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农业杀虫剂在厌氧间歇式反应器中的生物降解行为。

Biodegradation behavior of agricultural pesticides in anaerobic batch reactors.

作者信息

Elefsiniotis Panagiotis, Li Wei

机构信息

Department of Civil and Environmental Engineering, University of Auckland, New Zealand.

出版信息

J Environ Sci Health B. 2008 Feb;43(2):172-8. doi: 10.1080/03601230701795197.

DOI:10.1080/03601230701795197
PMID:18246509
Abstract

This study explored the biodegradation potential of two agricultural pesticides (2,4-D and isoproturon) as well as their effect on the performance of the anaerobic digestion process. Three 3.5 L batch reactors were used, having the same initial isoproturon concentration (25 mg/L) and different 2,4-D concentrations (i.e. 0, 100, or 300 mg/L, respectively). All systems were fed with equal amounts of primary sludge and digested sludge and operated at the low mesophilic range (32 +/- 2 degrees C). Following an acclimation period of approximately 30 days, complete 2,4-D removal was achieved, whereas isoproturon biodegradation was practically negligible. The presence of 2,4-D did not have a direct effect on acidogenesis since soluble organic carbon [expressed either as volatile fatty acids (VFAs) or as total organic carbon (TOC)] peaked within the first 10 days of operation in all bioreactors. Utilization of VFAs however appeared to follow two distinct patterns: one pattern was represented by acetate and butyrate (i.e. no acid accumulation) while the other was followed by propionate, isobuturate, valerate and isovalerate (i.e. acid accumulation, duration of which was related to the initial 2,4-D concentration). On the whole, all reactors exhibited a successful digestion performance demonstrated by complete VFAs utilization, considerable gas production (containing 45 to 65% methane by volume), substantial volatile suspended solids (VSS) reduction (42 to 50%), as well as pH and alkalinity recovery.

摘要

本研究探讨了两种农用农药(2,4-二氯苯氧乙酸和异丙隆)的生物降解潜力及其对厌氧消化过程性能的影响。使用了三个3.5升的间歇式反应器,初始异丙隆浓度相同(25毫克/升),2,4-二氯苯氧乙酸浓度不同(分别为0、100或300毫克/升)。所有系统均加入等量的初沉污泥和消化污泥,并在低温嗜温范围内(32±2℃)运行。经过约30天的适应期后,2,4-二氯苯氧乙酸实现了完全去除,而异丙隆的生物降解实际上可以忽略不计。2,4-二氯苯氧乙酸的存在对产酸没有直接影响,因为在所有生物反应器运行的前10天内,可溶性有机碳(以挥发性脂肪酸或总有机碳表示)达到峰值。然而,挥发性脂肪酸的利用似乎遵循两种不同的模式:一种模式以乙酸盐和丁酸盐为代表(即无酸积累),另一种模式以丙酸盐、异丁酸盐、戊酸盐和异戊酸盐为代表(即酸积累,其持续时间与初始2,4-二氯苯氧乙酸浓度有关)。总体而言,所有反应器均表现出成功的消化性能,表现为挥发性脂肪酸的完全利用、可观的气体产量(体积含甲烷45%至65%)、大量挥发性悬浮固体的减少(42%至50%)以及pH值和碱度的恢复。

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