TAPPI Visual Inspection Charts
TAPPI Connect is your centralized networking & collaboration tool.
My TAPPI Story: Naomi Gehling
Hydraulic conductivities of three compacted paper mill sludges were measured in various ways to assess their viability for use in barrier layers in landfill final covers. Compaction tests showed that the sludges have compaction curves similar to those for clays, albeit with lower maximum dry unit weights and higher optimum water contents. Hydraulic conductivities less than 1 x 10 -9 m/s can be attained for these sludges at low effective stresses (< 10="" kpa)="" when="" compacted="" using="" standard="" procter="" energy="" if="" the="" molding="" water="" content="" is="" 40-100%="" greater="" than="" optimum="" water="" content.="" the="" lowest="" hydraulic="" conductivities="" were="" obtained="" in="" this="" range.="" at="" higher="" effective="" stresses="" (="">20 kPa), hydraulic conductivities less than 1 x 10 -9 m/s can be achieved at higher molding water contents. Field tests conducted on barrier layers constructed with two of the sludges showed that field hydraulic conductivities can be obtained that are similar to those measured on laboratory compacted specimens prepared at the same molding water content. Laboratory tests on large and small undisturbed specimens removed from the field showed that no scale-dependence existed in the hydraulic conductivity of the field compacted sludge. Additional tests showed that freezing increased the hydraulic conductivity of two of the sludges, regardless of whether the sludges were permeated between freeze-thaw cycles or only after the last thaw. In contrast, for the third sludge, increases in hydraulic conductivity only occurred if the sludge was not permeated between freeze-thaw cycles. Significant shrinkage and cracking of the sludges occurred when they were dried, suggesting that barrier layers constructed with sludge should not be permitted to dessicate. Long-term tests showed that the hydraulic conductivity remains stable of decreases slowly if permeation is continued over an extended period of time.
---This title consists of this page only---
Experience the Power of Publications in 2026
Sponsored by the Recovery Boiler Program R&D Subcommittee of the American Forest & Paper Association (AF&PA) and published by TAPPI Press.
The best-selling text to introduce the entire technology of pulp and paper manufacture.
A project of the Yankee Dryer Safety & Reliability Committee.
TAPPI Press offers some of the most in-depth resources and references for the forest products and related industries.
Available for Purchase – Conference Proceedings
TAPPI maintains a record of key conference papers, presentations, and other conference publications, available for purchase in a variety of formats.