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Response of soil enzymes to Linear Alkylbenzene Sulfonate (LAS) addition in soil microcosms

机译:土壤酶对土壤线性烷基苯磺酸盐(LAS)添加的反应

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摘要

Soil enzymatic activities (phosphatases, arylsulphatase and dehydrogenase) were measured in microcosm systems designed for the study of the impact of a commercial mixture of Linear Alkylbenzene Sulphonate (LAS) homologues on a xerofluvent agricultural soil. The soil microcosms consisted of glass columns filled with 800 g of dry soil which were fed with sterile commercial LAS solutions at concentrations of 10 or 50 mg l super(-1) for periods of time up to 21 days. A soil microcosm fed with sterile distilled water was included in this study and considered as control. Our results showed that the continuous application of the anionic surfactant to soil increased the values of the enzymes acid and alkaline phosphatases and arylsulphatase. On the contrary, the dehydrogenase activity was decreased by the continuous application of 10 or 50 mg l super(-1) LAS when compared with control microcosms. In addition, a statistically negative correlation was found between this enzymatic activity in the upper portion of the soil columns amended with LAS and the viable counts of heterotrophic aerobic microorganisms. Moreover, in order to test the influence of LAS on nutrient availability and, consequently, on bacteria populations and soil biological activities, phosphate concentration was regularly determined in the microcosm leachates. The phosphate concentration tested in the leachate of the microcosm continuously amended with 50 mg l super(-1) LAS solution was significantly lower than the concentrations detected in the leachate of the microcosms continuously amended with 10 mg l super(-1) LAS throughout the experiment.
机译:在缩微系统中测量了土壤酶活性(磷酸酶,芳基硫酸酯酶和脱氢酶),该系统设计用于研究线性烷基苯磺酸盐(LAS)同系物的商业混合物对干流农业土壤的影响。土壤微观世界由装有800 g干燥土壤的玻璃柱组成,玻璃柱中装有浓度为10或50 mg l super(-1)的无菌商业LAS溶液,时间长达21天。用无菌蒸馏水喂养的土壤微观世界包括在本研究中,并被视为对照。我们的结果表明,将阴离子表面活性剂连续施用到土壤中可增加酸,碱性磷酸酶和芳基硫酸酯酶的价值。相反,与对照微观世界相比,连续施加10或50 mg l super(-1)LAS会降低脱氢酶活性。此外,在用LAS修正的土壤柱上部的这种酶活性与异养需氧微生物的存活数之间发现统计学上的负相关。此外,为了测试LAS对养分有效性的影响,并因此对细菌种群和土壤生物活性的影响,定期确定微观渗滤液中的磷酸盐浓度。在整个过程中,用50 mg l super(-1)LAS溶液连续修正的微观世界渗滤液中测试的磷酸盐浓度显着低于连续用10 mg l super(-1)LAS修正的微观世界渗滤液中检测到的磷酸盐浓度。实验。

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