硫酸盐还原菌对甲苯和二甲苯的破坏

N. Verkholiak, T. Peretyatko
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引用次数: 2

摘要

由于人类活动,芳香烃大量进入环境,污染环境。未经充分处理的废水排水管的下降大大降低了水的质量。利用微生物是净化污染环境的一种非常有效的生物方法。污水处理的潜在微生物是硫酸盐还原菌。研究硫酸盐还原菌在不同培养条件下利用二甲苯和甲苯作为碳源的能力。研究对象为硫酸盐还原菌Desulfotomaculum AR1和Desulfovibrio脱硫菌Ya-11。用浊度法测定细菌生物量,用光度法测定培养液中硫酸盐离子和硫化氢的含量。采用高效液相色谱法测定富马酸盐的含量。已经确定了Desulfotomaculum AR1和D. desulicans Ya-11细菌以甲苯和二甲苯为唯一的碳和能量来源的能力。在甲苯环境中,细菌的生长情况较好。比较了对照培养基和含芳香族化合物培养基中硫酸盐离子的还原效率和细菌的生长情况。在控制介质中,硫酸盐离子的还原效率足够高,而在甲苯/二甲苯介质中,硫酸盐的利用效率和硫化氢的积累效率低于控制参数。研究了在二甲苯和甲苯培养基中,富马酸盐存在和不存在情况下,Desulfotomaculum AR1和D. desulicans Ya-11硫酸盐还原菌的生长情况。根据研究结果,在富马酸盐和硫酸盐离子存在的芳香化合物培养基中,所测细菌的生长最佳。富马酸盐在含甲苯培养基中的利用效率在90%以上。富马酸盐可以被硫酸盐还原细菌用作碳的来源、电子的供体和受体。富马酸盐最有可能抑制Desulfotomaculum AR1和D. desulicans Ya-11细菌中的硫酸盐还原,研究表明,乳酸盐、富马酸盐和硫酸盐离子介质中的硫酸盐还原效率是对照组的一半。硫酸盐还原细菌能够在硫酸盐离子作为终端电子受体存在的情况下厌氧降解芳烃。硫酸盐还原菌Desulfotomaculum AR1和D. desulicans Ya-11利用BTEХ -甲苯、二甲苯和硫酸盐离子中的芳烃的能力,使它们在这些污染物的污染废水的生物净化步骤中具有前景。
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Destruction of toluene and xylene by sulfatе-reducing bacteria
As a result of human activity aromatic hydrocarbons enter the environment in large quantities, contaminating it. Dropping of insufficiently treated wastewater drains considerably decrease the quality of water. Quite effective biological methods of purification of contaminated environment are the usage of microorganisms. Prospective microorganisms for sewage treatment are sulfate-reducing bacteria. The purpose of the work was to investigate the ability of sulfate-reducing bacteria to use xylene and toluene as a source of carbon under different cultivation conditions.  The study objects were sulfate-reducing bacteria Desulfotomaculum AR1 and Desulfovibrio desulfuricans Ya-11. The biomass of bacteria was determined turbidimetrically, the content of sulfate ion and hydrogen sulfide – photometrically in the culture fluid. The content of fumarate was determined by the method of high-performance liquid chromatography. The ability of Desulfotomaculum AR1 and D. desulfuricans Ya-11 bacteria to use toluene and xylene as the sole source of carbon and energy has been established. In the toluene environment, a better growth of bacteria was observed. A comparison was made between the efficiency of the reduction of sulfate ions and the growth of bacteria in the control medium and the medium with aromatic compounds. The efficiency of sulfate ions reduction was sufficiently high in the control medium, whereas in the toluene/xylene media the efficiency of sulfate utilization and hydrogen sulfide accumulation was lower compared to the control parameters. The growth of Desulfotomaculum AR1 and D. desulfuricans Ya-11 sulfate-reducing bacteria was investigated in xylene and toluene media in the presence/absence of fumarate. According to the results of the studies, the best growth of the tested bacteria was observed in the medium with aromatic compounds in the presence of fumarate and sulfate ion. Efficiency of use of fumarate in the medium with toluene with bacteria Desulfotomaculum AR1 was more than 90 %. Fumarate can be used by sulfate-reducing bacteria as a source of carbon, donor and acceptor of electrons. Fumarate is most likely to inhibit sulfate reduction in Desulfotomaculum AR1 and D. desulfuricans Ya-11 bacteria, as indicated by studies showing that sulfate reduction efficiency in lactate, fumarate, and sulfate ion media was half that of control. Sulfate-reducing bacteria are capable to anaerobically degrade aromatic hydrocarbons in the presence of sulfate ions as terminal electron acceptors. The ability of sulfate-reducing bacteria Desulfotomaculum AR1 and D. desulfuricans Ya-11 to use the aromatics of the BTEХ – toluene, xylene and sulfate-ions, makes them promising at the biological purification step of contaminated wastewater from these pollutants.
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