References
- Y. Zhang, A. Gu, B. Pan, Relationship between industrial
water consumption and economic growth in China based on
environmental Kuznets curve, Energy Procedia, 105 (2017)
3557–3564.
- Y. Shang, S. Lu, L. Shang, X. Li, Y. Wei, X. Lei, C. Wang, H. Wang,
Decomposition methods for analyzing changes of industrial
water use, J. Hydrol., 543 (2016) 808–817.
- M.A. Renouf, S.J. Kenway, Evaluation approaches for advancing
urban water goals, J. Ind. Ecol., 21 (2017) 995–1009.
- F. Zhang, H. Xue, H. Wang, H. Dong, Industrial growth path
under the restriction of water resources in China, Procedia Eng.,
174 (2017) 934–940.
- E. Masanet, M.E. Walker, Energy-water efficiency and U.S.
industrial steam, AIChE J., 59 (2013) 2268–2274.
- X.H. Fan, C. Ning, A hybrid ARIMA and BP neural network
model to forecast industrial water efficiency, Adv. Mater. Res.,
1010–1012 (2014) 1042–1046.
- L. Zhao, C. Sun, F. Liu, Interprovincial two-stage water resource
utilization efficiency under environmental constraint and
spatial spillover effects in China, J. Cleaner Prod., 164 (2017)
715–725.
- S. Jia, H. Yang, S. Zhang, L. Wang, J. Xia, Industrial water use
Kuznets curve: evidence from industrialized countries and
implications for developing countries, J. Water Resour. Plann.
Manage., 132 (2006) 183–191.
- J. Liu, C. Yang, J.P. Zhang, Study on industrial water-saving
system—taking the Ningdong energy and chemical base as an
example, Appl. Mech. Mater., 212–213 (2012) 658–663.
- A.M. Tian, N. Dong, A.X. Jiang, Water resource sustainable
utilization study of based on water footprint, Adv. Mater. Res.,
347–353 (2011) 2949–2956.
- B.M. Berhanu, M. Blackhurst, M.J. Kirisits, P. Jamarillo, D.
Carlson, Feasibility of water efficiency and reuse technologies
as demand‐side strategies for urban water management, J. Ind.
Ecol., 21 (2017) 320–331.
- X. Zhang, Z. Dong, B. Luo, Industrial structure optimization
based on water quantity and quality restrictions, J. Hydrol.
Eng., 18 (2013) 1107–1113.
- S. Kumar, Analysing industrial water demand in India: an input
distance function approach, Water Policy, 8 (2004) 15–29.
- T. Zhelev, K. Semkov, E. Mooney, T. Majozi, A. Korobeinikov,
Industrial heat utilization through water management, Heat
Transfer Eng., 34 (2013) 1191–1201.
- Z. Liu, On water saving agriculture and water resource
sustainable utilization in Northeastern China, Ying Yong Sheng
Tai Xue Bao, 15 (2004) 1737.
- X.F. Yang, B.X. Zhang, Y.Z. Shi, M.Y. Fan, H.J.Liu, Study on high
efficiency technology of industrial circulating water in Yellow
River estuary area, Appl. Mech. Mater., 737 (2015) 719–722.
- A.F. Jorm, Using the Delphi expert consensus method in mental
health research, Aust. N. Z. J. Psychiatry, 49 (2015) 887–897.
- A. Paraskevas, M.N. Saunders, Beyond consensus: an alternative
use of Delphi enquiry in hospitality research, Int. J. Contemp.
Hosp. Manage., 24 (2012) 907–924.
- S. Ierace, S. Cavalieri, An analytic hierarchy process based
model for the selection of decision categories in maintenance
systems, Manage. Prod. Eng. Rev., 4 (2013) 37–49.
- B. Kittel, A. Kaczynski, S. Bethge, A.C. Mühlbacher, Was
braucht der neueLandarzt?—Ein analytic hierarchy process
(AHP), Gesundh ökon Qual manag, 21 (2015) 137–144.
- A. Afful-Dadzie, E. Afful-Dadzie, S. Nabareseh, Z.K. Oplatková,
Tracking progress of African Peer Review Mechanism (APRM)
using fuzzy comprehensive evaluation method, Kybernetes, 43
(2014) 1193–1208.
- S.B. Wang, Research of factors of regional product quality based
on gray relational analysis, Adv. Mater. Res., 1079–1080 (2014)
1189–1193.
- R. Fang, R. Shang, M. Wu, C. Peng, X. Guo, Application of
gray relational analysis to k-means clustering for dynamic
equivalent modeling of wind farm, Int. J. Hydrogen Energy, 42
(2017) 20154–20163.
- S. Fang, Y. Cai, AHP-Fuzzy comprehensive evaluation model of
venture investment and financing system: based on the case of
incubation base in Anhui, Can. Soc. Sci., 11 (2014) 148–153.