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Recovery of humic substances from leachate nanofiltration concentrate by a two-stage process of tight ultrafiltration membrane

机译:通过紧密的超滤膜两阶段过程从渗滤液纳滤浓缩物中回收腐殖质

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摘要

Membrane bioreactor (MBR) and nanofiltration (NF) hybrid process has dominated in the treatment of leachate, however, NF concentrate generated from the process remains a challenge to be addressed. Given the high content of humic substances (HS) in NF concentrate, a promising approach by using a two-stage tight ultrafiltration (TUF) process for recovering HS as a water-soluble fertilizer was proposed. The effect of operating factors on membrane flux and rejection of organic matters, and the concentration and desalination performance of this TUF process were investigated on pilot scale. The pressure and temperature posed significant influence on the flux, while slight impact on the rejection of organics, and pH had negligible effect on the flux and the retention of organics. During the concentration and desalting process, the chemical oxygen demand (COD) retention increased slightly from 91% to 94%, and the rejections of divalent and monovalent ions had the respective range of 21-62% and 10-26%, except chloride ion with a negative rejection. The results demonstrated that HS dominated in organics could be effectively separated and refined from inorganic salts. The end concentrate achieved with the two-stage TUF process can meet the requirements of Chinese nation professional standards for water-soluble fertilizers containing HS. This study illustrates the feasibility of recycling HS from NF concentrate. (C) 2017 Elsevier Ltd. All rights reserved.
机译:膜生物反应器(MBR)和纳滤(NF)混合工艺在渗滤液的处理中占主导地位,但是,从该工艺中产生的NF浓缩物仍然是一个有待解决的挑战。鉴于NF浓缩物中腐殖质(HS)的含量很高,提出了一种有前途的方法,该方法采用两步紧密超滤(TUF)工艺回收HS作为水溶性肥料。在中试规模上研究了操作因素对膜通量和有机物截留的影响,以及该TUF工艺的浓度和脱盐性能。压力和温度对助熔剂有显着影响,而对有机物的排阻影响很小,pH对助熔剂和有机物的保留影响可忽略不计。在浓缩和脱盐过程中,化学需氧量(COD)保留率从91%略微增加到94%,二价和一价离子的排斥率分别为21-62%和10-26%,氯离子除外负面的拒绝。结果表明,可以有效地从无机盐中分离和精制以有机物为主的HS。通过两步TUF工艺获得的最终精矿可以满足中国有关含HS水溶性肥料的专业标准的要求。这项研究说明了从NF精矿中回收HS的可行性。 (C)2017 Elsevier Ltd.保留所有权利。

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