Optimization of process and properties of biochar from cabbage waste by response surface methodology

被引:21
|
作者
Pradhan, Snigdhendubala [1 ]
Shahbaz, Muhammad [1 ]
Abdelaal, Ali [1 ]
Al-Ansari, Tareq [1 ,2 ]
Mackey, Hamish R. [1 ]
McKay, Gordon [1 ]
机构
[1] Hamad Bin Khalifa Univ, Coll Sci & Engn, Div Sustainable Dev, Doha, Qatar
[2] Hamad Bin Khalifa Univ, Coll Sci & Engn, Div Management & Decis Sci, Doha, Qatar
关键词
Biochar; Soil fertility; Optimization; Response surface methodology; Food waste valorization; Pyrolysis; PARTICLE-SIZE; CELLULOSE; TEMPERATURE; PYROLYSIS; LIGNIN;
D O I
10.1007/s13399-020-01101-5
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The properties of biochar produced by pyrolysis are strongly influenced by various factors such as feedstock. Cabbage makes up around 6.5% of global vegetable production with around 30% wasted from the farm to plate, making it a considerable and widely available biochar feedstock. This study investigates the optimization of three design factors, namely, pyrolysis temperature, feed particle size, and quantity of waste cabbage biomass to produce biochar. Feed particle size was selected due to its relevance to solar or other drying pretreatment, necessary for moisture reduction. To evaluate the influence of these parameters and find their optimum conditions, response surface methodology (RSM) with a central composite design of experiments was used. Optimum response for cabbage biochar was observed at lower temperature (360 degrees C) with particle size of 0.90 mm and a relatively low quantity, though this latter parameter had minimal influence on most response parameters. Temperature was the most influential parameter on all response variables, although particle size was important for nitrogen content, cation exchange capacity (CEC), and electrical conductivity. Biochar produced at an optimum pyrolysis temperature of 360 degrees C and nearest practical size of 1 mm was tested with Ipomoea purpurea in sandy soil. Two percent biochar loading provided an increase in water retention from 6.5% in the control to 10% in the biochar amended soil (p = 0.016). Increases were also observed in plant height and leaf production but were not statistically significant at alpha = 0.05.
引用
收藏
页码:5479 / 5491
页数:13
相关论文
共 50 条
  • [1] Optimization of process and properties of biochar from cabbage waste by response surface methodology
    Snigdhendubala Pradhan
    Muhammad Shahbaz
    Ali Abdelaal
    Tareq Al-Ansari
    Hamish R. Mackey
    Gordon McKay
    Biomass Conversion and Biorefinery, 2022, 12 : 5479 - 5491
  • [2] Characterization and Process Optimization of Biochar Produced Using Novel Biomass, Waste Pomegranate Peel: A Response Surface Methodology Approach
    Siddiqui, M. T. H.
    Nizamuddin, Sabzoi
    Mubarak, N. M.
    Shirin, Khaula
    Aijaz, Muhammad
    Hussain, Munir
    Baloch, Humair Ahmed
    WASTE AND BIOMASS VALORIZATION, 2019, 10 (03) : 521 - 532
  • [3] Co-pyrolysis of cellulose and lignin: Effects of pyrolysis temperature, residence time, and lignin percentage on the properties of biochar using response surface methodology
    Li, Xiaoran
    Cen, Kehui
    Wang, Liangcai
    Jia, Dongxia
    Zhu, Xiefei
    Chen, Dengyu
    INDUSTRIAL CROPS AND PRODUCTS, 2024, 219
  • [4] Adsorption of Arsenic from Water Using Aluminum-Modified Food Waste Biochar: Optimization Using Response Surface Methodology
    Hashimi, Sayed Q.
    Hong, Seung-Hee
    Lee, Chang-Gu
    Park, Seong-Jik
    WATER, 2022, 14 (17)
  • [5] Characterization and Process Optimization of Biochar Produced Using Novel Biomass, Waste Pomegranate Peel: A Response Surface Methodology Approach
    M. T. H. Siddiqui
    Sabzoi Nizamuddin
    N. M. Mubarak
    Khaula Shirin
    Muhammad Aijaz
    Munir Hussain
    Humair Ahmed Baloch
    Waste and Biomass Valorization, 2019, 10 : 521 - 532
  • [6] Optimization of Food Waste Bioevaporation Process Using Response Surface Methodology
    Yang, Benqin
    Jahng, Deokjin
    DRYING TECHNOLOGY, 2015, 33 (10) : 1188 - 1198
  • [7] Thermal Degradation of Different Biomass to Fuel: Optimization of Process Parameters by Response Surface Methodology
    Gouda, Narayan
    Panda, Achyut K.
    BIOINTERFACE RESEARCH IN APPLIED CHEMISTRY, 2021, 11 (02): : 8931 - 8945
  • [8] Chemically reduced tea waste biochar and its application in treatment of fluoride containing wastewater: Batch and optimization using response surface methodology
    Roy, Swapnila
    Sengupta, Shubhalakshmi
    Manna, Suvendu
    Das, Papita
    PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2018, 116 : 553 - 563
  • [9] Optimization of pyrolysis process parameters for the production of biochar from banana peduncle fibrous waste and its characterization
    Rajendiran, Nishanthi
    Ganesan, Sathish
    Weichgrebe, Dirk
    Venkatachalam, Srinivasan Shanmugham
    CLEAN TECHNOLOGIES AND ENVIRONMENTAL POLICY, 2023, 25 (10) : 3189 - 3201
  • [10] Optimization via response surface methodology of palm kernel shell biochar for supplementary cementitious replacement
    Aman, Aan Mohammad Nusrat
    Selvarajoo, Anurita
    Lau, Teck Leong
    Chen, Wei-Hsin
    CHEMOSPHERE, 2023, 313