Soil pH, oxygen availability, and the rate of sulfide oxidation in acid sulfate soil materials: implications for environmental hazard assessment

Soil Research ◽  
2004 ◽  
Vol 42 (6) ◽  
pp. 509 ◽  
Author(s):  
Nicholas J. Ward ◽  
Leigh A. Sullivan ◽  
Richard T. Bush

The potential environmental hazard of acid sulfate soil (ASS) materials is directly related to both the net acidity and the rate that actual acidity is released from these soil materials into the environment. While current environmental hazard assessment techniques for ASS materials are able to quantify the net acidity, they do not take account of differences in the rate of sulfide oxidation (the dominant source of actual acidity) and differences in the rate of acidification. In this study the rate of sulfide oxidation during incubation was examined for 4 ASS materials. The effect of pH and oxygen availability on the rate of sulfide oxidation was assessed. The ASS materials were incubated in: (i) gauze where oxygen diffusion was not restricted, and (ii) sealed 100-µm-thick plastic bags which greatly limited oxygen diffusion. When oxygen diffusion was not restricted, an accelerated oxidation of sulfide occurred when the pH decreased below pH 4.0. The accelerated rate of sulfide oxidation at such low pH did not occur when oxygen diffusion was limited. This study indicates that the initial pH of an ASS material is a useful additional indicator of the potential environmental hazard of an ASS material when oxygen is expected to be non-limiting, such as when ASS materials are excavated and stockpiled. The recommended action criteria need to be reassessed, as the data indicate that the current criteria are conservative for alkaline and neutral ASS materials, but should be lowered for all acidic ASS materials (i.e. pH <5.5) to 0.03% sulfide regardless of texture.

2020 ◽  
Vol 22 (19) ◽  
pp. 6519-6530
Author(s):  
Ya-Qi Zhang ◽  
Stefan Stolte ◽  
Gizem Alptekin ◽  
Alica Rother ◽  
Michael Diedenhofen ◽  
...  

Investigation of the mobility of liquid organic hydrogen carriers in soils in relation to the environmental hazard assessment.


1992 ◽  
Vol 16 (3) ◽  
pp. 317-321
Author(s):  
Johan Blok ◽  
Herman D. Oostergo ◽  
Abraham C. Wondergem ◽  
Cornelis J. V. Leeuwen

2019 ◽  
Vol 12 (1) ◽  
pp. 366-383 ◽  
Author(s):  
Marta Markiewicz ◽  
Ya-Qi Zhang ◽  
Michael T. Empl ◽  
Marianna Lykaki ◽  
Jorg Thöming ◽  
...  

Proactive, comparative environmental hazard assessment of LOHC systems based on alkylcarbazoles, quinaldine, benzene and toluene including H2-rich, H2-lean and partially hydrogenated forms.


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