Citation: | LIU Junhan, CHEN Zhuo, XU Ao, LU Yun, WU Yinhu, HAO Shuran, HU Hongying. SITUATION ANALYSIS AND INSPIRATIONS OF WATER REUSE IN AUSTRALIA[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(2): 1-7,26. doi: 10.13205/j.hjgc.202202001 |
[1] |
Agriculture & Rural Development [DB/OL].Australia:THE WORLD BANK,2020.[2020.09.29].https://data.worldbank.org/topic/agriculture-and-rural-development?locations=AU-XC&pid=118576693.
|
[2] |
RADCLIFFE J C,PAGE D.Water reuse and recycling in Australia-history,current situation and future perspectives [J].Water Cycle,2020,1:19-40.
|
[3] |
Australia Population [DB/OL].Australia:Countrymeters,2020.[2020.09.29].https://countrymeters.info/cn/Australia.
|
[4] |
Water Storage Dashboard[DB/OL].Australia:Australian Government Bureau of Meteorology,2020.[2020.09.29].http://www.bom.gov.au/water/dashboards/#/water-storages/summary/state.
|
[5] |
Water Storages [DB/OL].Australia:Australian Government Bureau of Meteorology,2020.[2020.09.29].http://www.bom.gov.au/water/dashboards/#/water-storages/summary/state.
|
[6] |
Regional Water Information [DB/OL].Australia:Australian Government Bureau of Meteorology,2020.[2020.09.29].http://www.bom.gov.au/water/rwi/#wu_tt/001/2018.
|
[7] |
4610.0-Water Account,Australia,2016-17 [DB/OL].Australia:Australian Bureau of Statistics,2019.[2020.09.29].https://www.abs.gov.au/AUSSTATS/abs@.nsf/DetailsPage/4610.02016-17 OpenDocument.
|
[8] |
Urban national performance report [DB/OL].Australia:Australian Government Bureau of Meteorology,2020.[2020.09.29].http://www.bom.gov.au/water/npr/.
|
[9] |
The National Outfall Database [DB/OL].Australia:Australian Bureau of Statistics,2020.[2020.09.04].https://www.outfalls.info.
|
[10] |
Climate Resilient Water Sources [DB/OL].Australia:Australian Government Bureau of Meteorology,2020.[2020.09.04].http://www.bom.gov.au/water/crews/data-download/.
|
[11] |
Climate Resilient Water Sources [DB/OL].Australia:Australian Government Bureau of Meteorology,2020.[2020.09.04].http://www.bom.gov.au/water/crews/.
|
[12] |
Natural Resource Management Ministerial Council (NRMMC).Australian Guidelines for Water Recycling:Managing Health and Environmental Risks [DB/OL].Australia:Australian Government Initiative,2020.[2020.09.04].https://www.waterquality.gov.au/guidelines/recycled-water.
|
[13] |
Victorian Government Department of Health.Guidelines for Water Reuse and Recycling in Victorian Health Care Facilities Non-drinking Applications[DB/OL].Australia:Australian Government Initiative,2020.[2020.09.04].https://www.waterquality.gov.au/guidelines/recycled-water.
|
[14] |
国家市场监督管理总局,国家标准化管理委员会.水回用导则再生水分级:GB/T 41018—2021[S].北京:中国质量标准出版传媒有限公司,2021:3-4.
|
[15] |
APOSTOLIDIS N,HERTLE C,YOUNG R.Water recycling in Australia[J].Water,2011,3(3):869-881.
|
[16] |
ROD C,JOHN M,PETER J.Project Report:Case Study #1 (of 3)-South East Queensland Western Corridor Recycled Water Project[EB/OL].Australia:Victoria University,2020.[2021.04.06].https://vuir.vu.edu.au/32227/1/Case%2BStudy%2B1%2B%E2%80%93%2BWestern%2BCorridor%2BRecycled%2BWater%2BProject.pdf.
|
[17] |
Annual Report 2017-18:For the Western Corridor Recycled Water Scheme-Recycled Water Management Plan[EB/OL].Australia:Seqwater,2020.[2021.04.06].https://www.seqwater.com.au/media/578/download.
|
[18] |
Western Corridor Recycled Water Scheme:Recycled Water Management Plan Annual Report 2018-19[EB/OL].Australia:Seqwater,2020.[2021.04.06].https://www.seqwater.com.au/media/1150/download.
|
[19] |
Western Corridor Recycled Water Scheme:Recycled Water Management Plan Annual Report 2019-20[EB/OL].Australia:Seqwater,2020.[2021.04.06].https://www.seqwater.com.au/media/1686/download (accessed on 04.06.21).
