首页> 外文期刊>Agricultural Water Management >Heavy metal accumulation and changes in soil enzymes activities and bacterial functional diversity under long-term treated wastewater irrigation in East Central region of Tunisia (Monastir governorate)
【24h】

Heavy metal accumulation and changes in soil enzymes activities and bacterial functional diversity under long-term treated wastewater irrigation in East Central region of Tunisia (Monastir governorate)

机译:突尼斯东部中央地区长期处理废水灌溉下土壤酶活性和细菌功能多样性的重金属积累与细菌功能多样性

获取原文
获取原文并翻译 | 示例
           

摘要

Climate change and population growth generates a decrease in water availability around the world which can compromise the maintenance of sustainable agriculture. Thus, treated wastewater (TWW) became an alternative to minimize water shortage. However, this may indirectly affect the soil's microbial properties. In this study different soils irrigated for 0, 1, 8 and 20 years with TWW were sampled and from the east central region of Tunisia. The objective was to investigate its effect on heavy metal accumulation and enzyme activities of beta-glucosidase, arylsulfatase, acid phosphatase, alkaline phosphatase, urease, dehydrogenase and fluorescein diacetate (FDA). Moreover, carbon microbial biomass (C-mic) using Substrate induced respiration (SIR) technique and microbial functional diversity using Biolog EcoPlateT' were assessed. Our results had shown a crucial decrease of the enzymatic activities in soils that were newly irrigated with TWW, while a crucial increase was recorded in soils exposed to TWW for 20 years. In addition, chemical analysis revealed an important accumulation of heavy metals such as Cd, Cu, Zn and Ni along with the irrigation period, especially in 20 years-irrigated soils with TWW. The assessment of the bacterial functional diversity showed an important change in Average well color development (AWCD) and in diversity index values. Besides, substrate utilization profile revealed a significant variation along with the irrigation periods. In conclusion, long-term TWW irrigation has increased the metabolic activities of the soil's microorganisms. Meanwhile, traces elements accumulation could pose a serious threat for biological processes in soils and a limiting factor for the reuse of TWW in agriculture.
机译:气候变化和人口增长产生了世界各地的水资源可用性,这可能会损害可持续农业的维护。因此,处理过的废水(TWW)成为最小化缺水的替代品。然而,这可能间接地影响土壤的微生物特性。在这项研究中,用TWW灌溉0,1,8和20年的不同土壤被取样,并从突尼斯东部地区采样。目的是研究其对β-葡萄糖苷酶,芳基硫酸酯,酸性磷酸酶,碱性磷酸酶,释放酶,释放酶,脱氢酶和荧光素(FDA)的β-葡糖苷酶,芳基硫酸酯,酸性磷酸酶,碱性,脱氢酶(FDA)的重金属积累和酶活性的影响。此外,评估了使用基材诱导呼吸(SIR)技术和使用Biolog Ecoplatet的微生物呼吸技术和微生物功能多样性的碳微生物生物量(C-MIC)。我们的结果表明,TWW新灌溉的土壤中酶活性的关键降低,而在暴露于TWW的土壤中,在暴露于20年的土壤中记录了至关重要的增加。此外,化学分析表明,重金属如CD,Cu,Zn和Ni的重要积累以及灌溉周期,特别是在20年灌溉的土壤中,TWW。对细菌功能多样性的评估显示了平均良性显影(AWCD)和多样性指标值的重要变化。此外,基板利用型谱揭示了与灌溉周期一起具有显着变化。总之,长期TWW灌溉增加了土壤微生物的代谢活动。同时,痕迹元素积累可能对土壤中的生物过程构成严重威胁,以及农业重复使用的限制因素。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号