C 的温度下产生 NH3。Cl 还会通过亲电取代反应与挥发物发生反应,从而在可冷凝部分形成卤代烃,并在 30 ∼ 465 °C 时释放出更多的 NH3、HCN 和 HNCO。本研究结果提供了统一条件下各种调节剂的详细对比分析,并揭示了含氮气体的原位固定机制。这将为污泥调理-脱水-干化一体化处理和处置提供指导。
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来源期刊
Waste management
Waste management 环境科学-工程:环境
CiteScore
15.60
自引率
6.20%
发文量
492
审稿时长
39 days
期刊介绍: Waste Management is devoted to the presentation and discussion of information on solid wastes,it covers the entire lifecycle of solid. wastes. Scope: Addresses solid wastes in both industrialized and economically developing countries Covers various types of solid wastes, including: Municipal (e.g., residential, institutional, commercial, light industrial) Agricultural Special (e.g., C and D, healthcare, household hazardous wastes, sewage sludge)
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