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- Cross-flow separation characteristics and piloting of graphene oxide nanofiltration membrane sheets and tubes for kraft black liquor concentration, TAPPI Journal September 2023
Cross-flow separation characteristics and piloting of graphene oxide nanofiltration membrane sheets and tubes for kraft black liquor concentration, TAPPI Journal September 2023
September 28, 2023
Application: This work reports detailed results of laboratory-based and mill slipstream piloting of graphene oxide membranes for dewatering of kraft black liquor.
Author: Chen Ma, Scott A. Sinquefield, Zhongzhen Wang, Meisha L. Shofner, and Sankar Nair
ABSTRACT: Dewatering of weak black liquor (WBL) in the kraft cycle by evaporation is highly energy intensive. Membranes are an attractive alternative for energy-efficient dewatering, but existing commercial polymeric or ceramic membranes are either degraded in BL or have high capital costs. Our recent works have demonstrated the engineering of graphene oxide (GO) nanofiltration membranes, their stability and promising performance in BL conditions, and preliminary scale-up into sheets and tubes. Here, we describe in detail the separation characteristics of GO membrane sheets and tubes under real BL conditions and crossflow operation. Recycle-mode piloting of a GO tubular membrane showed average “production flux” of 16 L/m2/h (LMH) and high rejections of lignin (98.3%), total solids (66%), and total organic carbon (83%), with no signs of irreversible fouling identified. A corresponding GO sheet membrane produced an average flux of ~25 LMH and maintained high lignin rejection of ~97% during a slipstream pilot at a kraft mill site using WBL with ~16 wt% total solids (TS). Finally, we piloted a Dow/DuPont XUS1808 polyamide composite reverse osmosis (RO) membrane for last-mile processing of the GO nanofiltration membrane permeate. The RO membrane showed a steady state flux of 19 LMH at 65 bar and produced ~0.02 wt% TS water product, which is highly suitable for reuse in pulp washing operations in the kraft process. The results have strong positive implications for the industrial application of GO membranes in BL concentration and other related applications.
Post Tags
- Advanced Material Engineering
- Advanced Pulping Techniques
- Cross-Flow Filtration
- Energy Efficient Manufacturing
- Graphene Oxide Membranes
- Industrial Dewatering Solutions
- Kraft Black Liquor Processing
- Lignin Recovery Systems
- Membrane Separation Technology
- Mill Process Innovation
- Nanofiltration Technology
- Nanotechnology in Materials Science
- Paper Mill Maintenance
- Pilot Scale Testing
- Process Control Systems
- Process Optimization
- Pulp and Paper Engineering
- Reverse Osmosis Applications
- Sustainable Pulping Methods
- Water and Energy Efficiency show moreshow less
