Field evaluation of the performance of different irrigation emitter types using treated wastewater

IF 2 Q3 Environmental Science
N. Al‐Mefleh, I. Bashabsheh, S. Talozi, T. Al-Issa
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引用次数: 4

Abstract

Experimental tests are carried out to evaluate the impact of treated wastewater (TWW) on the discharge of five different types of emitters which are commonly used. Two water qualities, fresh water (FW) and treated wastewater, and five types of emitters, GR, Nein (NE), Edin (ED), Corona (CO), and Rain Bird (RB) are tested. The values of chemical properties for FW show mostly low clogging potential on emitter performance. The clogging potential for TWW varied from low to medium. The exception was for pH where there was severe clogging potential for both water types. The performance of emitters was tested by measuring the emitter discharge and estimating the average emitter discharge ( Q avg), coefficient of variation (CV), emission uniformity coefficient (EU), and Christiansen uniformity coefficient (CU). The average discharges for different types of emitters were analyzed and compared at P ≤ 0.05. The CO and RB emitter types did not show any signs of clogging whereas the GR, NE, and ED emitter types showed signs of clogging. The results of CV, EU, and CU values showed that the performances of emitter types GR, NE, ED were classified as low or moderate clogging potential. In contrast, the CO and RB emitters were classified as moderate or high clogging potential.
利用处理过的废水对不同灌溉灌水器类型的性能进行实地评价
进行了试验测试,以评估处理后的废水对五种不同类型的常用排放者排放的影响。测试了淡水(FW)和处理后的废水两种水质,以及GR、Nein (NE)、Edin (ED)、Corona (CO)和Rain Bird (RB)五种类型的排放物。FW的化学性质值大多显示出对发射器性能的低堵塞潜力。TWW的堵塞潜势从低到中不等。pH值的例外情况是,两种水类型都有严重堵塞的可能。通过测量发射体放电,估算平均发射体放电(Q avg)、变异系数(CV)、发射均匀性系数(EU)和克里斯蒂安森均匀性系数(CU)来测试发射体的性能。对不同类型发射体的平均排放量进行分析比较,P≤0.05。CO和RB发射器类型没有显示任何堵塞迹象,而GR, NE和ED发射器类型显示堵塞迹象。CV、EU和CU值分析结果表明,GR、NE、ED型发射极的堵塞势为低堵塞势或中等堵塞势。相比之下,CO和RB排放物被划分为中等或高堵塞电位。
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来源期刊
CiteScore
1.70
自引率
0.00%
发文量
18
审稿时长
>12 weeks
期刊介绍: The Water Quality Research Journal publishes peer-reviewed, scholarly articles on the following general subject areas: Impact of current and emerging contaminants on aquatic ecosystems Aquatic ecology (ecohydrology and ecohydraulics, invasive species, biodiversity, and aquatic species at risk) Conservation and protection of aquatic environments Responsible resource development and water quality (mining, forestry, hydropower, oil and gas) Drinking water, wastewater and stormwater treatment technologies and strategies Impacts and solutions of diffuse pollution (urban and agricultural run-off) on water quality Industrial water quality Used water: Reuse and resource recovery Groundwater quality (management, remediation, fracking, legacy contaminants) Assessment of surface and subsurface water quality Regulations, economics, strategies and policies related to water quality Social science issues in relation to water quality Water quality in remote areas Water quality in cold climates The Water Quality Research Journal is a quarterly publication. It is a forum for original research dealing with the aquatic environment, and should report new and significant findings that advance the understanding of the field. Critical review articles are especially encouraged.
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