An integrated approach for understanding natural -and anthropogenic controls on water quality in arid and semi-arid environments

S. Wali, N. Alias, Sobri Bin Harun, M. A. Gada, I. Hamisu, Ibrahim Umar Mohammed, Muhammed Lawal Garba, Mudassir Atiku, Buhari Samaila
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Abstract

The objective of this review is to highlight the need for an integrated approach to the understanding of the major processes controlling the hydrochemical composition of water bodies in drylands using multivariate statistics, water quality index and heavy metal pollution index. The integrated approach to the hydrochemical investigation of streams and aquifers in drylands is essential owing to their distinctive climate, notably, low rainfall and high temperature. Studies on water quality in arid and semi-arid areas using multivariate analysis and water quality indices were scrutinized. Results showed that the hydrochemistry of streams and aquifers is controlled by both the natural geogenic processes and anthropogenic activities. However, in-depth understanding of geochemistry and land use types, as well as climatic vagaries, is required, to be able to discriminate these processes, since several ions of rock minerals origin are increasingly being added into the environment through human activities. While the sources of solutes and processes controlling the hydrochemistry of streams and aquifers can be established through application of multivariate analysis, this technique is limited in water quality investigations since it cannot measure the suitability of water for domestic, agriculture and industrial uses. Thus, an integrated approach incorporating water quality indices in conjunction with multivariate analysis is required. This is essential owing to the fact that the suitability of water for various uses is central to any hydrogeochemical investigation in arid and semi-arid environments. Thus, it is expected that future hydrochemical studies would apply this approach.
了解干旱和半干旱环境中自然和人为控制水质的综合方法
本文的目的是强调利用多元统计、水质指数和重金属污染指数等综合方法来了解旱地水体水化学组成的主要控制过程的必要性。由于旱地的气候特别,特别是降雨量少、温度高,因此对河流和含水层进行水化学调查的综合方法是必不可少的。采用多变量分析和水质指标对干旱半干旱区水质进行了研究。结果表明,河流和含水层的水化学受自然地质过程和人为活动的双重控制。然而,为了能够区分这些过程,需要对地球化学和土地利用类型以及气候变化有深入的了解,因为一些岩石矿物的离子正通过人类活动越来越多地添加到环境中。虽然可以通过应用多元分析来确定溶质的来源和控制溪流和含水层水化学的过程,但这种技术在水质调查中受到限制,因为它不能衡量水是否适合家庭、农业和工业用途。因此,需要一种综合的方法,将水质指数与多变量分析结合起来。这是至关重要的,因为在干旱和半干旱环境中,水的各种用途的适宜性是任何水文地球化学调查的核心。因此,预计未来的水化学研究将采用这种方法。
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