首页> 外文期刊>Nature environment and pollution technology >Dechloridation of Treated Tannery Effluent by Using Leaves of Plants
【24h】

Dechloridation of Treated Tannery Effluent by Using Leaves of Plants

机译:用植物叶片对制革厂废水进行脱氯

获取原文
获取原文并翻译 | 示例
           

摘要

The present study deals with the dechloridation of treated tannery effluent by using plant leaves. The effluent after treatment, which is let out from the Common Tannery Effluent Treatment Plant (CETP) into Senkulum lake, Dindkjul, Tamilnadu, was collected for the study. The physico-chemical characteristics of the treated tannery effluent were analysed. The pH value of effluent was 8.04, which slightly exceeded the recommended value. The electrical conductivity was 12,500 micromhos/cm, which was higher than the permissible limit. The value of hardness was 2210 mg/L. Out of the three cations tested, i.e. sodium, potassium and calcium, the sodium was 1275 mg/L followed by potassium (76mg/L) and calcium (295mg/L). The chloride content was higher (12,652 mg/L) in the tannery effluent. Leaves of plants such as Cynodon dactylon, Psidium guajava, Azadirachta indica, Cassia torn and Cassia angustifolia were used for the study. An adsorption kinetic study was performed with different weights of adsorbents (100-500 mg/100 mL), temperature (20-60℃) and pH (4-10), for chloride adsorption with different contact times (30 min, 1 hr, 2 hr). The Cassia torn leaves adsorbed maximum chloride compared to the leaves of other plants with a maximum weight of 200mg of adsorbent/100 mL, temperature of 40℃, pH 10 and contact time of 2 hours.
机译:本研究涉及使用植物叶片对制革厂废水进行脱氯处理。收集处理后的废水,该废水从普通制革厂废水处理厂(CETP)排放到泰米尔纳德邦Dindkjul的Senkulum湖中进行研究。分析了处理过的制革废水的理化特性。废水的pH值为8.04,略高于推荐值。电导率为12,500 micromhos / cm,高于允许的极限。硬度值为2210mg / L。在所测试的三个阳离子(钠,钾和钙)中,钠为1275 mg / L,然后是钾(76mg / L)和钙(295mg / L)。制革厂废水中的氯化物含量较高(12,652 mg / L)。本研究使用了犬齿龙,番石榴,印A,决明子和安定子等植物的叶片。用不同重量的吸附剂(100-500 mg / 100 mL),温度(20-60℃)和pH(4-10)进行了吸附动力学研究,以不同的接触时间(30分钟,1小时, 2小时)。与其他植物的叶子相比,决明子撕碎的叶子吸收的氯化物最多,最大重量为200mg / 100mL,温度为40℃,pH为10,接触时间为2小时。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号