A Chitosan-Based Flocculation Method for Efficient Recovery of High-Purity B-Phycoerythrin from a Low Concentration of Phycobilin in Wastewater

Author:

Liang Yingye12,Deng Luming1ORCID,Feng Zhenhui12,Ouyang Qianqian123ORCID,Wu Xia13,Quan Weiyan123,Zhu Yuzhen234,Ye Hua1,Wu Kefeng124,Luo Hui123

Affiliation:

1. Marine Biomedical Research Institution, Guangdong Medical University, Zhanjiang 524023, China

2. Guangdong (Zhanjiang) Provincial Laboratory of Southern Marine Science and Engineering, Zhanjiang 524023, China

3. Zhanjiang Engineering Research Center for Algae High-Value Utilization, Zhanjiang 524023, China

4. The Marine Biomedical Research Institute of Guangdong Zhanjiang, Zhanjiang 524023, China

Abstract

Increasing the yield and purity of B-phycoerythrin (B-PE) can improve the economic state of microalgae industrial processing. One method of cost reduction involves the recovery of remaining B-PE from wastewater. In this study, we developed a chitosan (CS)-based flocculation technique for the efficient recovery of B-PE from a low concentration of phycobilin in wastewater. We investigated the effects of the molecular weight of chitosan, B-PE/CS mass ratio, and solution pH on the flocculation efficiency of CS and the effects of phosphate buffer concentration and pH on the recovery rate of B-PE. The maximum flocculation efficiency of CS, recovery rate, and purity index of B-PE were 97.19% ± 0.59%, 72.07% ± 1.37%, and 3.20 ± 0.025 (drug grade), respectively. The structural stability and activity of B-PE were maintained during the recovery process. Economic evaluation revealed that our CS-based flocculation method is more economical than the ammonium sulfate precipitation method is. Furthermore, the bridging effect and electrostatic interaction play important roles in B-PE/CS complex flocculation process. Hence, our study provides an efficient and economical method to recover high-purity B-PE from a low concentration of phycobilin in wastewater, which promoted the application of B-PE as a natural pigment protein in food and chemical applications.

Funder

Fund of Southern Marine Science and Engineering Guangdong Laboratory

Science and Technology Program of Guangdong Province

Special Funds for Economic Development of Marine Economy of Guangdong Province, China

Special Science and Technology Innovation Project of Guangdong Province, China

Discipline Construction Project of Guangdong Medical University, China

Ph.D. Start-up Fund of Guangdong Medical University

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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