CO2 capture performance of biochar prepared from sewage sludge after conditioning with different dewatering agents. Issue 5 (October 2022)
- Record Type:
- Journal Article
- Title:
- CO2 capture performance of biochar prepared from sewage sludge after conditioning with different dewatering agents. Issue 5 (October 2022)
- Main Title:
- CO2 capture performance of biochar prepared from sewage sludge after conditioning with different dewatering agents
- Authors:
- Liu, Chang
Wu, Yan
Lan, Guoxin
Ji, Xiaopeng
Xia, Yaping
Fu, Chuan
Shen, Jia
Gui, Jiacheng
Liu, Yuting
Qu, Yuanying
Peng, Hanyu - Abstract:
- Abstract: The appropriate conditioning of sewage sludge can facilitate its reuse as an adsorbent, such as that for CO2 capture to mitigate greenhouse effects. Herein, we treated raw sludge with two common dewatering conditioners (cationic polyacrylamide and polymeric aluminum chloride) and prepared the corresponding biochar (denoted as B-CPAM and B-PAC, respectively). These biochars were compared to that prepared from untreated sludge (B-SS) in terms of surface elements, surface functional groups, specific surface area, pore volume, and the capacity for CO2 capture. The mechanism of CO2 capture by sludge-derived biochars was analyzed, and the environmental risk due to the heavy metals in different forms was evaluated using risk assessment criteria. CO2 capacities of B-PAC (31.86 mg/g) and B-CPAM (48.54 mg/g) were higher than that of B-SS (28.36 mg/g). The optimal performance of B-CPAM for capturing CO2 is attributed to its largest microporous volume and microporous surface area. Oxygen-containing functional groups on the surface of biochar can react with CO2 by forming hydrogen bonds, and the amino groups can also condense with CO2, thereby improving the CO2 capture performance of biochar. And it was found that in B-CPAM, apart from Fe and Al, other heavy metals are more easily bound to CO2, such as Cd. The environmental risks of heavy metal pollution from B-CPAM and B-PAC were less than that from B-SS. Overall, all three sludge-derived biochars, especially B-CPAM, couldAbstract: The appropriate conditioning of sewage sludge can facilitate its reuse as an adsorbent, such as that for CO2 capture to mitigate greenhouse effects. Herein, we treated raw sludge with two common dewatering conditioners (cationic polyacrylamide and polymeric aluminum chloride) and prepared the corresponding biochar (denoted as B-CPAM and B-PAC, respectively). These biochars were compared to that prepared from untreated sludge (B-SS) in terms of surface elements, surface functional groups, specific surface area, pore volume, and the capacity for CO2 capture. The mechanism of CO2 capture by sludge-derived biochars was analyzed, and the environmental risk due to the heavy metals in different forms was evaluated using risk assessment criteria. CO2 capacities of B-PAC (31.86 mg/g) and B-CPAM (48.54 mg/g) were higher than that of B-SS (28.36 mg/g). The optimal performance of B-CPAM for capturing CO2 is attributed to its largest microporous volume and microporous surface area. Oxygen-containing functional groups on the surface of biochar can react with CO2 by forming hydrogen bonds, and the amino groups can also condense with CO2, thereby improving the CO2 capture performance of biochar. And it was found that in B-CPAM, apart from Fe and Al, other heavy metals are more easily bound to CO2, such as Cd. The environmental risks of heavy metal pollution from B-CPAM and B-PAC were less than that from B-SS. Overall, all three sludge-derived biochars, especially B-CPAM, could potentially be used as adsorbents for CO2 . Our results also highlight the importance of using a suitable dewatering conditioner at wastewater treatment plants. Highlights: Biochar from cationic polyacrylamide-conditioned sludge showed good CO2 capture. Micropores play a key role in CO2 capture by biochars. Metals in the biochar affect the CO2 capture. B-CPAM has the best CO2 capture at 90 °C. … (more)
- Is Part Of:
- Journal of environmental chemical engineering. Volume 10:Issue 5(2022)
- Journal:
- Journal of environmental chemical engineering
- Issue:
- Volume 10:Issue 5(2022)
- Issue Display:
- Volume 10, Issue 5 (2022)
- Year:
- 2022
- Volume:
- 10
- Issue:
- 5
- Issue Sort Value:
- 2022-0010-0005-0000
- Page Start:
- Page End:
- Publication Date:
- 2022-10
- Subjects:
- Cationic polyacrylamide -- Polymeric aluminum chloride -- Pore space, Heavy metal pollution risk
Chemical engineering -- Environmental aspects -- Periodicals
Environmental engineering -- Periodicals
Chemical engineering -- Environmental aspects
Environmental engineering
Periodicals
660.0286 - Journal URLs:
- http://www.sciencedirect.com/science/journal/22133437 ↗
http://www.elsevier.com/journals ↗ - DOI:
- 10.1016/j.jece.2022.108318 ↗
- Languages:
- English
- ISSNs:
- 2213-2929
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - BLDSS-3PM
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- 23355.xml