Department of Pesticide Chemistry & Technology, Faculty of Agriculture, Alexandria University, Alexandria, Egypt.
Department of Soil & Water Science, Faculty of Agriculture, Alexandria University, Alexandria, Egypt.
Environ Monit Assess. 2024 Mar 13;196(4):363. doi: 10.1007/s10661-024-12494-5.
Improper pesticide handling is the main cause of contamination of the environment in agricultural systems. This could be caused by leakage of spraying liquid, leftovers, and inappropriate washing of spraying equipment. This study assessed the ability of suggested biomixture modules for remediate repetitive cycles of high chlorpyrifos doses. In three consecutive treatments, four tested modules were contaminated with 160 µg g chlorpyrifos. Chlorpyrifos residues, dehydrogenase activity, and microbial respiration were continuously monitored for 22 weeks. Six bacterial consortia were isolated at the end of the experiment from four treated modules (B, BF, S, and SF) and two from untreated modules (B and S). The isolated consortium efficiency in degrading chlorpyrifos was studied. The results revealed that the best chlorpyrifos removal efficiency was achieved when using the stimulated biomixture module (BF) recorded 98%, 100%, and 89%, at the end of three chlorpyrifos treatments, respectively. Such removal efficiency was compatible with the biological activity results of the tested modules: dehydrogenase activity and microbial respiration. There was no difference in the efficiency among the S, B, and BF consortia. The results presented here demonstrate that the combination of vermicompost, wheat straw, soil, and NPK (stimulated biomixture module) can successfully reduce the risk of a point source of pesticide pollution.
不当的农药处理是农业系统中环境污染的主要原因。这可能是由于喷雾液体泄漏、残留物和喷雾设备清洗不当造成的。本研究评估了建议的生物混合模块修复高氯氰菊酯剂量重复循环的能力。在连续三次处理中,四个测试模块被 160µg g 氯氰菊酯污染。持续监测了 22 周的氯氰菊酯残留、脱氢酶活性和微生物呼吸。实验结束时,从四个处理模块(B、BF、S 和 SF)和两个未处理模块(B 和 S)中分离出六个细菌共生体。研究了分离出的共生体降解氯氰菊酯的效率。结果表明,当使用刺激生物混合模块(BF)时,氯氰菊酯的去除效率最高,在三次氯氰菊酯处理结束时,分别达到 98%、100%和 89%。这种去除效率与测试模块的生物活性结果一致:脱氢酶活性和微生物呼吸。S、B 和 BF 共生体之间的效率没有差异。本研究结果表明,蚯蚓粪、麦秸、土壤和 NPK(刺激生物混合模块)的组合可以成功降低农药污染点源的风险。