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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Removal of hydrogen sulfide using crushed oyster shell from pore water to remediate organically enriched coastal marine sediments
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Removal of hydrogen sulfide using crushed oyster shell from pore water to remediate organically enriched coastal marine sediments

机译:使用碎牡蛎壳从孔隙水中去除硫化氢,以补救有机富集的沿海海洋沉积物

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Hydrogen sulfide is highly toxic and fatal to benthic organisms as well as causing depletion of dissolved oxygen and generating blue tide in eutrophic coastal seas. The purposes of this Study are to reveal adsorption characteristics of hydrogen sulfide onto crushed oyster shell, and to evaluate removal efficiency of hydrogen sulfide from pore water in organically enriched sediments using container experiment in order to develop a coastal sediment amendment. The crushed oyster shell was mainly composed of CaCO3 with calcite and CaO crystal phase. The batch experiment showed removal kinetics of hydrogen sulfide can be expressed as the first order equation and Langmuir plot fitted well in describing the adsorption behavior with the adsorption maximum at 12 mg-S g(-1). The container experiments suggested the oyster shell adsorbs hydrogen sulfide in pore water effectively and reduces oxygen consumption in the overlying water. Furthermore. oxidation-reduction potential of the sediment was higher with addition of crushed oyster shell than the control Without Oyster shell. Thus, it is concluded that crushed oyster shell can be an effective amendment to remediate organically enriched sediments in eutrophic coastal seas.
机译:硫化氢对底栖生物具有剧毒和致命作用,并导致溶解氧耗竭并在富营养化的沿海海域产生蓝潮。这项研究的目的是揭示硫化氢在破碎的牡蛎壳上的吸附特性,并利用容器实验评估硫化氢从孔隙水对有机富集沉积物中的去除效果,以开发沿海沉积物改良剂。破碎的牡蛎壳主要由具有方解石的CaCO3和CaO晶相组成。分批实验表明,硫化氢的去除动力学可以表示为一阶方程,Langmuir图可以很好地描述吸附行为,最大吸附量为12 mg-S g(-1)。容器实验表明,牡蛎壳可有效吸收孔隙水中的硫化氢,并减少上覆水中的氧气消耗。此外。加入碎牡蛎壳后,沉积物的氧化还原电位要高于没有牡蛎壳的对照。因此,得出的结论是,破碎的牡蛎壳可以作为补救富营养化沿海海域有机浓缩沉积物的有效方法。

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