Determination of the Composition of Wastewater from Individual Processes of Leather Tanning Production in a Small Plant

IF 1.3 Q4 ENGINEERING, ENVIRONMENTAL Journal of Ecological Engineering Pub Date : 2024-01-01 DOI:10.12911/22998993/174833
K. Ignatowicz, Maciej Dziadel
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Abstract

The article introduces one of the leather industries, the tanning industry, which is responsible for some of the most critical processes that leather undergoes before it is used in subsequent parts of the industry. Since the processes carried out require significant amounts of water, they generate equally large amounts of wastewater, which, as industrial wastewater, requires appropriate treatment. Additionally, due to the quantities and complexity of the processes carried out, the chemicals used become demanding in terms of how they are treated and managed. The parameters of wastewater subjected to a collection in a typical tank are changed. In contrast, wastewater from chromium tanning processes, which should be discharged into a separate tank, is a source of chromium pollution with its high content, thus posing a significant danger to the environment. The study made it possible to assess the biodegradability of wastewater generated during production and the concentration of chromium compounds and other pollutants. Based on the results, it was found that the wastewater generated during the production process is biodegradable (except for mixed wastewater), and the concentration of chromium is 2.81–3.11 g/dm 3 .
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小型工厂制革生产各工序废水成分的测定
这篇文章介绍了皮革行业之一的鞣革行业,该行业负责皮革在用于该行业后续部分之前所经历的一些最关键工序。由于所进行的工艺需要大量的水,因此会产生同样大量的废水,这些废水作为工业废水,需要进行适当的处理。此外,由于工艺的数量和复杂性,所使用的化学品对处理和管理的要求也很高。废水在一般水槽中收集后,其参数会发生变化。相比之下,铬鞣制工艺产生的废水本应排入一个单独的池子,但由于铬含量高,成为铬污染源,从而对环境造成严重危害。这项研究对生产过程中产生的废水的生物降解性以及铬化合物和其他污染物的浓度进行了评估。结果发现,生产过程中产生的废水可生物降解(混合废水除外),铬的浓度为 2.81-3.11 g/dm 3。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Ecological Engineering
Journal of Ecological Engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
2.60
自引率
15.40%
发文量
379
审稿时长
8 weeks
期刊介绍: - Industrial and municipal waste management - Pro-ecological technologies and products - Energy-saving technologies - Environmental landscaping - Environmental monitoring - Climate change in the environment - Sustainable development - Processing and usage of mineral resources - Recovery of valuable materials and fuels - Surface water and groundwater management - Water and wastewater treatment - Smog and air pollution prevention - Protection and reclamation of soils - Reclamation and revitalization of degraded areas - Heavy metals in the environment - Renewable energy technologies - Environmental protection of rural areas - Restoration and protection of urban environment - Prevention of noise in the environment - Environmental life-cycle assessment (LCA) - Simulations and computer modeling for the environment
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