研究领域
Cellulose nanofibres
Low consistency refining
Paper strength and toughness
Linting in offset printing of newsprint
Paper drying
Fibril angle measurement
Single fibre mechanical properties
See http://www.biopria.com.au/ for current research projects
近期论文
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Zhang, L., et al., Effect of cellulose nanofiber dimensions on sheet forming through filtration. Cellulose, 2012. 19(2): p. 561-574.
Varanasi, S., H.-H. Chiam, and W.J. Batchelor, Application and interpretation of zero and short-span testing on nanofibre sheet materials. Nord. Pulp Pap. Res. J., 2012. Accepted.
Su, J., et al., Paper strength development and recyclability with polyamideamine-epichlorohydrin (PAE). Bioresources, 2012. 7(1): p. 913-924.
Perkins, E.L. and W.J. Batchelor, Water interaction in paper cellulose fibres as investigated by NMR Pulsed Field Gradient. Carbohydrate Polymers, 2012. 87: p. 361-367.
O'Connor, M., W. Batchelor, and G. Garnier, The trade-off between water and energy in water recycling of pulp and paper industry effluent, in Appita Conference2012, Appita: Melbourne. p. 128-135.
Naranyan, S., W. Batchelor, and P.A. Webley, Microporous-Mesoporous-Macroporous Zeolite Laminate Adsorbents prepared using a papermaking technique, in International Paper Physics Conference2012: Stockholm. p. Accepted full paper.
Lestiani, R., W. Batchelor, and P. Banham, Development of a lint camera system and investigation of its performance on identify lint using image analysis, in 66th Appita Annual Conference2012, Appita: Melbourne. p. 207-213.
O'Connor, M., W.J. Batchelor, and G. Garnier, Environmental impact improvement through dynamic modeling of treated urban industrial effluent coupled to urban irrigation, in Chemeca 20112011.
Naranyan, S., W.J. Batchelor, and P.A. Webley, Advances of zeolites in papermaking to create value added products - a review, in 2011 Appita conference2011, Appita: Rotorua. p. 319-326.
Joshi, K.V., W.J. Batchelor, and K. Rasd, Investigation of the effect of drying and refining on the fiber-fiber shear bond strength measured using tensile fracture line analysis of sheets weakened by acid gas exposure. Cellulose, 2011. 18: p. 1407-1421.