Life cycle assessment of solar PV water pumping system for carbon emissions reduction at a location: a case study

被引:0
|
作者
Cao, Liang [1 ,2 ]
Wang, Shifeng [1 ,2 ]
Zhu, Junfeng [1 ,2 ]
Wang, Xingtian [1 ,2 ]
Hu, Wei [1 ,2 ]
机构
[1] China Inst Water Resources & Hydropower Res, Yinshanbeilu Grassland Ecohydrol Natl Observat & R, Beijing 100038, Peoples R China
[2] Minist Water Resources, Inst Water Resources Pastoral Area, Hohhot, Peoples R China
关键词
Solar water supply project; life cycle assessment; carbon emission; energy savings and emission reduction; GREENHOUSE-GAS EMISSIONS; POWER-GENERATION; ENERGY;
D O I
10.1080/15567036.2024.2329811
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The design of water supply systems powered by solar photovoltaic (PV) systems are installed for irrigation and other allied applications at remote rural areas which lack proper on-grid power systems. These systems have been operating successfully for several decades at locations receiving ample solar radiation, assisting in the reduction of carbon emissions. Hybrid life cycle assessment was performed in this study to determine the carbon emissions for a solar PV water pumping system (SPVWPS) in Xilin Gol League, Inner Mongolia. The carbon emission (g/mm3) produced by 1 m3 of water raised by 1 m was used as a reference in this assessment. The present analysis estimates the net CO2 emissions generated during the stages of production, transportation, construction, operation, maintenance, and recycling of SPVWPS. The results from SPVWPS were compared with CO2 emissions from diesel operated pumping systems. It was discovered that the carbon emission intensity produced during the 25-year operation period of SPVWPS was 0.80 g/mm3. The major CO2 emissions of SPVWPS were generated during the manufacturing stage totaled 2.02t, accounting for 55.19% of total emissions. When compared to the mobile diesel-powered water supply project, the CO2 emission intensity from SWPS was found to be about 0.55 times lower by about 1.46 g/mm3. As a result, the rapid development of SPVWPS in rural and pastoral areas represents the realization of rural low-carbon transformation and development, as well as the achievement of China's "double carbon" reduction targets by 2050.
引用
收藏
页码:4704 / 4717
页数:14
相关论文
共 50 条
  • [31] Performance Assessment of a Direct-Coupled PV Water Pumping System
    Balaj, Ciprian I.
    Man, Teodor E.
    Paulescu, Marius
    TIM15-16 PHYSICS CONFERENCE, 2017, 1796
  • [32] Identification of the potential for carbon dioxide emissions reduction from highway maintenance projects using life cycle assessment: A case in China
    Liu, Yuanyuan
    Wang, Yuanqing
    Li, Di
    Feng, Fan
    Yu, Qian
    Xue, Shuqi
    JOURNAL OF CLEANER PRODUCTION, 2019, 219 : 743 - 752
  • [33] Assessment of standalone solar PV-Battery system for electricity generation and utilization of excess power for water pumping
    Bhayo, Bilawal A.
    Al-Kayiem, Hussain H.
    Gilani, Syed I.
    SOLAR ENERGY, 2019, 194 : 766 - 776
  • [34] Design of a Solar Dish Receiver and Life Cycle Assessment of a Hot Water System
    Tursunovic, Ibrahim
    Papurello, Davide
    CLEAN TECHNOLOGIES, 2024, 6 (01): : 379 - 396
  • [35] An Analysis of State of Art Techniques for Solar PV Powered Water Pumping System
    Sanju
    Agarwal, Kusum Lata
    Srikant, Satya Sai
    2022 IEEE 10TH POWER INDIA INTERNATIONAL CONFERENCE, PIICON, 2022,
  • [36] A SyRM Drive Based Solar PV Array Fed Water Pumping System
    Varshney, Anshul
    Sharma, Utkarsh
    Singh, Bhim
    2018 8TH IEEE INDIA INTERNATIONAL CONFERENCE ON POWER ELECTRONICS (IICPE), 2018,
  • [37] Feasibility Analysis of a Solar Water Pumping System in Pakistani Conditions: A Case Study
    Ashraf, Usman
    Iqbal, M. Tariq
    2020 IEEE CANADIAN CONFERENCE ON ELECTRICAL AND COMPUTER ENGINEERING (CCECE), 2020,
  • [38] Grid Interactive Bidirectional Solar PV Array Fed Water Pumping System
    Sharma, Utkarsh
    Singh, Bhim
    2016 IEEE INTERNATIONAL CONFERENCE ON POWER ELECTRONICS, DRIVES AND ENERGY SYSTEMS (PEDES), 2016,
  • [39] Payback Period and Life Cycle Emissions of a Commercial Solar Carport with a Virtual Case Study
    Oruganti, Kameswara Satya Prakash
    Vaithilingam, Chockalingam Aravind
    Ramasamy, Agileswari
    Rajendran, Gowthamraj
    14TH INTERNATIONAL ENGINEERING AND COMPUTING RESEARCH CONFERENCE SHAPING THE FUTURE THROUGH MULTIDISCIPLINARY RESEARCH (EURECA 2020), 2021, 335
  • [40] Life Cycle Assessment of an Integrated PV-ACAES System
    Cocco, Daniele
    Lecis, Lorenzo
    Micheletto, Davide
    ENERGIES, 2023, 16 (03)