The Atmospheric Concentration of Common Greenhouse Gases in the Pulpwood Plantation in Riau Province, Indonesia

Author:

Novriyanti E,Watanabe M,Koike T

Abstract

Abstract Pulp and paper wood plantations are one of the substantial forestry estates in Indonesia that are usually integrated with a pulp and paper mill industry. The atmospheric condition of glasshouse gases that keep increasing primarily due to anthropogenic activities represent critical issues on human health and affect forest productivity. Therefore this study measured the atmospheric concentration of common glasshouse gases in the pulpwood plantation integrated with a pulp mill in Riau Province. Overly high concentration of some glasshouse gases in the atmosphere may cause issues and at an extreme level, may lead to the occurrence of acid rain that could affect forest health and productivity. This study employed the Ogawa Passive Sampler Method to determine the air concentration of common glasshouse gases, i.e., [SOx], [NOx], [NO2], and [O3] in different rotations and stand ages of Acacia crassicarpa and Eucalyptus pellita stands. The results showed that species, rotation age, and stand age affect the concentration of gaseous N in the plantations. The concentrations of [NOx] and [NO2] gases were higher in the old rotation than in the young rotation of A. crassicarpa stands. Those concentrations were also relatively higher in peat soil sites than in non-peat soil sites.

Publisher

IOP Publishing

Subject

General Engineering

Reference19 articles.

1. Effects of high nitrogen load and ozone on forest tree species;Izuta;Eurasian J For Res.,2003

2. Growth and photosynthetic traits of hybrid larch F1 (Larix gmelinii var. japonica x L. kaempferi) under elevated CO2 concentration with low nutrient availability;Watanabe;Tree Physiol.,2011

3. Effect of CO, NOx and SO2 on ROS production, photosynthesis and ascorbate-glutathione pathway to induce Fragaria annasa as a hyperaccumulator;Muneer;Redox Biol.,2014

4. Effect of ambient air pollutants on wheat and mustard crops growing in vicinity of urban industrial areas;Chauhan;New York Sci. J.,2010

5. Indirect radiative forcing of climate change through ozone effects on the land-carbon sink;Sitch;Nature,2007

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