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奶酪乳清的厌氧消化:发展中国家乳品行业的能源和营养潜力。

Anaerobic digestion of cheese whey: Energetic and nutritional potential for the dairy sector in developing countries.

机构信息

Grupo de Investigación en Tecnologías de Valorización de Residuos y Fuentes Agrícolas e Industriales para la Sustentabilidad Energética (INTERFASE), Escuela de Ingeniería Química, Universidad Industrial de Santander, Carrera 27, Calle 9 Ciudad Universitaria, Bucaramanga, Colombia.

Grupo de Investigación en Tecnologías de Valorización de Residuos y Fuentes Agrícolas e Industriales para la Sustentabilidad Energética (INTERFASE), Escuela de Ingeniería Química, Universidad Industrial de Santander, Carrera 27, Calle 9 Ciudad Universitaria, Bucaramanga, Colombia.

出版信息

Waste Manag. 2018 Jan;71:711-718. doi: 10.1016/j.wasman.2017.09.026. Epub 2017 Oct 7.

Abstract

Cheese whey (CW) is the main waste generated in the cheesemaking process and has high organic matter content and acidity. Therefore, CW disposal is a challenge for small to medium enterprises (SMEs) in the dairy industry that do not have any type of treatment plant. Anaerobic digestion (AD) is an attractive process for solving this problem. The aim of this research was to determine the biomethane and struvite precipitation potentials of CW from four dairy SMEs. First, changes in CW properties (organic matter and pH) were evaluated. Second, biomethane and struvite potentials were assessed using cattle slurry as inoculum. The organic matter in CW varied from 40 to 65gVS/kg, 65 to 140g COD/L, and 2 to 10g/L for VFAs depending on the sampling time and type of sample. The pH of the CW samples ranged from 3 to 6.5. In the anaerobic biodegradability analysis, methane yields reached 0.51 to 0.60L CH/g VS, which represented electrical and caloric potentials of 54 and 108kWh/m for CW, respectively. Organic matter removal in all experiments was above 83%. Moreover, anaerobic digestates presented NH/PO molar ratios between 2.6 and 4.0, which are adequate for struvite precipitation with potential production of 8.5-10.4g struvite/L CW. Finally, the use of biogas as energetic supplement and struvite as soil fertilizer, represents economics saves of US$ 6.91/m CW and US$ 5.75/m CW in therms of electricity and fertilizer use, respectively. The energetic, agricultural and economic potentials, evidence that AD process is a feasible alternative for cheese whey treatment.

摘要

乳清(CW)是奶酪制作过程中的主要废物,具有高有机物含量和酸性。因此,对于没有任何处理厂的中小型乳制品企业(SMEs)来说,CW 的处理是一个挑战。厌氧消化(AD)是解决这个问题的一种有吸引力的方法。本研究的目的是确定来自四家乳制品 SME 的 CW 的生物甲烷和鸟粪石沉淀潜力。首先,评估了 CW 特性(有机物和 pH 值)的变化。其次,使用牛粪便作为接种物评估了生物甲烷和鸟粪石的潜力。CW 中的有机物含量在采样时间和样品类型的不同下,变化范围为 40 至 65gVS/kg、65 至 140g COD/L 和 2 至 10g/L 的 VFAs。CW 样品的 pH 值范围从 3 到 6.5。在厌氧生物降解性分析中,甲烷产量达到 0.51 至 0.60L CH/g VS,分别代表 CW 的电潜力和热潜力为 54 和 108kWh/m。所有实验中的有机物去除率均高于 83%。此外,厌氧消化物中的 NH/PO 摩尔比在 2.6 到 4.0 之间,足以进行鸟粪石沉淀,潜在产量为 8.5-10.4g 鸟粪石/L CW。最后,使用沼气作为能源补充和鸟粪石作为土壤肥料,分别代表电力和肥料使用方面的每立方米 CW 节省 6.91 美元和 5.75 美元的经济节省。从能源、农业和经济潜力来看,AD 工艺是处理乳清的一种可行替代方法。

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