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The major self-inhibition effect is shown to result from in situ precipitation of calcium sulfate, where dissolved calcium reacts with sulfate ions at the active leaching sites.
These differences reflected increased livestock grazing intensity with reduced rock cover, concomitant increase in soil alkalinity with increased faecal pellet density and reduced soil salinity due to greater erosion and active leaching of less organically rich soils at lower altitudes.
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These catalysts render high durability characteristic in transesterification with low active metal leaching for several cycles.
Calcium-based mixed metal oxides catalysts (CaMgO and CaZnO) render high durability characteristic in transesterification with low active metal leaching for several cycles.
The catalyst was found to be highly active and no leaching in the reaction is observed.
First one is related to alkalinity, leading to active dissolution and leaching of F−-bearing minerals, which supports the positive correlation of F− with pH and HCO3 −.
Heterogeneous catalysts often suffer from a decrease of the activity as an extensive leaching of active metal species during reactions [35].
The catalyst could easily be removed from reaction mixture, but showed 50% decrease in activity when reused due to leaching of active sites.
Leaching of active substances from treated articles was observed in field experiments to obtain information on leaching processes and investigate the suitability of a proposed test method.
Leaching of active substances from the same treated articles was also investigated according to EN 16105 [16105
High catalyst's reusability without leaching of active component is another desirable characteristic in good candidate catalyst.
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