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Evaluating the risk of potential acid sulfate soils and habitat modification for mosquito control (runneling) in coastal salt marshes: Comparing methods and managing the risk

机译:评估潜在的酸性硫酸盐土壤的风险以及对沿海盐沼中的蚊子控制(流产)进行栖息地改良的方法:比较方法和风险管理

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摘要

Coastal environments in Australia are under development pressures. Human settlement encroaches on disease vector salt marsh mosquito breeding areas that are underlain by potential acid sulfate soils (PASS). Altering the hydrology by runneling solves the mosquito problem but may lead to acid sulfate problems. Appropriate analytical tools can assess the risk to the environment. The objective of the research was to compare three methods of assessing PASS. The study area was a low-lying intertidal subtropical salt marsh that was being considered for runneling, The results indicated that using field pH and field peroxide pH (and the relationship between these), and also the peroxide oxidation-combined acidity and sulfate (POCAS) test, appeared to overestimate the potential acidity. This was because the source of acidity in the intertidal salt marsh includes a large organic content, which is not a major environmental concern. The chromium-reducible sulfur test, which is not affected by organic content, was found to provide the most appropriate assessment, and is recommended for use in highly organic salt marshes.
机译:澳大利亚的沿海环境面临发展压力。人类定居侵犯了病媒盐沼蚊子繁殖区,而潜在的酸性硫酸盐土壤(PASS)则位于该地区。通过流水线改变水文状况可以解决蚊子问题,但可能会导致硫酸盐问题。适当的分析工具可以评估对环境的风险。该研究的目的是比较三种评估PASS的方法。研究区域是一个低洼的潮间带亚热带盐沼,正在考虑将其用作流口水。结果表明,使用田间pH和田间过氧化物pH(及其之间的关系),以及使用过氧化物氧化结合酸度和硫酸盐(POCAS )测试,似乎高估了潜在的酸度。这是因为潮间带盐沼的酸度来源包含大量有机物,这不是主要的环境问题。铬可还原的硫测试不受有机物含量的影响,被发现可提供最合适的评估,建议用于高有机盐沼。

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