Department of Food Science and Technology, National Institute of Food Technology Entrepreneurship and Management, Kundli, Sonipat, Haryana, India.
Department of Interdisciplinary Sciences, National Institute of Food Technology Entrepreneurship and Management, Kundli, Sonipat, Haryana, India.
Biodegradation. 2024 Nov 15;36(1):6. doi: 10.1007/s10532-024-10104-2.
The dairy industry is grappling with significant challenges in managing effluent due to environmental concerns and stringent regulatory demands, necessitating innovative solutions. The paper investigates how microbial engineering is transforming the treatment of dairy wastewater, offering advanced methods to minimize environmental impact and enhance sustainability. It delves into the current challenges faced by the dairy industry, such as regulatory compliance and the limitations of traditional treatment technologies, and introduces microbial engineering as a promising solution for effluent management. Microbial engineering leverages genetic engineering techniques and microorganisms to enhance the efficiency of treatment processes like bioaugmentation and bioremediation. The environmental and economic benefits of microbial engineering, highlighting its potential to reduce pollution and lower operational costs for the dairy industry. The specific figures can vary based on factors like farm size and location, studies suggest that microbial engineering can reduce wastewater pollution by up to 50% and nutrient runoff by 30%. It also identifies key challenges and there are still areas including strains for specific pollutants (drugs, hormones), enhance degradation pathways, and increase microbes' stability (stress tolerance, long-term viability) that require further innovation to maximize its benefits. Through case studies and success stories, the paper demonstrates practical applications of microbial engineering in managing dairy effluent, illustrating how it can revolutionize industrial practices for a more sustainable future.
乳制品行业在处理废水方面面临着重大挑战,需要创新的解决方案,这主要是由于环境问题和严格的监管要求。本文探讨了微生物工程如何改变乳制品废水的处理方式,提供了先进的方法来最大程度地减少对环境的影响并提高可持续性。文中深入探讨了乳制品行业目前面临的挑战,例如法规遵从性和传统处理技术的局限性,并介绍了微生物工程作为废水管理的一种有前途的解决方案。微生物工程利用基因工程技术和微生物来提高生物增强和生物修复等处理过程的效率。文中还介绍了微生物工程的环境和经济效益,突出了其减少污染和降低乳制品行业运营成本的潜力。具体数字可能因农场规模和位置等因素而异,但研究表明,微生物工程可以将废水污染减少多达 50%,营养物质流失减少 30%。它还确定了关键挑战,包括针对特定污染物(药物、激素)的菌株、增强降解途径以及提高微生物的稳定性(抗应激能力、长期生存能力)等方面,这些都需要进一步创新以最大程度地发挥其效益。通过案例研究和成功案例,本文展示了微生物工程在管理乳制品废水中的实际应用,说明了它如何为更可持续的未来彻底改变工业实践。