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Thermochemical Analysis of Ammonia Gas Sorption by Struvite from Livestock Wastes and Comparison with Biochar and Metal-Organic Framework Sorbents

机译:畜禽废弃物氨气吸附的热化学分析及与生物炭和金属有机框架吸附剂的比较

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摘要

Struvite-bearing solids from swine (S) and dairy (D) wastewater, heat-treated to 150-300 °C, were evaluated as ammonia gas (NH_3(g)) sorbents and compared to biochar (BC) and a metal-organic framework (MOF). Simultaneous thermal analysis-pulse thermal analysis-Fourier-transform infrared spectros-copy (STA-PTA-FTIR) was used to determine sorption capacity, reversibility, thermodynamics, and kinetics. For wastewater-derived sorbents, S solids heated to 150 °C (S-150) had the highest NH_3(g) sorption capacity (47.2-49.9 mg g~(-1)), comparable to BC (50.8 mg g ~(-1)). Enthalpies increased with sorption capacity, and the energy released per mole sorbed NH_3(g) indicated stronger bonds formed with S sorbents than BC. After desorption, S-150 retained more NH_3(g) (48-51%) than BC (39%). The MOF had the highest sorption capacity (289.7 mg g~(-1)) and irreversibly bound NH_3(g) (81%) but similar sorption activation energy (Ea) as S-150. The rates (k) of NH_3(g) sorption and desorption were fastest for S-150. Overall, S-150 sorbents performed similarly to BC but were less effective than MOF for NH_3(g) sequestration. However, advantages of S-150 for NH_3(g) mitigation include wastewater valorization, minimal synthesis, low heat treatment, and potential use in agricultural applications. Evaluation of struvite-based wastewater-derived sorbents, comparison with commonly used sorbents, and the implementation of thermochemi cal analysis for this purpose are all novel aspects of this study.
机译:来自Swine(S)和乳制品(D)废水,热处理到150-300°C的亚硝酸盐固体,评价为氨气(NH_3(G))吸附剂,并与Biochar(BC)和金属有机物相比框架(MOF)。同时热分析脉冲热分析 - 傅立叶变换红外光谱 - 拷贝(STA-PTA-FTIR)用于确定吸附能力,可逆性,热力学和动力学。对于废水衍生的吸附剂,加热至150℃(S-150)的S固体具有最高的NH_3(g)吸附能力(47.2-49.9mg g〜(-1)),与BC相当(50.8mg g〜( - 1))。焓随吸附能力增加,每摩尔吸附的能量释放的NH_3(G)表明用S吸附剂形成的更强的键比BC为BC。解吸后,S-150比BC(39%)保留更多NH_3(G)(48-51%)。 MOF的吸附能力最高(289.7mg g〜(-1)),不可逆地结合NH_3(g)(81%),但类似的吸附活化能量(EA)为S-150。对于S-150,NH_3(G)吸附和解吸的速率(k)最快。总体而言,S-150吸附剂与BC类似,但对NH_3(G)封存的MOF较小。然而,用于NH_3(G)缓解的S-150的优点包括废水储存,最小合成,低热处理以及农业应用的潜在用途。评估斯特鲁维特的废水衍生的吸附剂,与常用吸附剂的比较,以及为此目的的Thermochemi Cal分析的实施是本研究的所有新颖方面。

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  • 来源
    《Environmental Science & Technology》 |2020年第20期|13264-13273|共10页
  • 作者单位

    Department of Earth and Environmental Sciences Rutgers University Newark New Jersey 07102 United States;

    Department of Earth and Environmental Sciences Rutgers University Newark New Jersey 07102 United States;

    Department of Earth and Environmental Sciences Rutgers University Newark New Jersey 07102 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:37:05

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