Sustainable production of bio-oil and carbonaceous materials from biowaste co-pyrolysis

被引:15
|
作者
Li, Fanghua [1 ,2 ]
Zhao, Kena [3 ]
Ng, Tsan Sheng [1 ,3 ]
Dai, Yanjun [1 ,4 ]
Wang, Chi-Hwa [1 ,5 ]
机构
[1] Campus Res Excellence & Technol Enterprise CREATE, Energy & Environm Sustainabil Solut Megac E2S2, Singapore 138602, Singapore
[2] Harbin Inst Technol, State Key Lab Urban Water Resources & Environm, Harbin 150090, Peoples R China
[3] Natl Univ Singapore, Dept Ind Syst Engn & Management, Singapore 117576, Singapore
[4] Shanghai Jiao Tong Univ, Sch Mech Engn, Shanghai 200240, Peoples R China
[5] Natl Univ Singapore, Dept Chem & Biomol Engn, Singapore 117585, Singapore
关键词
Biowaste; Co-pyrolysis; Bio-oil; Carbonaceous materials; Techno-economic analysis; WASTE COOKING OIL; CATALYTIC PYROLYSIS; ACTIVATED CARBON; SEWAGE-SLUDGE; BIOMASS; MICROALGAE; QUALITY; MECHANISM; GASIFICATION; PERFORMANCE;
D O I
10.1016/j.cej.2021.131821
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study addressed the production of high-quality bio-oil and carbonaceous materials from in-situ co-pyrolysis of chicken manure (CM), algal bloom (AB) and woodchip (WC). The effects of biowaste-derived catalyst and AB-based NH3 on improving the quality of bio-oil, tar and carbonaceous materials were investigated, respectively. The major presence of Ca-Mg-P in CM resulted in a higher quality of bio-oil with a cetane number of 40 and HHVs of 38.62 MJ/kg. The loading of Ni2P further enhanced the catalytic performance of CM-derived catalyst and contributed to the produced bio-oil with a cetane number of 50 and HHVs of 40.85 MJ/kg. The major presence of K-Cl-Fe in AB and AB-based NH3 activation contributed to a larger specific surface area of carbonaceous materials as high as 567 m(2)/g. Furthermore, the catalytic activity, electrochemical activity and potential market value of biowaste-derived carbonaceous materials were explored in this study. To facilitate the investment decision-making in industrial applications, techno-economic analysis was conducted for the deployment of co-pyrolysis system in a hen layer farm for its daily treatment of 20-ton CM. The technological approach and techno-economic analysis can be generalized to the other types of bioresources. This work provides a novel and effective approach to convert and manage biowaste resources for environmental sustainability and carbon neutrality.
引用
收藏
页数:12
相关论文
共 50 条
  • [1] Bio-oil production from co-pyrolysis of rice husk and plastic waste
    Anaga, Ekpe S.
    Oji, Akuma A.
    Okwonna, Obumneme O.
    EQA-INTERNATIONAL JOURNAL OF ENVIRONMENTAL QUALITY, 2023, 54 : 27 - 35
  • [2] Biomass pyrolysis polygeneration with bio-oil recycling: Co-pyrolysis of heavy bio-oil and pine wood leached with light bio-oil for product upgradation
    Cen, Kehui
    Zhuang, Xiaozhuang
    Gan, Ziyu
    Zhang, Hong
    Chen, Dengyu
    FUEL, 2023, 335
  • [3] Bio-oil upgraded by catalytic co-pyrolysis of sawdust with tyre
    Cao, Qing
    Zhou, Cunming
    Zhong, Cungui
    Jin, Li'e
    INTERNATIONAL JOURNAL OF OIL GAS AND COAL TECHNOLOGY, 2014, 8 (02) : 235 - 250
  • [4] Thermal and co-pyrolysis of rubber seed cake with waste polystyrene for bio-oil production
    Reshad, Ali Shemsedin
    Tiwari, Pankaj
    Goud, Vaibhav V.
    JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2019, 139 : 333 - 343
  • [5] Co-torrefaction of corncob and waste cooking oil coupled with fast co-pyrolysis for bio-oil production
    Wu, Qiuhao
    Zhang, Letian
    Ke, Linyao
    Zhang, Qi
    Cui, Xian
    Fan, Liangliang
    Dai, Anqi
    Xu, Chuangxin
    Zhang, Qihang
    Bob, Krik
    Zou, Rongge
    Liu, Yuhuan
    Ruan, Roger
    Wang, Yunpu
    BIORESOURCE TECHNOLOGY, 2023, 370
  • [6] Co-pyrolysis of plastic waste and macroalgae Ulva lactuca, a sustainable valorization approach towards the production of bio-oil and biochar
    Farobie, Obie
    Amrullah, Apip
    Fatriasari, Widya
    Nandiyanto, Asep Bayu Dani
    Ernawati, Lusi
    Karnjanakom, Surachai
    Lee, Seng Hua
    Selvasembian, Rangabhashiyam
    Azelee, Nur Izyan Wan
    Aziz, Muhammad
    RESULTS IN ENGINEERING, 2024, 24
  • [7] Bio-oil production via co-pyrolysis of almond shell as biomass and high density polyethylene
    Onal, Eylem
    Uzun, Basak Burcu
    Putun, Ayse Eren
    ENERGY CONVERSION AND MANAGEMENT, 2014, 78 : 704 - 710
  • [8] Fast microwave-assisted catalytic co-pyrolysis of microalgae and scum for bio-oil production
    Xie, Qinglong
    Addy, Min
    Liu, Shiyu
    Zhang, Bo
    Cheng, Yanling
    Wan, Yiqin
    Li, Yun
    Liu, Yuhuan
    Lin, Xiangyang
    Chen, Paul
    Ruan, Roger
    FUEL, 2015, 160 : 577 - 582
  • [9] Microwave assisted co-pyrolysis of biomasses with polypropylene and polystyrene for high quality bio-oil production
    Suriapparao, Dadi V.
    Boruah, Bhanupriya
    Raja, Dharavath
    Vinu, R.
    FUEL PROCESSING TECHNOLOGY, 2018, 175 : 64 - 75
  • [10] Synergy between woody biomass and scrap tyre upon co-pyrolysis for the production of bio-oil
    Jayasinhe, Thumesha
    Zarei, Alireza
    De Girolamo, Anthony
    Zhang, Lian
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 255