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有机垃圾热解生物碳的研究进展
引用本文:刘国涛,张红炼,彭绪亚.有机垃圾热解生物碳的研究进展[J].安全与环境学报,2012,12(1):89-94.
作者姓名:刘国涛  张红炼  彭绪亚
作者单位:重庆大学三峡库区生态环境教育部重点实验室,重庆,400045;重庆大学三峡库区生态环境教育部重点实验室,重庆,400045;重庆大学三峡库区生态环境教育部重点实验室,重庆,400045
基金项目:重庆市自然科学基金重点项目(CSTC,2011BA7020);中央高校基本科研业务费科研专项(CDJZR10210006)
摘    要:生物碳是有机垃圾热解的产物。生物碳具有多孔性、高比表面积、高度芳香化结构,充当土壤活性调理剂能增加土壤微生物吸附性能,保水、保肥,促进作物生长,同时还具有贮碳功能。综述了近年来有机垃圾热解及热解生物碳的研究进展,着重介绍了生物碳的形成条件、特征结构、在土壤中的生物与非生物氧化过程,以及对全球气候变化和土壤环境效益等研究动态。展望了有机垃圾热解生物碳技术用于城镇有机垃圾处理的发展前景,提出应重点加强的几个研究方向:1)实现不同混合垃圾制取相似结构的生物碳;2)垃圾热解过程中污染物的控制;3)有机垃圾生物碳的土壤环境行为与环境效益。

关 键 词:环境工程学  有机垃圾  热解  生物碳  固碳减排  土壤

A review on the research advances in biochar from the organic solid waste pyrolysis
LIU Guo-tao , ZHANG Hong-lian , PENG Xu-ya.A review on the research advances in biochar from the organic solid waste pyrolysis[J].Journal of Safety and Environment,2012,12(1):89-94.
Authors:LIU Guo-tao  ZHANG Hong-lian  PENG Xu-ya
Institution:(Key Lab of Three Gorges Reservoir Area Ecological Environment,Ministry of Education,Chongqing University,Chongqing 400045,China)
Abstract:This paper intends to provide a general review over the advances in biochar from organic waste pyrolysis in recent years.As is known,the municipal solid waste(MSW) is not only the main source of environmental pollution,but also the unique ever-growing garbage resources today,so that the MSW can be taken as a big resource with a great exploration prospect in providing clean energy and helping to relieve the aggravating energy crisis.It is just for this reason that the current MSW-treating technology,such as landfill,aerobic composting and incineration,may yield to the new active and positive MSW treatment for energy reuse.Among them,the pyrolysis has received close attention to retrieving renewable oil,gas and biochar in the absence of oxygen,and less secondary pollution at that.Due to the rich nutrients(N,P,K),the characteristics of porous, large surface area and highly aromatic structure,biochar can be used as a fertilizer supplement in the agricultural production.Moreover,adding carbon to the soil,biochar is also found highly beneficial for recovering the fertility of the land soil and contribute significantly to carbon abatement,which accounts for the great prosperity of research.Besides,since temperature is the key parameter in pyrolysis treating,we have also introduced the effects of the final temperature and heating rate on the solid waste pyrolysis products,such as gases,bio-oils and biochars,which also account for the research tide in the pyrolysis characterization of the different raw materials,and pollutant emissions in the pyrolysis process.At the same time,we have also given a detailed discussion on the formulation conditions and the characteristic components of biochar,the biological and abiotic oxidation process in the soil,as well as the research trend about the benefits for the global climate change and sustainable soil conservation and so on.Thus,it can be concluded that the development of the organic waste pyrolysis biochar technology is highly promising for urban organic waste treatment.Therefore,we do believe it is necessary to encourage and promote the following research fields:(1) get the similar biochar produced from different mixed wastes;(2) control the pollutant in the process of waste pyrolysis;(3) the soil environmental behavior and benefits of the organic waste known as biochar.
Keywords:environmental engineering  organic solid waste  pyrolysis  biochar  sequestration/release of carbon  soil
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