Preparation and Dewatering Performance Evaluation of CPAD Sludge Conditioner: From Small Scale to Pilot Scale.

IF 2.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Yongjun Sun, Yuhan Ji, Rui Wang, Kun Wu, Wenquan Sun
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引用次数: 0

Abstract

This study aimed to develop a novel sludge conditioner (CPAD) based on carboxymethyl chitosan (CTS) to address the low efficiency of municipal sludge dewatering. CPAD was prepared by grafting acrylamide (AM) and dimethyldiallylammonium chloride (DADMAC) onto CTS, resulting in a honeycomb-like porous structure, and its flocculation and dewatering performance were validated through laboratory and pilot-scale tests. The novelty of CPAD lies in its combination of the environmental friendliness of natural polymers and the high efficiency of synthetic polymers, significantly reducing the specific resistance to filtration (SRF) and moisture content of sludge. Experimental results showed that at a pH of 6 and a CPAD dosage of 3 kg/t dry sludge (DS), the SRF of the sludge decreased by 90.15%, and the moisture content decreased by 11.85%. Under pilot-scale conditions, with a filtration pressure of 1.2 MPa and a filtration time of 90 min, CPAD reduced the sludge moisture content to 59.3%. Additionally, CPAD effectively neutralized the sludge's electronegativity, reduced electrostatic repulsion between particles, promoted sludge particle bridging and aggregation, and lowered the chemical oxygen demand (COD) and total organic carbon (TOC) of the filtrate as well as the sludge viscosity. This study provides new insights and technical support for developing low-cost, efficient, and environmentally friendly sludge conditioners. SUMMARY: CPAD promotes sludge particle aggregation and reduces sludge viscosity. The mud cake produced by CPAD were environmentally friendly. Sludge conditioner CPAD is nontoxic and harmless and does not cause secondary pollution. CPAD can effectively reduce the moisture content of sludge cake.

CPAD污泥调整剂的制备及脱水性能评价:从小规模到中试规模。
为解决城市污泥脱水效率低的问题,研究了基于羧甲基壳聚糖(CTS)的新型污泥调整剂(CPAD)。将丙烯酰胺(AM)和二甲基二烯丙基氯化铵(DADMAC)接枝在CTS上制备CPAD,得到蜂窝状多孔结构,并通过室内和中试试验验证了其絮凝和脱水性能。CPAD的新颖之处在于它结合了天然聚合物的环保性和合成聚合物的高效率,显著降低了污泥的比过滤阻力(SRF)和含水率。实验结果表明,在pH = 6、CPAD投加量为3 kg/t干污泥(DS)时,污泥的SRF降低了90.15%,含水率降低了11.85%。在中试条件下,过滤压力为1.2 MPa,过滤时间为90 min, CPAD将污泥含水率降低至59.3%。此外,CPAD还能有效中和污泥的电负性,降低颗粒间的静电斥力,促进污泥颗粒桥接和聚集,降低滤液的化学需氧量(COD)和总有机碳(TOC),降低污泥粘度。本研究为开发低成本、高效、环保的污泥调节剂提供了新的思路和技术支持。总结:CPAD促进污泥颗粒聚集,降低污泥粘度。CPAD生产的泥饼是环保的。污泥调节剂CPAD无毒无害,不产生二次污染。CPAD能有效降低污泥饼的含水率。
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来源期刊
Water Environment Research
Water Environment Research 环境科学-工程:环境
CiteScore
6.30
自引率
0.00%
发文量
138
审稿时长
11 months
期刊介绍: Published since 1928, Water Environment Research (WER) is an international multidisciplinary water resource management journal for the dissemination of fundamental and applied research in all scientific and technical areas related to water quality and resource recovery. WER''s goal is to foster communication and interdisciplinary research between water sciences and related fields such as environmental toxicology, agriculture, public and occupational health, microbiology, and ecology. In addition to original research articles, short communications, case studies, reviews, and perspectives are encouraged.
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