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不同处理阶段酿造废水对鹰嘴豆(Cicer arietinum)、玉米(Zea mays)和兵豆(Cajanus cajan)种子萌发的影响。

Effect of brewery wastewater obtained from different phases of treatment plant on seed germination of chickpea (Cicer arietinum), maize (Zea mays), and pigeon pea (Cajanus cajan).

机构信息

Center for Water Resources, Institute of Science and Technology, JNTU Hyderabad, Kukatpally, Hyderabad, 500085, India.

Research Program- Asia, International Crops Research Institute for the Semi-arid Tropics, Patancheru, Medak, 502324, India.

出版信息

Environ Sci Pollut Res Int. 2018 Mar;25(9):9145-9154. doi: 10.1007/s11356-018-1218-9. Epub 2018 Jan 17.

Abstract

Brewing industry releases large quantities of wastewater after product generation. Brewery wastewater contains organic compounds which are biodegradable in nature. These biodegradable wastes can be recycled and reused and hence considered as suitable products for agriculture. But before using wastewater for agriculture, it is better to evaluate the phytotoxic effects of wastewater on crops. Hence, the main objective of this study is to evaluate the effects of brewery effluent on seed germination and growth parameters of selected crop species like chickpea (Cicer arietinum), maize (Zea mays), and pigeon pea (Cajanus cajan). Study comprised seven types of water treatments-tap water as control, diluted UASBR effluent (50% effluent + 50% distilled water): UASBR50, undiluted UASBR effluent: UASBR100, diluted TC effluent (50% effluent + 50% distilled water): ETP50,TC effluent without dilution: ETP100, 10% diluted reverse osmosis (RO10) reject (10% RO reject + 90% distilled water), and 25% diluted reverse osmosis(RO25) reject (25% RO reject + 75% distilled water) with three replications in completely randomized design. Germination test was performed in petri plates for 5 days. Parameters like germination percentage, germination rate index, seedling length, phytotoxicity index, seed vigor index, and biomass were calculated. All parameters decreased with increase in respective effluent concentration. Among all treatments, RO25 showed highest inhibitory effect on all three crops. Even though undiluted effluent of UASBR and ETP effluent showed positive effect on germination, seedling growth of three crops was promoted to the maximum by UASBR50 and ETP50. Hence, from the study, it was concluded that dilution of brewery effluent can be recommended before using it for irrigational purpose.

摘要

酿造工业在产品生产后会排放大量废水。啤酒废水含有可生物降解的有机化合物。这些可生物降解的废物可以回收再利用,因此被认为是适合农业的产品。但是,在将废水用于农业之前,最好评估废水对作物的植物毒性影响。因此,本研究的主要目的是评估啤酒废水对选定作物(鹰嘴豆、玉米和木豆)种子发芽和生长参数的影响。研究包括七种水处理类型-自来水作为对照,稀释的 UASBR 废水(50%废水+50%蒸馏水):UASBR50、未稀释的 UASBR 废水:UASBR100、稀释的 TC 废水(50%废水+50%蒸馏水):ETP50、未稀释的 TC 废水:ETP100、10%稀释的反渗透(RO10)废弃液(10%RO 废弃液+90%蒸馏水)和 25%稀释的反渗透(RO25)废弃液(25%RO 废弃液+75%蒸馏水),在完全随机设计中每个处理重复三次。在培养皿中进行发芽试验,持续 5 天。计算发芽率、发芽率指数、幼苗长度、植物毒性指数、种子活力指数和生物量等参数。所有参数均随相应废水浓度的增加而降低。在所有处理中,RO25 对所有三种作物的抑制作用最大。尽管 UASBR 和 ETP 废水的未稀释液对发芽有积极影响,但 UASBR50 和 ETP50 最大程度地促进了三种作物的幼苗生长。因此,从研究中得出结论,在将啤酒废水用于灌溉目的之前,可以推荐对其进行稀释。

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