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Large scale disposal of waste sulfur: From sulfide fuels to sulfate sequestration

机译:大规模处理废硫:从硫化物燃料到硫酸盐固存

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Petroleum industries produce more byproduct sulfur than the market can absorb. As a consequence, most sulfur mines around the world have closed down, large stocks of yellow sulfur have piled up near remote operations, and growing amounts of toxic H_2S are disposed of in the subsurface. Unless sulfur demand drastically increases or thorough disposal practices are developed, byproduct sulfur will persist as a chemical waste problem on the scale of 10~7 tons per year.rnWe review industrial practices, salient sulfur chemistry, and the geochemical cycle to develop sulfur management concepts at the appropriate scale. We contend that the environmentally responsible disposal of sulfur would involve conversion to sulfuric acid followed by chemical neutralization with equivalent amounts of base, which common alkaline rocks can supply cheaply. The resulting sulfate salts are benign and suitable for brine injection underground or release to the ocean, where they would cause minimal disturbance to ecosystems. Sequestration costs can be recouped by taking advantage of the fuel-grade thermal energy released in the process of oxidizing reduced compounds and sequestering the products. Sulfate sequestration can eliminate stockpiles and avert the proliferation of enriched H_2S stores underground while providing plenty of carbon-free energy to hydrocarbon processing.
机译:石油行业产生的副产品硫更多于市场吸收。结果,世界上大多数硫磺矿都关闭了,大量的黄色硫磺堆积在远程作业附近,并且越来越多的有毒H_2S被处置在地下。除非硫的需求量急剧增加或采取彻底的处置方法,否则副产物硫将以每年10〜7吨的规模作为化学废物问题持续存在。我们将审查工业实践,重要的硫化学方法和地球化学循环,以开发硫管理概念以适当的规模。我们认为,对环境负责的硫的处置将涉及转化为硫酸,然后用等量的碱进行化学中和,而普通的碱性岩石可以廉价地供应这些碱。所产生的硫酸盐是良性的,适合于将盐水注入地下或释放到海洋中,这将对生态系统造成最小的干扰。可以通过利用在氧化还原化合物和螯合产品过程中释放的燃料级热能来弥补螯合成本。硫酸盐固存可以消除库存,并避免地下富集的H_2S库的扩散,同时为烃加工提供大量的无碳能源。

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