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量热法在氧化土中农药微生物降解研究中的应用。

Application of calorimetry to microbial biodegradation studies of agrochemicals in oxisols.

作者信息

Critter S A, Airoldi C

机构信息

Instituto de Química, Universidade Estadual de Campinas, São Paulo, Brazil.

出版信息

J Environ Qual. 2001 May-Jun;30(3):954-9. doi: 10.2134/jeq2001.303954x.

Abstract

Calorimetry was used to monitor the inhibitory effect caused by the bipyridynium diquaternary salts paraquat, diquat, and phosphamidon on microbial activity in a Red Latosol soil (Oxisol). The thermal effect was recorded on samples composed of 1.50 g of soil, 6.0 mg of glucose, 6.0 mg of ammonium sulfate, and different masses of an inhibitor ranging from zero to 8.00 mg, under a controlled moisture content of 35%. Thermal effects of each pollutant on the degradation curves of glucose in the soil were compared. Increasing amounts of the inhibitor caused a decrease in the thermal effect from -2234 to -1987 kJ mol(-1) for paraquat, -1670 to -1306 kJ mol(-1) for diquat, and -2239 to -589 kJ mol(-1) for phosphamidon. The last xenobiotic agent caused a significant inhibitory effect on the microbial activity of the soil. The results of relative efficiency, eta = deltaH/deltaH', referring to the enthalpic value with (deltaH) and without (deltaH') agrochemical in the soil, exhibited a significant correlation. From this correlation obtained for the ranges 2.00 to 8.00, 1.30 to 8.00, and 1.20 to 5.80 mg of the agrochemicals paraquat, diquat, and phosphamidon, respectively, the following eta values were calculated: 0.993 to 0.894, 0.668 to 0.522, and 0.896 to 0.236, respectively, during the degradation of glucose in the soil. The largest relative efficiency for paraquat implies that this agrochemical can be metabolized by microbial activity.

摘要

采用量热法监测二吡啶鎓二季铵盐百草枯、敌草快和磷胺对赤红壤(氧化土)中微生物活性的抑制作用。在35%的控制含水量条件下,对由1.50克土壤、6.0毫克葡萄糖、6.0毫克硫酸铵和质量从0至8.00毫克不等的不同质量抑制剂组成的样品记录热效应。比较了每种污染物对土壤中葡萄糖降解曲线的热效应。抑制剂用量增加导致百草枯的热效应从-2234降至-1987 kJ mol(-1),敌草快从-1670降至-1306 kJ mol(-1),磷胺从-2239降至-589 kJ mol(-1)。最后一种外源化学物质对土壤微生物活性产生了显著抑制作用。关于土壤中含(ΔH)和不含(ΔH')农用化学品的焓值的相对效率η = ΔH/ΔH'的结果显示出显著相关性。根据分别针对2.00至8.00、1.30至8.00和1.20至5.80毫克农用化学品百草枯、敌草快和磷胺获得的该相关性,在土壤中葡萄糖降解过程中分别计算出以下η值:0.993至0.894、0.668至0.522和0.896至0.236。百草枯的最大相对效率表明这种农用化学品可被微生物活性代谢。

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