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对某物种的冻干、脱脂、硫酸化和热解生物质中灰分元素含量进行半定量测定

Semi-quantitative determination of ash element content for freeze-dried, defatted, sulfated and pyrolysed biomass of sp.

作者信息

de Souza Rafael Augusto Sotana, Saldanha-Corrêa Flávia Marisa Prado, Gallego Antonio Garrido, Neto Ana Maria Pereira

机构信息

1Centro de Engenharia, Modelagem e Ciência Sociais Aplicadas, Universidade Federal do ABC, Avenida dos Estados, 5001, Bairro Bangu, Santo André, SP 09210-580 Brazil.

2Instituto Oceanográfico, Universidade de São Paulo, Praça do Oceanográfico, 191, Butantã, São Paulo, SP 05508-120 Brazil.

出版信息

Biotechnol Biofuels. 2020 Apr 1;13:63. doi: 10.1186/s13068-020-01699-8. eCollection 2020.

Abstract

BACKGROUND

Energy demand by mankind has become one of the most important aspects of our society. A promising technology that seeks to provide part of the energy demand and to obtain high-value products is the thermochemical conversion of microalgae biomass. Inorganic species presented in microalgae biomass may act as catalysts for thermochemical reactions and are responsible for notorious ash-related issues during thermochemical decomposition.

RESULTS

In this study, the freeze-dried biomass of sp. was used to evaluate the lipid extraction methodology regarding a sonication bath as pretreatment technique for cell disruption followed by vortex mixing and -hexane as solvent. It is also presented the lipid and amino acid profiles for sp. The freeze-dried biomass was pyrolysed through a TGA (thermogravimetric analysis), with heating rates of 20 °C/min, from 100 to 650 °C. The ash and sulfated ash contents were accurately determined by combustion of biomass in a muffle furnace. The element component of ashes of the freeze-dried, defatted, pyrolysed and sulfated biomasses was determined by means of scanning electron microscope (SEM) fitted with energy dispersive spectroscopy (EDS). The lipid content obtained for sp. dry biomass was 16.72% (± 0.03). The content of the sulfated ash obtained was 17.81 ± 0.15%. The SEM-EDS technique identified different mineral compounds in ashes, allowing to quantify Mg, P, S, K, Ca, Fe, Co and Br, as well as oxides.

CONCLUSION

The results suggest a possible strategy to evaluate in a semi-quantitative manner the ash composition of freeze-dryed, defatted, sulfated and pyrolysed biomass of sp. and its feasibility in using sp. biomass in different thermochemical conversion strategies to achieve processes with positive energy ratio, representing potential use both environmental and energetically.

摘要

背景

人类的能源需求已成为我们社会最重要的方面之一。一种有前景的技术是微藻生物质的热化学转化,它旨在满足部分能源需求并获得高价值产品。微藻生物质中存在的无机物种可能充当热化学反应的催化剂,并在热化学分解过程中导致与灰分相关的严重问题。

结果

在本研究中, 种的冻干生物质被用于评估脂质提取方法,该方法采用超声浴作为细胞破碎的预处理技术,随后进行涡旋混合,并使用正己烷作为溶剂。文中还给出了 种的脂质和氨基酸谱。冻干生物质通过热重分析(TGA)在20℃/min的升温速率下从100℃加热至650℃进行热解。通过在马弗炉中燃烧生物质准确测定灰分和硫酸化灰分含量。通过配备能量色散光谱(EDS)的扫描电子显微镜(SEM)测定冻干、脱脂、热解和硫酸化生物质灰分的元素组成。 种干生物质的脂质含量为16.72%(±0.03)。获得的硫酸化灰分含量为17.81±0.15%。SEM-EDS技术鉴定了灰分中的不同矿物化合物,能够定量测定Mg、P、S、K、Ca、Fe、Co和Br以及氧化物。

结论

结果表明了一种可能的策略,即以半定量方式评估 种冻干、脱脂、硫酸化和热解生物质的灰分组成,以及在不同热化学转化策略中使用 种生物质以实现具有正能量比的过程的可行性,这在环境和能源方面都具有潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1f88/7115075/9cf81931e773/13068_2020_1699_Fig1_HTML.jpg

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