|
[20] |
REBELO A,QUADRADO M,FRANCO A,et al.Water reuse in Portugal:new legislation trends to support the definition of water quality standards based on risk characterization[J].Water Cycle,2020,1:41-53.
|
[21] |
ZHU Z,DOU J.Current status of reclaimed water in China:an overview[J].Journal of Water Reuse and Desalination,2018,8:293-307.
|
[1] | WU Yihao, CUI Yaojia, ZANG Xinzhi, WANG Wenqiang, YE Zhaolian. OXIDATIVE POTENTIAL AND SOURCE APPORTIONMENT OF PM2.5 DURING SPRING IN CHANGZHOU[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(5): 53-61. doi: 10.13205/j.hjgc.202405007 |
[2] | YANG Zhixuan, LI Lanqing, LIU Huanjia, YANG Ying, XU Mengyuan, JIA Mengke, LIU Hengzhi. SEASONAL VARIATION, SOURCE AND LIGHT EXTINCTION CONTRIBUTION OF WATER-SOLUBLE INORGANIC IONS OF PM2.5 IN THE NORTHERN SUBURB OF ANYANG, CHINA[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(6): 71-81. doi: 10.13205/j.hjgc.202406009 |
[3] | GUO Qianjin. COMPONENTS CHARACTERISTICS AND SOURCE APPORTIONMENT OF PM2.5 IN AUTUMN AND WINTER IN JINCHENG[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(7): 153-161. doi: 10.13205/j.hjgc.202407017 |
[4] | XU Yuanqian, FU Guangyu, SHENG Haozhe, YUE Libo, SUN Peng, LUO Yilin, CAO Jiahui, CAO Xia, CHEN Yang. PM2.5 POLLUTION CHARACTERISTICS AND SOURCE APPORTIONMENT IN A TYPICAL INDUSTRIAL CITY OF HENAN PROVINCE DURING AUTUMN AND WINTER[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(12): 136-144. doi: 10.13205/j.hjgc.202412017 |
[5] | WEI Xiangnan, MA Yunfeng, BAO Huiyu, ZHAO Huijie, SUN Xuebin, WANG Shuai, HOU Le. CHARACTERISTICS ANALYSIS OF PM2.5 AND O3 POLLUTION IN SHENYANG CITY[J]. ENVIRONMENTAL ENGINEERING , 2024, 42(10): 73-82. doi: 10.13205/j.hjgc.202410010 |
[6] | XU Yang, YAN Yulong, DUAN Xiaolin, WU Jing, PENG Lin, ZHANG Xiangyu, NIU Yueyuan, LIU Zhuocheng, ZHANG Dayu. CHARACTERISTICS AND SOURCE ANALYSIS OF HALOCARBONS IN SUMMER AT HIGH ALTITUDE BACKGROUND SITE OF NAMCO, TIBETAN PLATEAU[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(4): 55-62. doi: 10.13205/j.hjgc.202304008 |
[7] | ZHANG Yibing, LIANG Yiqun, ZHANG Yuan, FANG Yinxiang, NIU Hongya, FAN Jingsen. SOURCE APPORTIONMENT AND ECOLOGICAL RISK ASSESSMENT OF HEAVY METALS IN PM2.5 IN THE FENGFENG MINING AREA IN 2017—2019[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(8): 242-250. doi: 10.13205/j.hjgc.202308031 |
[8] | LI Hongliang, TAO Jie, LI Lanqing, ZHAO Wenpeng, XU Mengyuan, JIA Mengke, YANG Ying, LIU Huanjia. POLLUTION CHARACTERISTICS AND SOURCE APPORTIONMENT OF WATER-SOLUBLE IONS IN PM2.5 IN XINXIANG[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(8): 117-126. doi: 10.13205/j.hjgc.202308015 |
[9] | LI Yang, LIU Yong-he, WANG Xi-yue, WANG Hai-lin. SPATIAL-TEMPORAL CHARACTERISTICS OF PM2.5 AND PM10 AND THEIR RELATIONSHIPS WITH METEOROLOGICAL FACTORS IN JIAOZUO, HENAN[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(9): 44-53. doi: 10.13205/j.hjgc.202209006 |
