000 02540nam a22002177a 4500
003 OSt
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040 _cNVSU
100 _aBatallones, James P.
245 _aAnalysis of the properties of clay from various location in Nueva Vizcaya for use in the production of compressed earth hollow blocks/
_cJames P. Batallones, Felipe II V. LLantada, Tyron R. LLantada and Nexone Jack V. Mariano
260 _aBayombong:
_bNueva Vizcaya State University,
_c2023.
300 _ax, 56 leaves :
_billustrations, photos ;
_c28 cm.
500 _a Cement stabilized soil blocks known as interlocking compressed earth blocks (ICEB) enable dry stack construction. Because the block are set dry and lock into place, the process of building walls is quicker and requires less specialized labor as a result. However, there is still opportunity to strengthen the interlocking blocks' resilience. More alternative approaches have been developed to replace conventional construction materials, which doesn't consider sustainability factors, particularly those that affect people in the economy and the environment, in order to attain sustainable and green technology in construction. Water absorption is one of the many elements that impact how long bricks last. Low durability will be the outcome of high water absorption. Numerous studies have been done to determine how to make bricks more durable while yet adopting ecologically friendly practices. Bricks can be infected with bacteria as one technique. Brick bacteria caused calcite precipitation (calcite crystals) to form, continually filling the fissures. Brick durability problems can therefore be completely resolved. As a result, interlocking compressed earth bricks (ICEB) from various places in Nueva Vizcaya are created as an alternative to using regular bricks. In terms of price, lead time, and sustainable development, ICEB offers additional benefits. This paper provides an overview of compacted earth blocks that interlock as well as the usage of microorganisms to lower water absorption levels. Keywords: bacteria, bricks, cement, durability, interlocking compressed earth blocks. low durability, water absorption.
500 _aResearch paper (Bachelor of Science in Civil Engineering)
504 _aIncludes bibliographical references and appendices
700 _aLlantada, Felipe II V., author.
700 _aLlantada, Tyron R., author.
700 _aMariano, Nexone Jack V., author.
942 _2ddc
_cU
_n0
999 _c500
_d500