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Improving characteristics of biochar produced from collagen-containing solid wastes based on protease application in leather production

机译:基于皮革生产中的蛋白酶应用,改善含胶原固体废物的生物炭特性

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摘要

Preparation of biochar from industrial solid wastes is receiving increasing attention in recent years. In this paper, alkaline protease, neutral protease and collagenolytic protease are used in preliminary steps of leather production, which are expected to replace the traditional chemical agents while preserving quality of the finished leather. The protease application has remarkable positive influence towards characteristics of biochar prepared by collagen-containing solid wastes produced in preliminary steps. The enzymatic action time should be more than 3 h for complete permeation and catalysis, and the diameters of treated collagen fibers were in the range of 10 to 20 nm. The micro-cracks occurring on collagen fibers would have an obviously impact on the formation of biochar. The application of proteases reduce the pollution of traditional production through replacing traditional polluted chemicals, and the characteristics of biochars are obviously improved with good surface area and high carbon content approximately 70%. Its surface area can reach 967 m~2/g. These biochars contain oxygen-containing functional groups, and the oxygen content of biochars are all over 20%. The enzyme application in leather production are effective to the properties of biochars prepared by collagen-containing solid wastes. This research can serve as a basis for the preparation of biochar derived from of natural bio-wastes thereby promoting the development of biomaterials.
机译:近年来,工业固体废物的BioChar的制备正在接受越来越多的关注。在本文中,碱性蛋白酶,中性蛋白酶和胶原溶液蛋白酶用于皮革生产的初步步骤中,预计将更换传统化学药剂,同时保持成品皮革的质量。蛋白酶应用对通过初步步骤产生的含胶原固体废物制备的生物炭特性具有显着的积极影响。酶促作用时间应超过3小时以进行完全渗透和催化,并且处理过的胶原纤维的直径在10至20nm的范围内。在胶原纤维上发生的微裂纹显然对Biochar的形成产生了显着影响。蛋白酶的应用通过取代传统的污染化学品来减少传统生产的污染,并且生物脉的特点明显改善,表面积良好,高碳含量约为70%。它的表面积可达967 m〜2 / g。这些Biochars含有含氧官能团,Biochar的氧含量均超过20%。皮革生产中的酶应用对于通过含胶原的固体废物制备的生物脉内的性质是有效的。该研究可以作为制备自然生物废物的生物炭的基础,从而促进生物材料的发育。

著录项

  • 来源
    《Waste Management》 |2020年第3期|531-539|共9页
  • 作者单位

    School of Light Industry and Engineering Qilu University of Technology Shandong China College of Biotechnology Tianjin University of Science and Technology Tianjin 300457 China School of Mechanical Materials and Mechatronics Engineering University of Wollongong NSW Australia;

    School of Light Industry and Engineering Qilu University of Technology Shandong China;

    School of Light Industry and Engineering Qilu University of Technology Shandong China;

    College of Biotechnology Tianjin University of Science and Technology Tianjin 300457 China;

    School of Light Industry and Engineering Qilu University of Technology Shandong China;

    College of Biotechnology Tianjin University of Science and Technology Tianjin 300457 China;

    College of Biotechnology Tianjin University of Science and Technology Tianjin 300457 China;

    Room L1.42 Gorlaeus Laboratory Leiden University the Netherlands;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oxygen-containing biochar; Collagen-containing solid wastes; Protease application; Clean production; Waste recovery; Leather industry;

    机译:含氧生物炭;含胶原的固体废物;蛋白酶应用;清洁生产;浪费恢复;皮革工业;

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