Development of Small-scale Integrated Hydroponics—Animal Waste Bioreactor (AWB) for Romaine Lettuce (Lactuca sativa L. var. longofolia) Production

IF 0.6 Q3 MULTIDISCIPLINARY SCIENCES
Elman Cantero Torres, T. B. Sayco, M. M. Cinense, Jonathan Viernes Fabula, Wendy Mateo, Carolyn Grace Galo Somera
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引用次数: 0

Abstract

As improper processing and disposal of animal waste cause negative impacts on the environment, the animal industry sector must shift to more sustainable practices to lessen these effects. Recently, the application of the circular economy concept in agriculture, using animal waste as part of nutrient cycling, has emerged as a sustainable approach. The study aims to develop and test the small-scale integrated hydroponics-animal waste bioreactor (AWB) for romaine lettuce production using chicken manure tea (CMT) derived from dried chicken manure as a primary nutrient source. Three integrated hydroponics-AWB systems, with varying concentrations of CMT at 1,000 ppm, 1,200 ppm, and 1,400 ppm total dissolved solids (maintained within an upper and lower bound of 50 ppm), were constructed, tested, and compared to conventional hydroponics that used a nutrient solution maintained at 1,000 ppm TDS. The test result suggests that the ideal concentration of CMT in the system is 1,000 ppm. Within the optimum manure tea concentration, the small-scale integrated hydroponics-AWB produced romaine lettuce with growth parameters comparable to conventional hydroponics. In addition, increasing the CMT concentration to 1,400 ppm negatively impacts the plant growth parameters of romaine lettuce. The developed small-scale integrated hydroponics-AWB system provides a viable approach for growing lettuce using animal waste as the major source of nutrients. The developed production system could help mitigate the negative environmental effects of improper handling and disposal of animal waste and dependence on chemical-based nutrient solutions in hydroponic crop production.
开发用于生产罗马生菜(Lactuca sativa L. var. longofolia)的小型综合水培-动物粪便生物反应器(AWB)
由于动物粪便的不当加工和处置会对环境造成负面影响,因此畜牧业必须转向更可持续的做法,以减少这些影响。最近,在农业中应用循环经济概念,将动物粪便作为养分循环的一部分,已成为一种可持续的方法。本研究旨在开发和测试用于莴苣生产的小型水培-动物粪便综合生物反应器(AWB),该反应器使用从干鸡粪中提取的鸡粪茶(CMT)作为主要营养源。我们构建了三个水培-AWB 一体化系统,分别使用浓度为 1,000 ppm、1,200 ppm 和 1,400 ppm 的 CMT(总溶解固体含量保持在 50 ppm 的上限和下限内),并对其进行了测试,并与使用总溶解固体含量保持在 1,000 ppm 的营养液的传统水培进行了比较。测试结果表明,系统中 CMT 的理想浓度为 1,000 ppm。在最佳粪茶浓度范围内,小型综合水耕法-水栽法生产的莴苣生长参数与传统水耕法相当。此外,将 CMT 浓度提高到 1,400 ppm 会对莴苣的植物生长参数产生负面影响。所开发的小规模综合水培-AWB 系统为利用动物粪便作为主要营养源种植生菜提供了一种可行的方法。所开发的生产系统有助于减轻水培作物生产中动物粪便的不当处理和处置以及对化学营养液的依赖所造成的负面环境影响。
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来源期刊
Pertanika Journal of Science and Technology
Pertanika Journal of Science and Technology MULTIDISCIPLINARY SCIENCES-
CiteScore
1.50
自引率
16.70%
发文量
178
期刊介绍: Pertanika Journal of Science and Technology aims to provide a forum for high quality research related to science and engineering research. Areas relevant to the scope of the journal include: bioinformatics, bioscience, biotechnology and bio-molecular sciences, chemistry, computer science, ecology, engineering, engineering design, environmental control and management, mathematics and statistics, medicine and health sciences, nanotechnology, physics, safety and emergency management, and related fields of study.
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