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Biomedical subjects

A M Mercuri

Publications and source records attributed to A M Mercuri.

2 recordsLinked to original sources

Estimating the unknown components of nutrient mass balances for forestry plantations in mine rehabilitation, upper Hunter Valley, New South Wales, Australia.

Commercial forestry plantations as a postmining land use in the Upper Hunter Valley of New South Wales, Australia are restricted by both the poor nutrient availability of mining substrates and low regional rainfall. An experiment was conducted to investigate whether municipal waste products and saline groundwater from coal mining operations could improve early tree growth without impacting on the environment through salt accumulation and/or nutrient enrichment and changes in groundwater quality. Potential impacts were investigated by quantifying the nutrient cycling dynamics within the plantation using an input-output mass balance approach for exchangeable calcium (Ca(2+)), exchangeable magnesium (Mg(2+)), exchangeable potassium (K(+)), exchangeable sodium (Na(+)), nitrogen (N), and phosphorus (P). Measured inputs to and outputs from the available nutrient pool in the 0-30 cm of the overburden subsystem were used to estimate the net effect of unmeasured inputs and outputs (termed "residuals"). Residual values in the mass balance of the irrigated treatments demonstrated large leaching losses of exchangeable Ca, Mg, K, and Na. Between 96% and 103% of Na applied in saline mine-water irrigation was leached below the 0-30-cm soil profile zone. The fate of these salts beyond 30 cm is unknown, but results suggest that irrigation with saline mine water had minimal impact on the substrate to 30 cm over the first 2 years since plantation establishment. Accumulations of N and P were detected for the substrate amendments, suggesting that organic amendments (particularly compost) retained the applied nutrients with very little associated losses, particularly through leaching.

Calcium↗

Aerobiologia 2.0: a software program for processing aeropollen data.

"Aerobiologia 2.0" is a simple computer program created to handle the pollen data collected every 2 hrs and daily by aerobiological monitoring stations equipped with Hirst-type spore traps. "Aerobiologia 2.0" runs on Windows 3.1 and is compatible with other programs that run on this operating system. The program was developed to store and process pollen data through a few straightforward operations. An unlimited calendar automatically calculates the day of the week. The pollen dictionary, which can hold up to 1216 different pollen types, may be modified or changed completely. Concentrations for every pollen type (in pollen grains/m3) are automatically recorded daily and every 2 hrs. 10-day and monthly sums are also calculated. The percentage of selected types, groups, or families of pollen collected each day, every 10 days, and monthly is quickly available. Pollen calendars and spectra in 24-hr, 10-day, monthly, tri-monthly, half-year, and yearly periods are readily produced. As soon as it is entered, the pollen data are saved on hard disk. A year's worth of data can be saved on a single 1.44 M byte floppy disk. Aerobiologia 2.0 is being used successfully to process the aeropollen data collected at the two monitoring stations managed by our Palynological Laboratory.

Air Pollutants↗