Influence of Particle Size and Zeta Potential in Treating Highly Coloured Old Landfill Leachate by Tin Tetrachloride and Rubber Seed

渗滤液 Zeta电位 絮凝作用 化学 天然橡胶 粒径 制浆造纸工业 核化学 环境化学 材料科学 有机化学 纳米颗粒 纳米技术 工程类 物理化学
作者
Siti Fatihah Ramli,Hamidi Abdul Aziz,Fatehah Mohd Omar,Mohd Suffian Yusoff,Herni Halim,Mohamad Anuar Kamaruddin,Kamar Shah Ariffin,Yung‐Tse Hung
出处
期刊:International Journal of Environmental Research and Public Health [MDPI AG]
卷期号:19 (5): 3016-3016 被引量:6
标识
DOI:10.3390/ijerph19053016
摘要

Old leachate normally has a low organic compound content, poor biodegradability and is hard to biologically treat. The efficacy of tetravalent metal salts as a coagulant and the application of a natural coagulant as a flocculant in landfill leachate treatment is still inconclusive. Hence, this study aimed to evaluate the potential application of tin tetrachloride (SnCl4) as the main coagulant and the rubber seed (Hevea brasiliensis) (RS) as the natural coagulant aid as the sole treatment in eradicating highly coloured and turbid stabilised landfill leachate present at one of the old local landfills in Malaysia. The standard jar test conducted revealed that SnCl4 was able to eliminate 99% and 97.3% of suspended solids (SS) and colour, respectively, at pH8, with 10,000 mg/L dosages, an average particle size of 2419 d·nm, and a zeta potential (ZP) of −0.4 mV. However, RS was found to be ineffective as the main coagulant and could only remove 46.7% of SS and 76.5% of colour at pH3 with 6000 mg/L dosages, and also exhibited smaller particles (933 d·nm) with ZP values of −6.3 mV. When used as a coagulant aid, the polymer bridging mechanism in RS helped in reducing the SnCl4 concentration from 10,000 mg/L to 8000 mg/L by maintaining the same performances. The presence of 1000 mg/L RS as a coagulant aid was able to remove 100% of SS and 97.6% of colour. The study concluded that RS has the potential to be used together with SnCl4 in treating concentrated leachate with SS and colour.
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