Improvement in Cassava Yield per Area by Fertilizer Application

J. O. Omondi, U. Yermiyahu
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引用次数: 2

Abstract

Cassava is a source of carbohydrates to more than 200 million people in Sub-Saharan Africa, even though its production is 6–8 t ha−1, which is below the highest world production of 36.4 t ha−1 in India. To address this yield gap and increase cassava’s availability, affordability, and adequacy, intensive but sustainable production is important. Additionally, being an emerging raw material in the animal feeds, pharmaceutical, beer industries etc., only increases its demand, however the current production levels cannot effectively sustain this. Therefore, this paper reviews: improvement in cassava yields per area under fertigation and banding of fertilizers, a common practice among many farmers; the advantage of fertilizer application on starch of the storage roots, which is the fundamental ingredient in most industries using cassava as a raw material; and the climate smart technologies for intensive sustainable cassava production. In the end, this review enhances knowledge about fertilizer application to cassava, both banding and fertigation, and expounds on effective intensive sustainable climate-smart production strategies.
施肥对木薯单产的提高
木薯是撒哈拉以南非洲2亿多人的碳水化合物来源,尽管其产量为6-8吨/公顷,低于印度36.4吨/公顷的世界最高产量。为了解决这一产量差距并提高木薯的可得性、可负担性和充足性,集约化但可持续的生产非常重要。此外,作为动物饲料、制药、啤酒等行业的新兴原料,它的需求只会增加,但目前的生产水平无法有效地维持这一需求。因此,本文综述了:在许多农民普遍采用的施肥和绑带方式下提高木薯单产;对储存根的淀粉进行施肥的优势,这是大多数以木薯为原料的工业的基本成分;以及集约化可持续木薯生产的气候智能型技术。最后,本文综述了对木薯施肥的认识,包括绑带和施肥,并阐述了有效的集约可持续气候智能型生产策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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