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Pengaruh Pengenceran dan Pengadukan Limbah Industri Ikan Nila terhadap Peningkatan Produksi Biogas dengan Menggunakan Rumen Sapi sebagai Starter

机译:罗非鱼工业发酵液稀释混合罗非鱼对提高沼气产量的影响

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摘要

Tilapia fish industry solid waste is resulting from the process of weeding, washing, and preparation. Tilapia fish industry solid waste has a high content of organic material. This would give to environmental issues when waste disposed into the environment. Therefore, an alternative processing by converting solid waste into biogas from Tilapia fish industry solid waste with anaerobic process. This research aims to enhancement of biogas production from Tilapia fish industry solid waste by using a rumen as a starter. The treatment was by dilution and stirring intencity in a samples with crushed and without crushed. This research is an experimental-laboratoris, where research is done in a scale laboratory. Methods used to research is a batch reactor using in anaërobic fermentation process. The results of this research show that Fish tilapia industry solid waste can generate biogas after rumen fluid with anaerobic processes continuously until 20 days. On the variable of the total volume production results in dilution of wastewater occur at the highest addition of water 150 ml with the treatment without chrushed i.e. 816 ml. On the variable total production volume result of stirring biogas high occur in stirring 3 x 150 ml with the dilution of the treatment without chrushed i.e. 1057 ml. On these variables was determine the influence measurement of chemical oxygen demand (COD) allowance against the production of biogas produced. The efficiency removal of COD occur at the highest stage without stirring sample A 100 ml a dilution that is 91%. The whole pH measurements on a variable decrease from the initial pH values 7 to pH 5.
机译:罗非鱼鱼业的固体废物来自除草,洗涤和制备过程。罗非鱼鱼业固体废物中有机物质含量高。当废物被丢弃到环境中时,这将带来环境问题。因此,通过厌氧工艺将罗非鱼鱼业固体废物转化为沼气的一种替代方法。这项研究旨在通过使用瘤胃作为发酵剂来提高罗非鱼鱼业固体废物的沼气产量。通过在压碎的和未压碎的样品中稀释和搅拌强度来进行处理。这项研究是一个实验实验室,在规模实验室中进行研究。用于研究的方法是在厌氧发酵过程中使用的间歇式反应器。研究结果表明,鱼罗非鱼工业固体废物经过瘤胃液厌氧处理后可连续产生沼气,直至20天。在总产量的变量上,废水的稀释发生在最高水量为150 ml的情况下,并且不经过粉碎处理即816 ml。在搅拌生物气的总产量可变的结果下,在搅拌3 x 150 ml的情况下,如果不稀释处理液(即1057 ml),则产生高浓度的沼气。在这些变量上确定化学需氧量(COD)配额对所产生沼气产量的影响度量。 COD的高效去除发生在最高阶段,而无需搅拌样品A,即100 ml稀释度为91%。整个pH测量值从初始pH值7逐渐降低到pH 5。

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