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整合生物预处理方法以提高纸浆生物污泥的能量回收。

Integration of biological pre-treatment methods for increased energy recovery from paper and pulp biosludge.

机构信息

Department of Basic Sciences, CET, School of Engineering & Technology, JAIN Deemed-to-be University, 562112, Karnataka, India; Department of Food Technology, Center for Emerging Technology, School of Engineering & Technology, JAIN Deemed-to-be University, 562112, Karnataka, India.

Department of Basic Sciences, CET, School of Engineering & Technology, JAIN Deemed-to-be University, 562112, Karnataka, India; Department of Food Technology, Center for Emerging Technology, School of Engineering & Technology, JAIN Deemed-to-be University, 562112, Karnataka, India.

出版信息

J Microbiol Methods. 2019 May;160:93-100. doi: 10.1016/j.mimet.2019.03.015. Epub 2019 Mar 16.

Abstract

The paper and pulp industry (PPI) produces high quantities of solid and liquid discharge and is regarded as the most polluting industry in the world causing adverse effects to environments and human beings. Hence changes in the way PPI sludge and waste materials are treated is urgently required. Nearly, 10 million tons of waste is generated per year, however PPI waste is enriched with many organic chemicalscontaining a high percentage of lignin, cellulose, and hemicellulose which can be used as valuable raw materials for the production of bioenergy and value-added chemicals. Pretreatment of complex lignocellulosic materials of PPI waste is difficult because of the cellulose crystallinity and lignin barrier. At present most of this waste is recycled in a conventional treatment approach through biological and chemical processes, incurring high cost and low returns. Henceefficient pretreatment techniques are required by which complete conversion of PPI waste is possible. Therefore, the present chapter provides the scope of integration of pretreatment methods through which bioenergy recovery is possible during the PPI waste treatment. Detailed information is presented on the various pre-treatment techniques (chemical, mechanical, enzymatic and biological) in order to increase the efficiency of PPI waste treatment and energy recovery from PPI waste. Along with acid and alkali based efficient chemical treatment process, physical methods (i.e. shearing, high-pressure homogenization, etc.), biochemical techniques (whole cell-based and enzyme-based) and finally biological techniques (e.g. aerobic and anaerobic treatment) are discussed. During each of the treatment processes, scope of energy recovery and bottlenecks of the processes were elaborated. The review thus provides systemic insight into developing efficient pretreatment processes which could increase carbon recovery and treatment efficiency of PPI waste.

摘要

造纸和纸浆工业(PPI)会产生大量的固液排放物,被认为是世界上污染最严重的行业,对环境和人类造成不良影响。因此,迫切需要改变 PPI 污泥和废物的处理方式。每年产生近 1000 万吨废物,但 PPI 废物富含许多有机化学品,其中含有高比例的木质素、纤维素和半纤维素,可作为生产生物能源和高附加值化学品的有价值原料。由于纤维素结晶度和木质素屏障的原因,PPI 废物的复杂木质纤维素材料预处理较为困难。目前,大部分这种废物都是通过生物和化学工艺进行常规处理方式回收的,成本高,回报低。因此,需要高效的预处理技术才能实现 PPI 废物的完全转化。因此,本章提供了预处理方法的整合范围,通过这种方法可以在 PPI 废物处理过程中实现生物能源的回收。详细介绍了各种预处理技术(化学、机械、酶和生物),以提高 PPI 废物处理效率和从 PPI 废物中回收能源。除了酸碱高效化学处理工艺外,还讨论了物理方法(例如剪切、高压匀浆等)、生化技术(全细胞和酶基)以及最后生物技术(例如好氧和厌氧处理)。在每个处理过程中,都详细阐述了能源回收的范围和过程的瓶颈。因此,该综述提供了系统的见解,以开发能够提高 PPI 废物碳回收和处理效率的高效预处理工艺。

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