Energy potential of using plant and animal biomass in relation to its thermal processing

被引:0
作者
Astafiev, A. V. [1 ]
Ibraeva, K. T. [1 ]
Dimitryuk, I. D. [1 ,2 ]
Arbuzova, E. A. [1 ]
机构
[1] Univ Tyumen, Tyumen, Russia
[2] Natl Res Tomsk Polytech Univ, Tomsk, Russia
来源
BULLETIN OF THE TOMSK POLYTECHNIC UNIVERSITY-GEO ASSETS ENGINEERING | 2024年 / 335卷 / 07期
基金
俄罗斯科学基金会;
关键词
biomass; thermal processing; energy potential; pyrolysis thermal effects; exothermic reactions; PYROLYSIS; HEAT; MECHANISM; MANURE; OIL;
D O I
10.18799/24131830/2024/7/4605
中图分类号
P5 [地质学];
学科分类号
0709 ; 081803 ;
摘要
Relevance. The need for effective utilization of biomass waste generated in significant quantities. Pyrolysis, accompanied by exothermic reactions, is a promising way of biomass processing. Aim. Assessment of the possibility of covering the thermal costs of plant and animal biomass pyrolysis due to heat release during decomposition. Methods. Proximate and ultimate analysis of biomass are determined according to certified methods. Thermal analysis of the studied raw materials was carried out on a Netzsch STA 449 F5 Jupiter synchronous thermal analyzer with an integrated gas analyzer QMS 403 Aeolos; quantitative yield of pyrolysis products was determined according to SS 3168-93, gas composition was established using the gas analyzer TEST-1 (& Bcy;& Ocy;& Ncy;& Ecy;& Rcy;, Russia). Results and conclusions. According to the results of thermal analysis, it was found that pyrolysis of plant (pine nut shells) and animal (cattle manure) biomass is accompanied by exothermic reactions associated with the organic part decomposition in the temperature range 240-700 degrees C. The value of heat release of exothermic reactions during pine nut shell destruction is 1.39 MJ/kg, a similar value during manure decomposition is 0.31 MJ/kg. This amount of heat allows you to fully cover the thermal costs of pine nut shell pyrolytic processing, the share of covering the thermal costs of manure pyrolysis is similar to 30%. An additional source of heat is pyrolysis gaseous products with energy potential equal to 3.28 and 1.58 MJ of thermal energy per 1 kg of processed pine nut shells and manure, respectively.
引用
收藏
页码:43 / 57
页数:15
相关论文
共 50 条
[31]   ENERGY-ECONOMIC STUDY OF THERMAL-EXPANSIONARY PRETREATMENT FOR ITS IMPLEMENTATION AT BIOGAS PLANT [J].
Kutsay, A. ;
Kratky, L. .
PAPERS OF THE 23RD EUROPEAN BIOMASS CONFERENCE: SETTING THE COURSE FOR A BIOBASED ECONOMY, 2015, :304-312
[32]   CHARACTERIZATION OF THE RSU THERMAL POTENTIAL, FOR THE GENERATION OF ELECTRIC ENERGY, USING HYDROTHERMAL CARBONIZATION [J].
Salazar, Anibal .
INGENIUS-REVISTA DE CIENCIA Y TECNOLOGIA, 2023, (29) :58-65
[33]   Simultaneous production of biochar and thermal energy using palm oil residual biomass as feedstock in an auto-thermal prototype reactor [J].
Heredia Salgado, Mario A. ;
Coba S, Jonathan A. ;
Tarelho, Luis A. C. .
JOURNAL OF CLEANER PRODUCTION, 2020, 266 (266)
[34]   Anaerobic Digestion Using Residue of Soybean Processing: Biogas Production and it is Potential to Generate Energy [J].
Alves Araujo, Vanessa Kelly ;
de Almeida, Suzel ;
de Oliveira, Sergio Botelho ;
Calixto, Wesley Pacheco ;
Furriel, Geovanne Pereira ;
Barbosa, Danns Pereira .
PROCEEDINGS OF THE 2017 18TH INTERNATIONAL SCIENTIFIC CONFERENCE ON ELECTRIC POWER ENGINEERING (EPE), 2017, :579-582
[35]   Predicting the Total Energy Potential for Different Plant Species Using Artificial Neural Networks [J].
Curcic, Srecko ;
Blagojevic, Marija ;
Veskovic, Milan .
2021 20TH INTERNATIONAL SYMPOSIUM INFOTEH-JAHORINA (INFOTEH), 2020,
[36]   Potential of energy flexible buildings: Evaluation of DSM strategies using building thermal mass [J].
Sanchez Ramos, Jose ;
Pavon Moreno, Mcarmen ;
Guerrerot Delgado, Mcarmen ;
Alvarez Dominguez, Servando ;
Cabeza, Luisa F. .
ENERGY AND BUILDINGS, 2019, 203
[37]   Comparative studies on micro cogeneration, micro cogeneration with thermal energy storage and micro trigeneration with thermal energy storage system using same power plant [J].
Johar, Dheeraj Kishor ;
Sharma, Dilip ;
Soni, Shyam Lal .
ENERGY CONVERSION AND MANAGEMENT, 2020, 220
[38]   In-depth physiochemical characterization and detailed thermo-kinetic study of biomass wastes to analyze its energy potential [J].
Siddiqi, Hammad ;
Bal, Manisha ;
Kumari, Usha ;
Meikap, B. C. .
RENEWABLE ENERGY, 2020, 148 :756-771
[39]   Forecasting the biomass-based energy potential using artificial intelligence and geographic information systems: A case study [J].
Senocak, Ahmet Alp ;
Goren, Hacer Guner .
ENGINEERING SCIENCE AND TECHNOLOGY-AN INTERNATIONAL JOURNAL-JESTECH, 2022, 26
[40]   Biofuels production in Costa Rica using hydrothermal liquefaction of biomass: preliminary estimation of its potential and carbon footprint [J].
Solorzano-Jimenez, Susana ;
Montero-Rambla, Natalia ;
Roccard-Pommera, Jessica ;
Duran-Herrera, Esteban .
UNICIENCIA, 2024, 38 (01)