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Potential impact of bauxite mining activity on water quality at Sungai Penggorak, Kuantan catchment area

机译:关丹流域Sungai Penggorak铝土矿开采活动对水质的潜在影响

摘要

Bauxite mining has become a serious matter to ponder in Malaysia. In 2013, a total of 236 mine sites are identified to produce and transport bauxite but only 36 are legal.This irresponsible act gives serious impact to the local Kuantan community such as air pollution, water pollution, ecosystem degradation and bring discomfort to people. Sungai Pengorak (Pengorak river), Kuantan is one of the affected area due to bauxite mining. The purpose of this study is to evaluate the spatial variation of bauxite affected river water quality in Sungai Pengorak Kuantan, to classify the river water by assessing the water quality according to the Normal Water Quality Standard (NWQS) and to make recommendations and suggestions for sustainable bauxite management of the river system. In-situ parameters and ex–situ tests were conducted to obtained the results. The river water sample was taken from three (3) different point source, as much as three (3) times to conduct the water quality analysis. HORIBA meter was used to record the in – situ parameters data. Ten (10) paramenters were chosen to be analysed which were pH, turbidity, temperature, electrical conductivity (E.C), dissolved oxygen (DO), biochemical oxygen demand (BOD), chemical oxygen demand (COD), total suspended solid (TSS), hardness and heavy metals. The results of parameters obtained were classified according to NWQS. pH value recorded as high as 7.42 at Station 1 and as low as 6.14 at Station 3 and it is within NWQS standard. Next, the highest temperature recorded among the stations was 27.9 °C while the lowest was 27.6 °C. The turbidity recorded exceeded the 5mg/l standard range with 57 mg/l at Station 1 while the lowest was 43 mg/l at Station 3. As for total suspended solids, the highest value obtained was 48 mg/l at Station 3 and 16 mg/l at Station 1 and the standard range was 25 mg/l. High concentration of turbidity and total suspended solids was due to the discharge of unregulated mine waste from nearby mine site. Hardness was the highest at Station 1 with 5.69 mg/l while the lowest with 1.51 mg/l at Station 2. Sungai Pengorak is considered soft water because the values recorded does not exceeded the NWQS standard which is 250 mg/l. As for dissolved oxygen concentrations, the highest was 4.17 mg/l at Station 3 while the lowest was 3.75 mg/l at Station 1. The highest biochemical oxygen demand value (8.86 mg/l) was recorded at Station 1 while the lowest value (6.53 mg/l) recorded at Station 2. The highest chemical oxygen demand value (47 mg/l) was recorded at Station 3 while the lowest value (30 mg/l) recorded at Station 2. The values of all concentrations were highly exceeded the NWQS standard. It is due to the bauxite mining activity conducted at nearby area. In addition, the electrical conductivity was recorded the highest of 1200 μS/cm at Station 3 while the lowest of 854 μS/cm at Station2. High electrical conductivity indicates high ions concentrations in the water and vice versa. Analysed heavy metals concentration towards the water found that chromium was the highest in concentration which is 0.45 mg/l, followed by iron 0.3 mg/l, copper 0.05 mg/l and cadmium 0.09 mg/l. All of the heavy metals exceeded the NWQS standard of 0.05 mg/l each. In a nutshell, the river is classified overall to its water classes as Class IV at Station 1 and Station 3 while Class III at Station 2. For future use of water, precautions measures should be implemented. Water quality laws should be reinforced, environmental education should be implemented and „polluters pay principle‟ should be practiced so that the community is aware of the problem and the problem can be reduced even if it takes time.
机译:在马来西亚,铝土矿开采已成为严重的问题。 2013年,总共确定了236个矿山生产和运输铝土矿的场所,但只有36个合法矿山。这种不负责任的行为对关丹当地社区造成了严重影响,例如空气污染,水污染,生态系统退化并给人们带来不适。关丹的Sungai Pengorak(Pengorak河)是由于铝土矿开采而受影响的地区之一。这项研究的目的是评估双溪蓬加拉克关丹受铝土矿影响的河水质量的空间变化,通过根据正常水质标准(NWQS)评估水质对河水进行分类,并为可持续发展提出建议和建议。河流系统的铝土矿管理。进行了原位参数和异位测试以获得结果。从三(3)个不同的点源中抽取河水样本,进行多达三(3)次,以进行水质分析。使用HORIBA仪表记录现场参数数据。选择十(10)个参数进行分析,这些参数是pH,浊度,温度,电导率(EC),溶解氧(DO),生化需氧量(BOD),化学需氧量(COD),总悬浮固体(TSS) ,硬度和重金属。根据NWQS对获得的参数结果进行分类。在站点1处记录的pH值高达7.42,在站点3处记录的pH值低至6.14,并且在NWQS标准之内。接下来,测站之间的最高记录温度为27.9°C,而最低记录为27.6°C。测得的浊度在站1处超过了5mg / l的标准范围,为57 mg / l,而在站3处最低为43 mg / l。对于总悬浮固体,在站3和16处获得的最高悬浮物为48 mg / l站点1的mg / l,标准范围为25 mg / l。浊度和总悬浮固体的浓度很高是由于附近矿场排放了不受管制的矿山废物。站1的硬度最高,为5.69 mg / l,而站2的最低,为1.51 mg / l。Sungai Pengorak被认为是软水,因为记录的数值未超过NWQS标准的250 mg / l。至于溶解氧浓度,在第3站最高为4.17 mg / l,而在第1站最低为3.75 mg / l。在第1站记录的生化需氧量最高值(8.86 mg / l),而最低为(1.75 mg / l)。在第2站记录了6.53 mg / l)的最高化学需氧量(47 mg / l),而在第2站记录了最低的化学需氧量(30 mg / l)。所有浓度的值都大大超过NWQS标准。这是由于在附近地区进行的铝土矿开采活动所致。另外,电导率在站3处记录为最高1200μS/ cm,而在站2处记录为最低854μS/ cm。高电导率表明水中离子浓度高,反之亦然。对水中重金属的分析结果表明,铬的最高浓度为0.45 mg / l,其次是铁0.3 mg / l,铜0.05 mg / l和镉0.09 mg / l。所有重金属均超过了NWQS标准(每份0.05 mg / l)。简而言之,该河流总体上分为1类站和3类站为IV类,而2类站为III类。为将来用水,应采取预防措施。应加强水质法律,应实施环境教育,并应实行“污染者自付原则”,以使社区意识到问题所在,即使花费时间也可以减少问题。

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    Azza Nurshafira Zul Azman;

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