[10] | ZHAO Hui-jie, MA Yun-feng, WANG Shuai, LIU Qi-yao, WEI Xiang-nan. CAUSE ANALYSIS OF A HEAVY PM2.5 POLLUTION PROCESS OCCURED IN SHENYANG[J]. ENVIRONMENTAL ENGINEERING , 2022, 40(9): 33-43. doi: 10.13205/j.hjgc.202209005 |
[11] | ZHU Xue-tao, LIN Hai-ying, FENG Qing-ge, ZHAO Bo-han, ZHU Yi-fan, LAN Wen-lu, LI Tian-shen. POLLUTION AND RISK ASSESSMENT, SOURCE ANALYSIS OF HEAVY METALS IN SURFACE SEDIMENTS OF BEIBU GULF, GUANGXI[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(8): 69-76. doi: 10.13205/j.hjgc.202108009 |
[12] | ZHANG Kuo, ZHANG Yong-bin, LI Cheng-ming, DAI Zhao-xin. SEASONAL DIFFERENCE ANALYSIS OF THE RELATIONSHIP BETWEEN PM2.5 AND LAND USE: A CASE STUDY OF WEIFANG[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(4): 72-78. doi: 10.13205/j.hjgc.202104012 |
[13] | YANG Zhi-hua, ZHANG Rui, LIU Qiong-yu, TAO Yuan, JIANG Jun-ting, TAN Jing, CHENG Jin-jun, YE Xun. ESTABLISHMENT AND CHARACTERISTIC ANALYSIS ON FINE PARTICULATE MATTER SOURCE PROFILE OF OPEN-SOURCES IN WUHAN[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(5): 80-88. doi: 10.13205/j.hjgc.202105011 |
[14] | SU Ming-wei, ZHANG Wei-feng, ZHENG Run-he. DISTRIBUTION CHARACTERISTICS AND DIFFERENCE ANALYSIS OF PM2.5 BASED ON WAVELET ANALYSIS[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(5): 96-103. doi: 10.13205/j.hjgc.202105013 |
[15] | WANG Cheng, CAO Jing-yuan, DUAN Xiao-lin, CHEN Hao, YAN Yu-long, PENG Lin. CHARACTERISTICS AND SOURCES ANALYSIS OF CARBONACEOUS COMPONENTS IN PM2.5 IN WINTER IN FOUR CITIES OF SHANXI PROVINCE[J]. ENVIRONMENTAL ENGINEERING , 2021, 39(6): 114-121. doi: 10.13205/j.hjgc.202106017 |
[16] | ZHAO Bin, LIU Bin. APPLICATION OF STACKING IN GROUND-LEVEL PM2.5 CONCENTRATION ESTIMATING[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(2): 153-159. doi: 10.13205/j.hjgc.202002022 |
[17] | ZHAO Wen-cheng, WANG Fang. ANALYSIS OF URBAN AIR QUALITY INDEX BASED ON MULTISCALE CROSS TREND SAMPLE ENTROPY[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(2): 91-98. doi: 10.13205/j.hjgc.202002013 |
[18] | WEI Wen-jing, XIE Bing-geng, ZHOU Kai-chun, LI Xiao-qing. RESEARCH ON TEMPORAL AND SPATIAL VARIATIONS OF ATMOSPHERIC PM2.5 AND PM10 AND THE INFLUENCING FACTORS IN SHANDONG, CHINA DURING 2013—2018[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(12): 103-111. doi: 10.13205/j.hjgc.202012018 |
[19] | ZHANG Zhong-di, SHAO Tian-jie, HUANG Xiao-gang, WEI Pei-ru. CHARACTERISTICS AND POTENTIAL SOURCES OF PM2.5 POLLUTION IN BEIJING-TIANJIN-HEBEI REGION IN 2017[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(2): 99-106,134. doi: 10.13205/j.hjgc.202002014 |
[20] | DING Shu-qin, WU Jia-ping, WAN Xue-ping, JIANG Lin, ZHAO Xue-ting, SHA Dan-dan. ANALYZE ON PM2.5 AND ITS MAIN CHEMICAL COMPOSITION DURING TYPICAL HEAVY AIR POLLUTION IN AUTUMN AND WINTER IN CHANGSHU[J]. ENVIRONMENTAL ENGINEERING , 2020, 38(3): 142-147,161. doi: 10.13205/j.hjgc.202003024 |
1. | 王越. 矿化垃圾强化剩余污泥暗发酵产氢. 中国给水排水. 2024(05): 105-110 . ![]() | |
2. | 项显超,蔡嘉瑞,甄宗傲,李晓东. 填埋场开采及矿化垃圾资源化利用现状. 环境卫生工程. 2024(03): 16-27 . ![]() |