Sang-Hyun Lee, Tae-Ho Choi
Ultra-lightweight paper is indispensable for conserving paper-based cultural heritage. However, machine-made thin paper (MTP) exhibits pronounced strength anisotropy caused by preferential fiber orientation. This study evaluated handmade ultra-lightweight Hanji (7.2 g/m2) produced from Broussonetia kazinoki bast fiber pulp cooked with traditional plant-ash lye and formed by the oebal method, as a potential alternative to MTP (7.0 g/m2) in paper conservation. Polyamideamine-epichlorohydrin (PAE) and glyoxylated polyacrylamide (GPAM) were applied as wet-strength agents, either alone or combined with carboxymethyl cellulose (CMC). The treated papers were characterized based on weight increase, dry and wet tensile index, pH, color change, and stability after accelerated aging at 80 °C and 65% relative humidity for 72 h. PAE treatment resulted in greater weight uptake than GPAM treatment, while CMC co-treatment further increased weight uptake and tensile strength for both wet-strength agents. Unlike MTP, whose cross-directional strength could not be measured, Hanji retained comparable tensile strength in both directions, reflecting its isotropic fiber network. After aging, GPAM-treated Hanji maintained a higher pH than PAE-treated Hanji and showed less color change, whereas CMC improved strength but reduced color stability. GPAM-treated handmade Hanji provides a more pH-favorable, direction-independent, and potential alternative to MTP for paper-based cultural heritage conservation.