Citation: | YANG Wei, ZHENG Ren-dong, ZHANG Hai-dan, ZHU Gao-jun, YAN Mi. DEVELOPMENT PROCESS AND TREND OF WASTE TO ENERGY PROJECTS IN CHINA[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(12): 124-129. doi: 10.13205/j.hjgc.202012021 |
SILPA K, LISA Y, PERINAZ B T, et al. What a waste 2.0:a global snapshot of solid waste management to 2050[M]. Washington D.C., World Bank Group, 2018.
|
国家统计局.中国统计年鉴[G/OL].http://www.stats.gov.cn/tjsj/ndsj/.
|
Sattista[EB/OL]. https://www.statista.com/statistics/186256/us-municipal-solid-waste-generation-since-1960/.
|
Sattist. 2017[EB/OL]. https://www.statista.com/statistics/186348/us-municipal-solid-waste-generated-per-person-since-1960/.
|
LUKE M, WARANGKANA J, KUA-ANAN T. The evolution of waste-to-energy incineration:a review[J]. Renewable and Sustainable Energy Reviews, 2018, 91:812-821.
|
国家发展改革委,住房城乡建设部."十三五"全国城镇生活垃圾无害化处理设施建设规划[G/OL].http://zfxxgk.ndrc.gov.cn/web/iteminfo.jsp?id=409.
|
芜湖生态中心.垃圾焚烧厂地图[G/OL].http://www.waste-cwin.org/cwinmap.
|
中国电力企业联合会.年度统计信息[G/OL].http://www.cec.org.cn/guihuayutongji/tongjxinxi/niandushuju/.
|
浙江省发展改革委员会.浙江省2018年7-9月垃圾焚烧发电项目电量核定情况表[EB/OL].http://news.bjx.com.cn/html/20190110/955577.shtml.
|
严密,熊祖鸿,李晓东,等. 中美城市生活垃圾焚烧处置现状和发展趋势[J]. 环境工程,2014,32(3):87-91.
|
REN X, LIU D, CHEN W M, et al. Investigation of the characteristics of concentrated leachate from six municipal solid waste incineration power plants in China[J]. Royal Society of Chemistry, 2018(8):13159-13166.
|
YAN M, ZHANG S C, WIBOWO H, et al. Biochar and pyrolytic gas properties from pyrolysis of simulated municipal solid waste (SMSW) under pyrolytic gas atmosphere[J]. Waste Disposal & Sustainable energy, 2020, https://link.springer.com/article/10.1007%2Fs42768-019-00030-y.
|
LI Y Y, JIN Y Y, LI J H, et al. Current situation and development of kitchen waste treatment in China[J]. Procedia Environmental Sciences, 2016, 31:40-49.
|
于淼. 矿化垃圾治理技术的应用[J].再生利用,2017, 10(6):34-36.
|
ARUMUGAM N, AMIRHOMAYOUN S, TAKAYUKI S. Hydrogen gas generation from metal aluminum-water interaction in municipal solid waste incineration (MSWI) bottom ash[J]. Waste Management, 2018, 73:342-350.
|
SYIELUING W, ANGEL X Y M, ABU H N, et al. Emerging trends in municipal solid waste incineration ashes research:a bibliometric analysis from 1994 to 2018[J]. Environmental Science and Pollution Research, 2020, 27:7757-7784.
|
AGAMUTHU P, HAMID F S, BHATTI M S. Sustainable Waste Management Challenges in Developing Countries[M]. Hershey, PA:IGI Global Publications, 2020.
|
YAN M, AGAMUTHU P, JOKO W. Challenges for sustainable development of waste to energy in developing countries[J]. Waste Management & Research, 2020, 38(3):229-231.
|
SU H, KANCHANATIP E, WANG D, et al. Production of H2-rich syngas from gasification of unsorted food waste in supercritical water[J]. Waste Management, 2020, 102:520-527.
|
李雪倩,张晓翔,严密,等. VUV-TOFMS二噁英在线检测应用研究[J]. 工程热物理学报,2011, 32(8):1437-1439.
|
GOTO M, OBUCHI R, HIROSE T, et al. Hydrothermal conversion of municipal organic waste into resources[J]. Bioresource Technology, 2004, 93:279-284.
|