Jayakrishnan Unnikrishnan, Deka Deepmoni, Das Gopal
Centre for the Environment, Indian Institute of Technology Guwahati, Guwahati, Assam, India.
Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati, Assam, India.
Water Environ Res. 2021 Jul;93(7):1019-1031. doi: 10.1002/wer.1490. Epub 2020 Dec 14.
The study investigates the implications of waste feedstock, inoculum origin, and pretreatment on volatile fatty acids accumulation (VFA). The acidogenic fermentation of the feedstocks, rice mill effluent (RME), and brewery effluent (BE) was studied using untreated and pretreated (cyclic heat-acid shock) brewery anaerobic sludge as inoculum. The pretreatment was successful in refining and stabilizing VFA production from the feedstocks. The fermentation of RME with pretreated sludge had an enhanced acetate yield of 0.37 ± 0.02 mgCOD/mgCOD, even to odd ratio of 20.97 ± 0.08 mg/mg and the highest butyrate yield of 0.39 ± 0.01 mgCOD/mgCOD compared to untreated system. The pretreated system had stability in COD and pH profile, while VFA content depends on the origin of inoculum. Pretreatment inhibited the carbon sinks and augmented acetate-butyrate type metabolism with stable performance. The fermentation of RME by pretreated sludge produced a higher even-numbered VFAs and enhanced even to odd ratio in comparison with fermentation of BE, thereby affecting polymer composition and property. PRACTITIONER POINTS: The pretreated system had stable acidification, chemical oxygen demand, and pH profile. The pretreated system had higher acetate and butyrate yield compared to the untreated system. Rice mill effluent acidified with pretreated sludge had the highest even to odd ratio, 20.97 mg/mg. The even to odd ratio for acidification of brewery effluent was insignificant. Pretreatment, the origin of sludge, and the effluent had a regulatory effect on acidification.
该研究调查了废弃原料、接种物来源和预处理对挥发性脂肪酸积累(VFA)的影响。使用未经处理和经过预处理(循环热酸冲击)的啤酒厂厌氧污泥作为接种物,研究了原料(碾米厂废水(RME)和啤酒厂废水(BE))的产酸发酵。预处理成功地优化并稳定了原料的VFA产量。与未处理系统相比,用预处理污泥发酵RME时,乙酸盐产量提高至0.37±0.02 mgCOD/mgCOD,偶奇比为20.97±0.08 mg/mg,丁酸盐产量最高,为0.39±0.01 mgCOD/mgCOD。预处理系统在化学需氧量(COD)和pH值方面具有稳定性,而VFA含量取决于接种物的来源。预处理抑制了碳汇,并增强了乙酸盐-丁酸盐类型的代谢,性能稳定。与BE发酵相比,用预处理污泥发酵RME产生的偶数VFA更高,偶奇比增加,从而影响聚合物的组成和性能。从业者要点:预处理系统具有稳定的酸化、化学需氧量和pH值。与未处理系统相比,预处理系统的乙酸盐和丁酸盐产量更高。用预处理污泥酸化的碾米厂废水偶奇比最高,为20.97 mg/mg。啤酒厂废水酸化的偶奇比不显著。预处理、污泥来源和废水对酸化有调节作用。