27990
|
|
Trabelsi, AB; Zaafouri, K; Friaa, A; Abidi, S; Naoui, S; Jamaaoui, F Municipal sewage sludge energetic conversion as a tool for environmental sustainability: production of innovative biofuels and biochar(2021)Environmental Science And Pollution Research, 28.0, 8 |
2917
|
|
Khan, R; Shukla, S; Kumar, M; Zuorro, A; Pandey, A Sewage sludge derived biochar and its potential for sustainable environment in circular economy: Advantages and challenges(2023) |
13381
|
|
Huang, C; Mohamed, BA; Li, LY Comparative life-cycle assessment of pyrolysis processes for producing bio-oil, biochar, and activated carbon from sewage sludge(2022) |
10564
|
|
Biney, M; Gusiatin, MZ Biochar from Co-Pyrolyzed Municipal Sewage Sludge (MSS): Part 1: Evaluating Types of Co-Substrates and Co-Pyrolysis Conditions(2024)Materials, 17, 14 |
13509
|
|
Mayilswamy, N; Nighojkar, A; Edirisinghe, M; Sundaram, S; Kandasubramanian, B Sludge-derived biochar: Physicochemical characteristics for environmental remediation(2023)Applied Physics Reviews, 10, 3 |
30025
|
|
Gopinath, A; Divyapriya, G; Srivastava, V; Laiju, AR; Nidheesh, P; Kumar, MS Conversion of sewage sludge into biochar: A potential resource in water and wastewater treatment(2021) |
28847
|
|
Bolognesi, S; Bernardi, G; Callegari, A; Dondi, D; Capodaglio, AG Biochar production from sewage sludge and microalgae mixtures: properties, sustainability and possible role in circular economy(2021)Biomass Conversion And Biorefinery, 11.0, 2 |
10846
|
|
Sun, BZ; Huo, JB; Liu, HP; Che, DY; Guo, S Elucidation of synergistic effects in straw/sludge co-pyrolysis through gaseous product monitoring and biochar analysis(2023) |
8045
|
|
Racek, J; Sevcik, J; Chorazy, T; Kucerik, J; Hlavinek, P Biochar - Recovery Material from Pyrolysis of Sewage Sludge: A Review(2020)Waste And Biomass Valorization, 11, 7 |
16297
|
|
de Lima, LF; Monteiro, VRC; Barquilha, CER; Braga, MCB Production of biochars derived from sewage sludge and orange peels(2020) |