材料特性对手工蜡染废水水质的影响

I. A. Dewi, S. Mustaniroh, S. Fajriani, A. Subagiyo
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引用次数: 0

摘要

Batu Sidomulyo蜡染是一家使用合成染料的手工蜡染中小企业(SMEs)。在蜡染工艺中使用染色工艺会产生大量的废水,对环境造成有害影响。迄今为止,蜡染Sidomulyo SME采用两种类型的森布材料染色前的工艺包括森布有媒染法和无媒染法的工艺。采用媒染法的桑布在明矾中浸泡24小时后进行嫁接。本研究的目的是根据织物材料在包埋前的处理特点,分析所产生的蜡染废水的质量。污水处理技术采用微型污水处理厂(WWTP)的技术转让,该工厂利用生物过滤技术,采用两个处理隔间,包括(1)从废水中分离蜡含量,(2)通过混合混凝剂将废水与有毒有害物质废物分离。在Mini WWTP处理前后进行了pH、BOD、COD、TSS和油脂的测定。结果表明:微型污水处理厂出水pH值为6.86,总悬浮物(TSS)值为90.16 mg/L;同时,BOD、COD和油脂含量虽有显著降低,但仍超过质量标准,分别为90.16、253.8和4.5 mg/L。
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The Effect of Material Characteristics on the Quality of Hand-crafted Batik Wastewater
Batik Sidomulyo Batu City is one of the hand-crafted batik Small and Medium Enterprises (SMEs) that uses synthetic dyes. The use of dyeing technology in batik making process generates a large amount of wastewater, which can lead a harmful effect to the environment. To date, Batik Sidomulyo SME uses two types of mori cloth material before dyeing process include mori cloth with and without the mordanting process. The mori cloth with mordanting process was soaked in the alum for 24 hours before the grafting process was carried out. The purpose of this study was to analyze the quality of batik wastewater produced based on the characteristics of the treatment of the fabric material before the embedding process was carried out. Wastewater treatment technology uses technology transfer from Mini Wastewater Treatment Plant (WWTP) which utilizes biofilter technology using two treatment compartment including (1) separation of wax content from wastewater and (2) separation of wastewater from toxic and hazardous material waste by mixing with a coagulant. Measurements of pH, BOD, COD, TSS, and oil/fat were carried out before and after the treatment of Mini WWTP. The results showed that the pH of the wastewater generated from the mini WWTP outlet was following the quality standard of 6.86 and the total suspended solids (TSS) value of 90.16 mg/L. Meanwhile, the values of BOD, COD, and oil/fat content have been significantly reduced but still exceeded that of the quality standards, with the value of 90.16, 253.8, and 4.5 mg/L, respectively.
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