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Rice Cultivation without Synthetic Fertilizers and Performance of Microbial Fuel Cells (MFCs) under Continuous Irrigation with Treated Wastewater

机译:在连续灌溉中没有合成肥料,无需合成肥料和微生物燃料电池(MFCS)的水稻培养,用处理废水

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To obtain a high rice yield and quality for animal feed without synthetic fertilizers, an experiment with bench-scale apparatus was conducted by applying continuous irrigation with treated municipal wastewater (TWW). Uniform rice seedlings of a high-yield variety ( Oryza sativa L., cv. Bekoaoba) were transplanted in five treatments to examine different TWW irrigation directions (“bottom-to-top” and “top-to-top” irrigation) and fertilization practices (with and without P-synthetic fertilizers) as well as one control that simulated the irrigation and fertilization management of normal paddy fields. The highest rice yield (14.1 t ha ?1 ), shoot dry mass (12.9 t ha ?1 ), and protein content in brown rice (14.6%) were achieved using bottom-to-top irrigation, although synthetic fertilizers were not applied. In addition, this subsurface irrigation system could contribute to environmental protection by removing 85–90% of nitrogen from TWW more effectively than the top-to-top irrigation, which showed a removal efficiency of approximately 63%. No accumulation of heavy metals (Fe, Mn, Cu, Zn, Cd, Ni, Pb, Cr, and As) in the paddy soils was observed after TWW irrigation for five months, and the contents of these metals in the harvested brown rice were lower than the permissible limits recommended by international standards. A microbial fuel cell system (MFC) was installed in the cultivation system using graphite-felt electrodes to test the capacity of electricity generation; however, the electricity output was much lower than that reported in normal paddy fields. Bottom-to-top irrigation with TWW can be considered a potential practice to meet both water and nutrient demand for rice cultivation in order to achieve a very high yield and nutritional quality of cultivated rice without necessitating the application of synthetic fertilizers.
机译:为了获得高水稻产量和用于没有合成肥料的动物饲料的质量,通过使用经处理的市政废水(TWW)连续灌溉进行了具有台级装置的实验。高产品种的均匀米饭(Oryza sativa,Cv。Bekoaoba)在五个治疗方法中移植,以检查不同的TWW灌溉方向(“底部到顶部”和“顶部”灌溉)和受精实践(有没有P合成肥料)以及模拟正常稻田灌溉和施肥管理的一种控制。大米产率(14.1 T ha = 1),芽干料(12.9吨Ha = 1),使用底灌灌浆脱米饭(14.6%),尽管未应用合成肥料,但耐糙米中的蛋白质含量。此外,该地下灌溉系统可以通过比顶部灌溉更有效地从TWW从TWW中除去85-90%的氮气来促进环境保护,这表明除去效率约为约63%。在TWW灌溉五个月后观察到水稻土中的重金属(Fe,Mn,Cu,Zn,Cd,Ni,Pb,Cr和As)的积累,并且在收获的糙米中这些金属的内容物是低于国际标准推荐的允许限制。使用石墨毡电极安装微生物燃料电池系统(MFC),以测试发电能力;然而,电力输出远低于正常稻田报告的输出。 TWW的底部至多次灌溉可被认为是满足水稻种植的水和养分需求的潜在做法,以实现培养水稻的高产率和营养品质而不需要应用合成肥料。

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